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5.1 Streetlight Program Update
MORA r Item Cover Page Subject Streetlight Program Update Meeting June 9, 2026 - "ON THE ROAD" MEETING OF THE MOUNT PROSPECT COMMITTEE OF THE WHOLE Fiscal Impact Dollar Amount Budget Source Category DISCUSSION ITEMS Type Presentation Information This memorandum transmits a Streetlighting Program Update pursuant to the 2027-2031 Strategic Plan Policy Agenda. There are 2,171 streetlights installed on public right-of-way in Mount Prospect. Of these, 11228 are Village -owned streetlights and 943 are owned by Commonwealth Edison (ComEd). The Village -owned poles are generally spun aluminum or painted aluminum poles with light - emitting diode (LED) luminaires. ComEd lights are generally mounted on wood poles and also feature LED luminaires. In addition, the Village owns 175 pedestrian lights. These lights provide pedestrian -level lighting for sidewalk spaces in the downtown business district. These poles are painted aluminum with a mixture of metal halide and LED luminaires. Staff is in the process of converting all the metal halide bulbs to LEDs. The current streetlight replacement programs stem from the Corridor Lighting Program Evaluation report (2016) and the Residential Street Lighting Review report (2017). These documents, along with the overall street lighting capital improvements program, were discussed with the Village Board at a Committee of the Whole meeting on September 12, 2017. A written update was also provided to the Village Board in June 2023. The Corridor Lighting Program Evaluation report describes the existing inventory of lights as well as proposed lighting improvements along major roads. Generally, these corridors are multi -lane, high -volume roadways owned and maintained by other governmental bodies such as the Illinois Department of Transportation (Northwest Highway, Algonquin Road, Central Road, IL Route 83, etc.) and the Cook County Department of Transportation and Highways (Euclid Avenue, Camp McDonald Road, Busse Road, and Dempster Street). Streetlight projects on corridor roadways are generally more expensive than on local roads due to the engineering requirements of the owner agencies. For example, IDOT requires a photometric study which usually results in a lighting plan that requires more poles and higher output luminaires than would be acceptable on local roads. Corridor streetlighting projects are prioritized based on a number of factors including traffic volume, sidewalk, and bike routes. Factors also include nearby destinations such as schools, parks, churches, shopping centers and restaurants. To view the priority matrix for corridor streetlight projects, please follow this link and select the corridor tab: Corridor Streetlight Matrix. You can also view the proposed corridor streetlighting projects on the attached Corridor Lighting Program Matrix maps. Corridor lighting costs per mile vary greatly depending on corridor characteristics and how the project is set up (stand alone or incorporated in other projects, and who leads the project). Stand-alone lighting projects led by the Village are the most expensive. This makes estimates much more difficult. Here are currently estimated costs for in -design projects: • Rand Road - Camp McDonald to Kensington - Village Led - lighting only— $1,458,000 per mile • Busse Road - Central to Golf - County Led - Part of major reconstruction — $401,rOOO per mile • Algonquin Road - Busse to IL 83 - Village Led - Part of pedestrian improvements — $845,000 per mile. When the Village completed major lighting projects in the early 2000s, the cost per mile was between $500,,000 and $600,,000. New IDOT requirements and the general cost of construction today have resulted in much higher prices. The total cost to complete the remaining corridors identified in the Corridor Matrix is estimated at $33,570,000 in 2026 dollars. The Residential Street Lighting Review report presents a similar analysis of lighting needs on secondary arterials, collector streets, and local roads. It details existing streetlight inventories, examines applicable lighting standards, discusses design considerations, identifies costs, and explores various funding sources. The Village Code stipulates that streetlights on Village -owned streets should be installed at intersections, curves, and at straight-away intervals not more than 300 feet. In general, the Village's lighting plans feature 25' aluminum poles with LED luminaires. The LED luminaires are 2700 K color temperature and incorporate appropriate lumen (output), light distribution (mid -block or intersection), and shielding depending upon pole location. Attached is a specification sheet for the current I u m i na i re. The estimated construction cost for residential streetlights on local roads is $550,000 per mile. The total cost to complete the remaining residential streets listed on the Residential Lighting Priority Matrix is estimated at $10,566,000 in 2026 dollars. The Residential Lighting Priority Matrix can be found at this link: Residential Streetlighting Program Matrix (select Residential tab) or by viewing the attached document. Please note projects are prioritized using the same algorithm as corridor roadways (volume and the presence or absence of sidewalks, schools, multifamily housing, parks, churches, bike paths, and other pedestrian generators). Also, please be aware that not all the residential streets are listed in the current Residential Lighting Priority Matrix. Rather, the streets currently listed in the matrix are limited to those designated as "collector" streets. Collector streets are local streets with moderate capacity designed to collect and convey traffic from lower volume local roads to arterial roadways. Discussion Alternatives Staff Recommendation Attachments 1. VOMP Residential_Lighting_Evaluation-2017-09-07 2. 06-20-2016 - VOMP Street Lighting Capital Program Corridor Lighting Evaluation 3. Corridor Lighting Program Matrix P1 4. Corridor Lighting Program Matrix P2 5. Corridor Lighting Program Matrix P3 6. Corridor Lighting Program Matrix P4 7. Residential Lighting Program Matrix_P1 8. Residential Lighting Program Matrix P2 9. Residential Lighting Program Matrix P3 10. Residential Lighting Program Matrix_P4 11. ComfortView-CV1-Specification-Sheet(e75a00968a15aad6fb355cf2b5883272) (1) Village of Mount Prospect f 011111 M'' i Residential Street Lighting Program Review September 7, 2017 Prepared by: MN Phone:1,507 N. Cumberland Avenue, Suite 402, Chicago, Illinois 60656 773-775,.4009 I 4www.clorba.com Village of Mount Prospect' Residential Street Lighting Program Review Table of Contents Tableof Contents......................................................................................................................... i ExecutiveSummary................................................................................................................... 7 Purpose.................................................................................................................................. 7 Methodology........................................................................................................................... 7 Existing Resident Street Lighting............................................................................................ 7 Recommendations.................................................................................................................. 7 Existing Residential Street Lighting Systems and Practice Summary........................................10 GI S Data Review...................................................................................................................10 Current Residential Street Lighting Requirements.................................................................10 Summary of Existing Installations..........................................................................................11 Current Residential Street Light Request Policy....................................................................12 Procedure..........................................................................................................................12 Ranking.............................................................................................................................12 Budget...............................................................................................................................12 Installation..........................................................................................................................12 Maintenance......................................................................................................................12 Existing Residential Lighting Equipment Summary................................................................13 Poles..................................................................................................................................13 LuminaireProperties..........................................................................................................14 Style...............................................................................................................................14 Technology.....................................................................................................................15 Distribution.....................................................................................................................15 Typical Pole Layout and Locations.....................................................................................15 BillingType........................................................................................................................16 Rate23...........................................................................................................................16 Rate25...........................................................................................................................16 ControlType......................................................................................................................16 Photocell........................................................................................................................16 9/7/2017 HE CIORBA GROUP result n ineer dl Village of Mount Prospect' Residential Street Lighting Program Review Controller........................................................................................................................16 PeerPractices Survey...............................................................................................................16 Residential Lighting Survey Questions..................................................................................17 Summary of Residential Lighting Survey Responses.............................................................17 LightingPolicies.................................................................................................................17 LightingEquipment............................................................................................................18 Operations.........................................................................................................................18 ElectricityCharges.............................................................................................................19 Maintenance......................................................................................................................19 IndustryStandards....................................................................................................................19 ESClassification..................................................................................................................19 StreetType........................................................................................................................19 Major..............................................................................................................................19 Collector.........................................................................................................................20 Local..............................................................................................................................20 PedestrianConflict .............................................................................................................20 High................................................................................................................................20 Medium..........................................................................................................................20 Low................................................................................................................................20 TargetLighting Levels........................................................................................................20 International Dark -Sky Association........................................................................................21 Purpose............................................................................................................................. 21 Website..............................................................................................................................21 IndustryAcceptance..........................................................................................................21 ModelLighting Ordinance..................................................................................................22 StandardPractice..................................................................................................................22 Lighting System Design Considerations....................................................................................22 SystemPurpose....................................................................................................................22 Improved Visibility and Illuminate Hazards .........................................................................22 Increased Perceived Safety...............................................................................................22 9/7/2017 HE CIORBA GROUP nsul n ineer u�dvtIi-YYt Village of Mount Prospect' r Residential Street Lighting Program Review ProvideAmbience..............................................................................................................22 PoleTypes............................................................................................................................23 Utility/Wood Pole Mounted.................................................................................................23 Standard pole and Luminaire.............................................................................................23 Decorative Pole and Luminaire..........................................................................................24 ComEdLeased Equipment................................................................................................24 TreeConflicts.....................................................................................................................24 LuminaireProperties.............................................................................................................25 MountingHeight.................................................................................................................25 LightSource.......................................................................................................................25 Color Rendering index(CRI............................................................................................25 Efficacy........................................................................................................................... 25 RestrikeTime.................................................................................................................25 High Intensity Discharge Sources...................................................................................26 InductionLight Source: ................................................................................................... 26 Light Emitting Diodes (LED): .......................................................................................... 27................................27 LightDistribution................................................................................................................27 TypeI:............................................................................................................................27 TypeII:...........................................................................................................................27 TypeIII:..........................................................................................................................27 TypeIV: .......................................................................................................................... 27 TypeV:...........................................................................................................................28 ColorTemperature.............................................................................................................28 PowerSources......................................................................................................................28 DirectUtility Connection.....................................................................................................28 DisconnectBox..................................................................................................................28 Controller...........................................................................................................................28 SmartTechnology.................................................................................................................29 PotentialBenefits...............................................................................................................29 Comparison with Current Procedures................................................................................29 9/7/2017 HECIORBA GRMP ConsultJngEngineers dl Village of Mount Prospect' Residential Street Lighting Program Review Potential Residential Lighting Installation Schemes...............................................................29 DataSource.......................................................................................................................30 Assumptions......................................................................................................................30 Roadway Geometric Design Information........................................................................30 Luminaires Used in Analysis...........................................................................................30 IntersectionsOnly..............................................................................................................30 Intersections Plus Midblock where Block Length Greater than 300 Feet ............................32 Pole Spacing to Meet I ES Recommendations....................................................................32 Intersections Plus Midblock Lighting, with a Not -to -Exceed Max Spacing ..........................33 Estimatesand Costs.................................................................................................................34 UnitCosts.............................................................................................................................. 34 NewPole Installations........................................................................................................34 LuminaireReplacements...................................................................................................34 ComEdPole Removals......................................................................................................34 Replacement of ComEd Light Removals ............................................................................35 CostFactor............................................................................................................................35 CostFactors......................................................................................................................35 StandardLighting...........................................................................................................35 DecorativeLighting.........................................................................................................35 Premium Decorative Equipment.....................................................................................35 SmartControls...............................................................................................................35 Controller........................................................................................................................ 35 DesignEngineering........................................................................................................35 ConstructionEngineering...............................................................................................36 Examples of Cost Factor Application..................................................................................36 Flat Rate vs. Metered Electrical Charges...............................................................................37 ComEd Monthly Lease Charges............................................................................................37 LifeCycle Cost of Ownership................................................................................................38 Village -Owned Standard Pole............................................................................................38 Village -Owned Decorative Pole..........................................................................................38 iv 9/7/2017 HECIORBA GRMP ConsultJngEngineers Village of Mount Prospect' Residential Street Lighting Program Review ComEd (Leased) Wood Pole..............................................................................................39 Replacement of Existing ComEd Pole with Village -Owned Standard Pole .........................39 Payback of Replacing Existing ComEd Pole with Village -Owned Standard Pole................39 Cost Summary & Comparison...............................................................................................40 Implementation Cost Estimates.............................................................................................41 Fill-in Unlit Intersections.....................................................................................................41 Upgrade Village -Owned Intersection Luminaires to LED....................................................41 Fill-in Unlit Mid -Block Locations, Single Pole......................................................................41 Fill-in Unlit Mid -Block Locations, 300' Minimum Spacings..................................................41 Upgrade Village -Owned Mid -Block Luminaires to LED.......................................................42 Illuminate to IES Recommended Levels.............................................................................42 Illuminate with Fixed Spacing (150 7 7 2007 & 250')...............................................................42 PotentialFunding Sources.....................................................................................................43 Grants................................................................................................................................ 43 Public Sector Energy Efficiency Program by DCEO........................................................43 Illinois Clean Energy Community Foundation.................................................................43 Database of State Incentives for Renewables & Efficiency (DSIRE) ............................... 43 ComEd Energy Efficiency Program....................................................................................43 ComEdSmart Lighting Program........................................................................................44 Village Capital Improvement Plan......................................................................................44 PrivateFinancing...............................................................................................................44 Term...............................................................................................................................44 1 nterest Rate...................................................................................................................44 Payment.........................................................................................................................44 Fees...............................................................................................................................45 Implementation Recommendations...........................................................................................45 ObtainPublic Feedback........................................................................................................45 IdentifyCommunity Goals......................................................................................................45 Determine Extent of Lighting Desired....................................................................................45 Identify Preferred Equipment.................................................................................................45 v 9/7/2017 HECIORBA GRMP ConsultJngEngineers Village of Mount Prospect' Residential Street Lighting Program Review Develop Residential Street Lighting Policy............................................................................46 Amend Village Lighting Ordinance.........................................................................................46 Appendix A — Existing Village Code........................................................................................ A-1 Appendix B — Survey Questions.............................................................................................. B-1 Appendix C — Survey Results.................................................................................................. C-1 ArlingtonHeights.................................................................................................................C-1 BuffaloGrove......................................................................................................................C-2 DesPlaines.........................................................................................................................C-5 ElkGrove Village................................................................................................................. C-7 MortonGrove......................................................................................................................C-7 Niles....................................................................................................................................C-9 Palatine.............................................................................................................................C-11 RollingMeadows............................................................................................................... C-13 vi 9/7/2017 HE CIORBA GROUP nsul n ineer Executive Summary Purpose In the summer and fall of 2016, the Village of Mount Prospect completed a Community Survey to gather feedback on Village programs and services. Most respondents indicated that an emphasis should be placed on residential street lighting. In fact, residential street lighting was deemed the highest priority for infrastructure upgrades requested. Ciorba Group has been retained to review the existing residential lighting system, identify potential improvements, provide cost estimates and comparisons, and outline a path to move forward with the enhancement of the Village's residential lighting system. Methodology Existing Village GIS information was reviewed to evaluate the existing lighting equipment and determine the need for additional lighting. Other data was gathered through online sources such as Google Earth and the Illinois Department of Transportation (IDOT) website. Additional data was gathered from industry sources such as manufacturers and professional organizations. Existing Resident Street Lighting The Village's existing residential street lighting system is comprised of 388 Village -owned poles along with 719 ComEd-leased poles. Approximately 87% of the Village's 781 intersections within residential areas are illuminated. Approximately 16% of the Village's 1,144 residential blocks longer than 300' are illuminated. Both metrics should equal 100% to meet current code requirements. Recommendations The following recommendations are offered for consideration: • Obtain public feedback • Identify community goals • Identify the extent of lighting desired • Identify preferred equipment • Develop a residential street lighting policy • Amend Village lighting ordinance • Implementation 7 9/7/2017 HE CIORBA GROUP result n ineer VILLAGE OF MOUNT MUSPEC"T RESIDENTIAL STREET LIGHTING PROGRAA1 REVIEW OAK, I U N VIUUMIUUTl 11111111AJUll, it. 11111 0-5 9/7/2017 C110RBA GROUP ConsuftJng Engineers ME VILLAGE OF MOUNT PSI OSPEC, T RESIDENTIAL TI L] 'T L OTTTI ''I P"I OO , I I .LVI; 7 EXISTING RESIDENTIAL TI: L LIGHTING IYlllylylylylylylylyll ®"41111 III I ILOT& 'O III L �II � I ��� IIIIIII uu uVUYyYY�u'ugp1141p �O✓✓✓✓!✓✓%/✓�Y��rt�u ^ 1 �rtrr r umllv�l��� Vr ; ® Q ��, ,��uuv114u1ryq°St „ „ �� Iyiln�iN1 IIIkln IUN, you D u4jh�ISV, IPA III ICE 0 L� II „JJ IIi111411V� 1°°u1A)!�1 �%' Ulllglllp)iyyryyyyryyyyryyyyryyyY) 1 F, ' 1 ���� u u ����� umuuym�uuYw� yyml yu�m mnllm t Dr muu➢ »iu u� �Inl llllscrr rr �� �� 10 vy" rrrr r �Q rrrt CLIO 1. �u lu u 1 , 4� 'M Vi4V 10 NV,V ➢U �mayy;; 1 0114 A lv (Sol % o llU tl 4 � � V jO°" <� I L U W L'I J � rr 1 W�� r I1111111 IIIIIIIIIIIIIII IIIIII ':v'a.� (1 "WI rr4 ml 1r 1 / / ) IIII 1� uU Iart r r r r roof 6 1 NYI^, I'nooYiulyYlu , lu uu�l roui 1)llllllll 1 v iStry A(1rol lu?ylylecc 1j - iAc! 11 t), ����� r1111�11 u 1r rrr'rrrrrr '7,1 I 111)I• �����ISyjj� a 1' �mr r r rtrtrrtrtr , �Il� Vlrylfirt1 rrrrr rc�l r r r r �rtml7 r lu �� II r r r a II y J /-0111gtlr umol 1 Nf �ulllm� v� Polp V r W �u fil um 1 �,� /' ww�ywr!sywruywry �VAAyyryyyyryyypY� Ip 'umouum uuuuuuu �°r'1���uwymr!syYY� 1 tuulo j, wwwwwwW ,�, �rx �..,. .nnn✓/1� ... ...E S I IO �I II m IIIIIIIIIIIIIIIIIIIIIIIIIIII i� �r LL w ymm w� v1Y»Iv muu `vvlvvoYl uvvoYu v�y�v`1 uumuuo IIIIII � 1vYv � u1,i�Yi vv IIIIIII IIII IIIIIII u �)l)uulouuul �u4 3' « m1m1 wvY rvulu my uuYYl vm11' umuouu Inn ou' avmuoulrmml '«nm rm riorriorri uouuuu All df�p yl "k+n. , I� ,// f/ fVIDkyIDAkyIDAkyIDAkyNI 141111 1pp➢IDAkyIDA) /r /Ua( flfllf00R00R01�!/� VUV1A9ll1pkyIDAJ D, Lill mmn r; �klil l (IIIIIII lylll V1A51 fRP ffl ffl l d, f,P'P ((r'f,'f 'P'P' U S IIIIIIIIIIIIIII U s uoi� fi" tl ,� r pi, 01614 r'r ouuuuuuuuuuuuu0 ov9y➢1ouu u 1 v>Nutrn r>+ n IIIIl fhhhho 4 A IWP 111111 41111 1;9ty➢1 � AAI IP) 1 4�� I'll 1d Dour ' 1 � ui1 V»U9Y) IIIIIIIIIIIII IIyY { �r C L 11 � J'�"""'M L tillUl�gl'�n, �I li pp IIVI WIll 1 ✓ - 1 I, ® 11,,,4114 k411,,414111111111 �`„ NYI ����y / ® 1�i 'III' if a „,� „� � mmr a6rr umouuuu uua. r j c 11F 1, i R rtr yuuv ✓ �� �.1'rryl"pl,U r r ramluuv,�I,I'�""'1Win] N�° 91��1 uYl ��no!aQ 1y Iry ly ,1 Pill u1 1 anlrw 11 IY 1 1 r r »y�lu Yn i �� r wm1 uyyyuily u11�`U �Nn�„ly y, it ,Yv `'ulny1111ulrryllt umoluvtiely nnrrol4isyv»vuu. m11 vie» ,n�rn� vuy»,rrrnd r uiluumon �r ��" v"lolfl°plvvC up161�IVu1411�p^ ���4� «nnlr� uov �I v ` wn110 1101 oca01 � I ..Y 4rlrne¢yiyrviyi.. ������� l v 11 1 � r IvuiyYriyY,wlY� �o�r r����lr 44 Ory All,rr �� ,op anWu1 �I( uu"r'1 Ivn v� uol ;q f f ddffllIDA9 miRm", (IfRf 11A9ll1pkyID U V ^Jp11V1 Yp 01 iiiiih IV NII U` 1\�U ml D IVY �� J ' � y , � y1 '�9y1L 4yYA � Pf 1414f )91\h{ ifiR04 � � f � II UZ91 IU91� Illu � VVI!', 11 IIVWIUAJII ''r, / f f f fVl lYllly iNll 1ul � Q .� 111 9 � f t Rini 11 ID (Wfl IlpyyIDAyyyt m 1 1 uu iofI f'umu' N f f'9NI uullnll W J e IN 0 � 5ffylf ° i In IfyTW mi 1 I L WlIlI of f' flljlr S reeI 11 i h1 Legend b `I % IRIRIRIIi➢IVI� UI46 iuRmRi INII9 �I(fIIV94W4V [ Vu,u,u,u u,uVlf uuu f ))YYl uumn mm� IIII i� ^ 'I_ re,4 ,I 1'0 '�' ✓l�fllf VIU ( II {i.Lu1 uuu IAi�t UUw,(f 1110 �Y�1111 ,1 ®� Vi I I g k n '�L ivy A "I"I 6f WU � �i%N I! III pur q� J J � ��" Hwy 4 i1 .lur rev uv111 � � allrolmrr v o�vl'1 I 1�II41IIYYyIv �� lrmy � Y1qto14�11 YI ,1GOLF A N Leased �friom C Ire IE 1 jj11 Ifr J�l4 I Ilu yrt NAkyYN��° r h Am �1 '°� 11 vml f yyu 1u i '✓� 1 1 1 a �����rtrtlmolvuyiy ' - oY d y Legend M'��ga 1 r / "f11 l %( r p rd u € r ✓ ✓ ➢ul ((� � tll�^� N v'A I I IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIV� ,�� 111��� ,, � 1 I.Isliu�till� Iw . I' �Lu 1 M aj o rArte ri a,1 f � f ImAkyIDA)uyo n J➢`NII)�Ml na.. ram"' TM a /! IV E — — — — Second ry r�t IrillSul Collector J 11 �t f , N LI I r ... �,/, IPrivate ' Viflage Limits OAKTON Source vailage Of MO LITIt Prospect Miles 0 0 _ rp '"'1 0 9/7/2017 HE CIORBA GROUP nsul n ineer Existing Residential Street Lighting Systems and Practice Summary The Village currently provides street lighting along 87% of intersections of local and collector roadways in residential areas. Mid -block lighting is provided for approximately 16% of blocks greater than 300% which is the recommended spacing for residential lighting required by the existing Village Code. The arterial corridors of Algonquin Road, Busse Road, Central Road, Dempster Street, Euclid Avenue, Golf Road, Elmhurst Road / Main Street, Northwest Highway and Rand Road were not included in this review as they were part of a previous study. Private roadways were not included because the street lighting systems along these roadways are not maintained by the Village. GIS Data Review Review of the existing residential lighting within the Village consisted of evaluation of GIS data for the existing lighting equipment, inspection of aerial imagery from Google Earth, and conversations with Village staff. The Village provided GIS data in several files, including shapefiles containing roadways, centerlines, parcels, Village boundaries and streetlights. These files were analyzed to determine residential areas, local and collector roadways and the existing street lighting equipment in use in residential areas. Current Residential Street Lighting Requirements Current street lighting installations are regulated by the Village of Mount Prospect Village Code, Chapter 16, Article VIII: Street Lighting. Street light installations shall meet these criteria: • For Residential, Commercial and Industrial areas, street light poles are placed at intersections, the end of cul-de-sacs, on curves, and at spacings not to exceed 300 feet for midblock locations. The poles are generally centered two feet behind the back of curb, with mast arms perpendicular to the centerline, and at intersections, oriented at right angles to intersecting centerlines. • For Arterials and Collector streets, street light poles are place at intersections and midblock locations and must attain an average illuminance of 1.2 foot- candles, a max/min ratio of 6:1, and an average/minimum ratio of 3:1. • Light poles must meet requirements including being able to withstand 80 mph winds and vibration and vibrations associated with that wind speed. For residential areas, the non -frangible based poles have a mounting height of 25 feet with 10-foot truss style mast arms. In commercial and business areas, the mounting height should be 30 feet • All new luminaires should use a high-pressure sodium lamp, and should be either flat lens cobra head or decorative shoebox style luminaires with cutoff classifications. 10 9/7/2017 HECIORBA GROUP ConsultJng Engineers Summary of Existinq Installations Currently the Village has a mixture of Village -owned lighting equipment and equipment leased from ComEd. Overall, the Village owns and maintains 1,107 street lights in residential, arterial and other locations. 388 (35%) of these lights are located within residentials areas that are not along arterial roadways. ComEd owns and maintains 800 street lights within the Village of Mount Prospect. 719 (90%) of these lights are located within residential areas not along arterial roadways. These locations are broken between intersection and mid -block lighting: Table 1: Village Owned Residential Street Lights Village Owned Residential Street Lights 388 Intersection Installations 88 Mid -Block Installations 300 Table 2: ComEd Owned Residential Street Lights ComEd Owned Residential Street Lights 719 Intersection Installations 590 Mid -Block Installations 129 Table 3: Residential Intersection Lighting Residential Intersections 781 Village Lighting 88 ComEd Lighting 590 Unlit 103 11 9/7/2017 Table 4: Blocks > 300" in Length with Residential Intersection Total Residential Blocks 1,144 Village Lighting 88 ComEd Lighting 94 Unlit 962 Table 5: Unlit Residential Locations Unlit Residential Locations 787 Intersections 103 Mid -Block 684 Current Residential Street Light Request Policy Procedure If residents desire to have a street light installed, they must submit a request to the Village. The request is routed to the Public Works department. The requestor must obtain and provide approvals from the owners of each of the properties adjacent to the proposed pole location. Installation is then approved at the discretion of Public Works. Ranking There is currently no formal ranking procedure for residential street light requests. Budget Currently no capital funds are specifically dedicated for residential street light requests. Installation Once a residential street light request is approved, the installation is completed by Village staff, or by ComEd staff if the lighting equipment is to be leased from ComEd. Maintenance For street lighting equipment installed by the Village, installation, energy and maintenance costs are paid for by the Village. For equipment leased from ComEd, the Village pays ComEd to complete the initial installation. Energy costs and maintenance are included in monthly lease charges. 12 9/7/2017 Existing Residential Lighting Equipment Summary Poles Roadway lighting within the Village is a mix of Village and ComEd owned equipment. Village equipment is typically aluminum mast arm style poles. ComEd equipment is typically mast arms mounted on wood poles. Some ComEd poles are aluminum mast arm style poles. Luminaire mounting height is generally either 20' or 25' above the pavement. Mast arms are typically 10' to 15' in length. ComEd owned street light located at the intersection of Elm Street with Isabella Street. (25' mounting height with a 12' mast arm and cobra head luminaire)) ComEd owned street light at a mid -block location. (25' mounting height with an 8' mast arm and cobra head luminaire) 13 9/7/2017 Village owned street light at the intersection of Cardinal Lane and Eric Court. (25' mounting height with a 10' mast arm and cobra head luminaire) Luminaire Properties Style Luminaires for Village and ComEd Equipment are generally cobra head style with either a flat or drop lens, as illustrated below. y /���wmu y�Y yr oil���0or Drop Lens Luminaire Flat Lens Luminaire 14 9/7/2017 Technology The Village has a variety of light sources (light color) and wattages (intensity) in use. LED is the latest technology. Other technologies are generally no longer used for new installations. Energy savings and reduced maintenance are the main driver towards LED technology. Table 6: Village Owned Residential Luminaire Technology Summary Luminaire Technology Wattages Used Quantity Installed High Pressure Sodium (HPS) 50 to 400 229 Mercury Vapor (MV) 150 to 400 116 Light Emitting Diode (LED) 100 to 250 (equivalent) 1 $ Halogen (HAL) 50 & 250 13 Metal Halide (MH) 50& 250 17 Unknown Unknown 4 ni-trihi itinn Information received from the Village is insufficient to identify the photometric distribution of the installed luminaires. Luminaire used for continuous street lighting typically use Type II or Type III light distributions. These are industry standard light patterns that provide narrow to medium throw across the street and long throw up and down the street. For intersections, Type IV and Type V are used. These patterns, provide a square to circular area of light that better distribute light at wider locations such as intersections. Typical Pole Layout and Locations For residential areas within the Village, a light pole is typically located at each intersection. Most of these poles have mast arms oriented 45 degrees from perpendicular to the roadway so that the luminaires are aimed toward the center of the intersection. Where they exist, mid -block poles are oriented perpendicular to the roadway. Light poles may or may not be present along the blocks, but where they are, they are generally spaced in intervals of 300 feet or less. The poles are located approximately two feet behind the back of curb. 15 9/7/2017 Billing Type The Village pays electrical charges to ComEd under two programs, Rate 23 and Rate 25. Rate 23 This rate is charged for equipment leased from ComEd. Charges include equipment rental, maintenance and electricity usage. Charges are based on the current rates in ComEd's Ratebook (Link). Charges are calculated by multiplying the number of units installed times the monthly rate. Typical charges for a roadway luminaire are $13-17 per month per luminaire, inclusive of maintenance and energy charges. Rate 25 The Rate 25 program pertains to all lighting owned by a municipality. Electricity charges may be based on actual usage measured by a meter or flat rates established for various luminaires. Flat rates are based on the actual electricity usage of the luminaire multiplied by a theoretical number of hours in service per year, typically 12 hours per day. These charges apply regardless of lamp or system outages. ComEd has rates established for many common luminaires, however, it is possible to establish a Village -specific rate if required. A majority of the Village - owned residential street lighting luminaires are unmetered. With metered equipment, the Village only pays for the actual electricity used. Energy charges are assessed at the current rate filed with the Illinois Commerce Commission. Control Type Phntnr.Pll Luminaires that are directly connected to utility power and those using a simple disconnect switch/breaker are typically controlled by photocells. On most luminaires, the photocell in mounted on the top of each luminaire. At dusk, when a minimum ambient light level is reached, the photocell turns on the luminaire. In the morning, the luminaires turn off when light levels increase. ('.nntrnllPr Controller cabinets are generally used when multiple circuits will be controlled from a central point and are typically used on arterial streets. A connection to utility power is made to the controller, and the controller distributes it to the various circuits. Controllers can be metered or unmetered, depending on the agreements with the power utility. Controllers offer the highest level of control over the power distributed to the lighting system. Peer Practices Survey A survey containing questions about current residential street lighting policies, systems, and practices was developed and distributed municipalities with similar characteristics to 16 9/7/2017 Mount Prospect within the greater Chicago region. The surveys were distributed to eight municipalities; Arlington Heights, Buffalo Grove, Des Plaines, Elk Grove Village, Morton Grove, Niles, Palatine, and Rolling Meadows. Residential Li_ghtin_g Survey Questions The residential street lighting survey focused on five main areas: 1. Current Residential Lighting Policy 2. Lighting Equipment 3. Equipment Operation 4. Electricity Charges 5. Maintenance The full survey can be found in Appendix B. Summary of Residential Lightin_g Survey Responses Survey responses can be found in Appendix C. Seven responses were received. The results are summarized below. Lighting Policies • Formal residential street lighting policy o No formal policy (3) o Incorporated in Municipal Code (2) o Formal policy (2) • Included in budget o Maintenance only (4) o Expansion and maintenance (3) • Lighting locations o Corners (6) o Cul-de-sacs (20 o Curves (3) o Fixed spacing (4) o Mid -block (3) • Lighting required for new subdivisions o Yes (5) o No (1) o Not Sure (1) • Equipment ownership o Combination of Municipal and ComEd owned (6) o ComEd owned (1) • New residential street lighting approval process o Public Works/Engineering review (4) o Subdivision approval process (2) 17 9/7/2017 • New installation performed by o Municipal staff (1) o Maintenance contractor (1) o ComEd (2) o Bid process (4) Lighting Equipment • Style o Decorative and standard (4) o Standard only (3) • Luminaire mounting height o Less than 20' (3) 0 20' to 30' (7) • Number of poles installed o Greater than 3000 (2) 0 1000 to 3000 (1) o Less than 1000 (2) o No response (2) • Percentage of residential areas covered o Greater than or equal to 90% (4) 0 50 to 89% (1) 0 11 to 49% (0) o Less than 10% (1) o No response (1) • Light sources in use o High Pressure Sodium (7) o LED (6) o Metal Halide (3) o Mercury Vapor (3) • Cabling o Underground for municipal -owned systems o Aerial for ComEd systems. • Smart technology o In -Use (0) o Considering (3) Operations • Control technology o Photocells (direct ComEd connection) (7) o Controller -mounted photocell (4) 18 9/7/2017 Electricity Charges • Metered (6) • Fixed rate (7) Maintenance • Maintenance performed by o Village staff only (2) o Village Staff &Contractor (4) o Contractor (1) • Preventative maintenance completed o Group relamping (3) o Photocell replacement (1) o Cleaning (3) o Inspections (3) o Painting (2) o Cable replacement (1) • Outage identification o Police reporting (1) o Semi-annual inspection (1) o Resident notifications (4) o No official procedures (1) • Defined response times o Yes (5) o No (2) Industry Standards The Illuminating Engineering Society (IES) is the industry leader in developing recommended practices for lighting in the United States. The International Dark -Sky Association (IDA) is one of the more visible leaders in developing recommended lighting practices and education relating to reduction and elimination of light pollution. Each organization's recommendations for roadway lighting is detailed below. IES Classification The IES has identified recommended lighting levels for various roadway types. The following classifications are defined in ANSI/IES RP-8-14, the current recommended practice for roadway lighting. Street Type Major The part of the roadway system that serves as the principal network for through -traffic flow. The routes connect areas of principal traffic generation and important rural roadways entering and leaving the city. These routes are often known as "arterials," 19 9/7/2017 "thoroughfares," or "preferentials." They are sometimes subdivided into primary and secondary; however, such distinctions are not necessary in roadway lighting. These routes primarily serve through traffic and secondarily provide access to abutting property. Collector Roadways servicing traffic between major and local streets. These are streets used mainly for traffic movements within residential, commercial and industrial areas. They do not handle long, through trips. Collector streets may be used for truck or bus movements and give direct services to abutting properties. Local Local streets are used primarily for direct access to residential, commercial, industrial, or other abutting property. They make up a large percentage of the total street system, but carry a small proportion of vehicular traffic. Pedestrian Conflict H�g h Areas with significant numbers of pedestrians expected to be on sidewalks or crossing the street during darkness. Examples are downtown retail areas, near theaters, concert halls, stadiums, and transit terminals. Medium Areas where lesser numbers of pedestrians utilize the streets at night. Typical are downtown office areas, blocks with libraries, apartments, neighborhood shopping, industrial, parks, and streets with transit lines. Low Areas with very low volumes of night pedestrian usage. The can occur in any of the cited roadway classifications but may be typified by suburban streets with single family dwellings, very low density residential developments, and rural or semi -rural areas. Target Lighting Levels Target lighting levels are identified at 100 to 125% of the luminance values listed in Table 3 of the RP-8-14. Major Roadways have been removed from the table for clarity since the focus is on residential lighting. 20 9/7/2017 Table 7: IES Target Lighting Levels PEDESTRIAN AVG. MAX. MAX. VEILING STREET AREA LUMINANCE p►VG.UNIFORMITY UNIFORMITY LUMINANCE CLASSIFICATION CLASSIFICATION (Lavg (Cd/m2) RATIO Lavg/Lorin RATIO RATIO Lmax/Lorin LVmax/Lavg HIGH 0.8 3 5.0 0.4 MEDIUM 0.6 3.5 6.0 0.4 COLLECTOR LOW 0.4 4.0 8.0 0.4 HIGH 0.6 6.0 10.0 0.4 MEDIUM 0.5 6.0 10.0 0.4 LOCAL LOW 0.3 6.0 10.0 0.4 International Dark -Sky Association Purpose The International Dark -Sky Association (IDA) is an organization that works to prevent and fight light pollution through education and advocacy. Website The IDA website (www.darksky.og) contains a lot of reference information regarding light pollution and how to reduce it. While much of the information is geared towards residential, architectural and commercial lighting, there is some information to be found regarding roadway lighting. Industry Acceptance While the cause is noble, support of the IDA among roadway lighting designers is lower than expected. Support is likely low because the many goals of the IDA are already incorporated into the requirements used to design roadway lighting systems, such as the IES RP-8. It is in the nature of an engineer to optimize their designs to provide the best quality design possible, including reducing light trespass, glare, excess illumination and excess energy usage. The tone of many articles posted on the IDA website also tend to support the organization's agenda, instead of an approach where the facts are laid out clearly and conclusions are built from these facts. To be clear, the information provided is not in error, it appears to be presented in a biased nature. 21 9/7/2017 HECIORBA GROUP ConsultJng Engineers Model Lighting Ordinance In 2011, the IDA and IES published a joint Model Lighting Ordinance (MLO). This document presents a complete plan that can be adopted to govern the various types of outdoor lighting found throughout municipality, including residential and non- residential lighting. The MLO states that IES RP-8 shall generally be followed for roadway lighting. An Optional Streetlight Ordinance is included in the MLO to consider for adoption in the MLO. This optional ordinance builds upon RP-8 requirements to guide the designer towards limiting up -light, which is a major contributor to light pollution. This approach is similar to design requirements used for international street lighting. Further consideration of the MLO should be included in any revisions to Village code for street lighting. Standard Practice While the IES provides recommended values for local streets, a majority of communities nationwide design to a lessor standard. While each community may have a unique reason for providing less than the IES recommended level of light, cost is the primary reason. Installation, maintenance and electricity charges add up quickly because local and collector routes are generally the predominant roadway type for municipalities in terms of mileage. To reduce costs, poles are typically located where there is a better return on investment in terms of safety, such as intersections, curves and other areas that experience higher than average accident rates. Lighting System Design Considerations System Purpose Improved Visibility and Illuminate Hazards The primary purpose of roadway lighting is to increase the visibility of the roadway so drivers can navigate safely along the road and identify potential conflicts and hazards in the vehicle's path with sufficient time to choose an appropriate action. Improved visibility can improve interactions between vehicles and bicycles and pedestrian. Increased Perceived Safety Roadway lighting can provide a sense of safety to drivers and pedestrians at night. Lighting allows the driver to detect potential conflicts sooner and make more confident driving decisions. Pedestrians benefit from increased visibility to drivers, especially at roadway crossings. Lighting also gives pedestrians the ability to detect faces and intent of other people in the vicinity, and reduces shadowing areas that can be perceived as dangerous. Provide Ambience The look and feel of a residential area can be impacted by the type and extent of lighting present. Areas with no lighting can appear uninviting, or even unsafe, whereas areas 22 9/7/2017 HECIORBA GROUP ConsultJng Engineers with lighting can be inviting. Decorative light poles and luminaires can provide useful lighting as well as create a sense of place, an identity indicated by the type of lighting equipment used. Pole Types There are many options available when selecting street lighting equipment. This section highlights some of the options available. Utility/Wood Pole Mounted This configuration utilizes utility pole or separate wood poles on which to mount the luminaire and mast arm. Power is generally provided by aerial cables, but can also be provide underground. This can be a low cost option to facilitate lighting systems, and is typical of systems provided by utility companies such as ComEd. 23 Standard pole and Luminaire The term "standard pole and luminaire" refers generically to poles and luminaires that generally have simple designs. Straight or tapered poles without decoration or fluting, simple mast arm, such as davit or truss arms, and cobra head -style luminaires are typical of standard poles and luminaire assemblies. These are generally less expensive then more decorative pole assemblies. 9/7/2017 i Decorative Pole and Luminaire Decorative poles can help give a distinct look to an area, providing continuity and an identity to the streets or area. Many options are available. Some decorative poles evoke a certain time period, or a style associated with a particular place. These poles are often shorter pedestrian - scale poles, with mounting heights in the 14 to 20-foot range. Decorative bases, unique pole shapes, and more elaborate mast arms and configurations typify decorative poles. ComEd Leased Equipment ComEd offers a program called the Fixture -included Delivery Class. In this program, a municipality can lease equipment from ComEd who furnishes, installs, owns, operates, and maintains the lighting facilities for a dusk to dawn lighting system. They have a line of standard cobra head style luminaires with brackets as well as a few decorative post top luminaires. Photocell control is provided with all leased ComEd equipment. Leased equipment is generally paid for by a fixed rate determined by the luminaire type and wattage. Tree Conflicts The Village Forestry Department does not have any documented requirements for street lighting however, the following recommendations were provided. • Directional boring is preferred to open trenching as it minimizes damage to tree roots. • For new tree plantings, a minimum clearance of 10' is required, but more is preferred. Ideally, poles should not be located within the dripline of the tree at maturity. • For new installation, underground conduit is preferred. Forestry typical plants large trees that will grow up into aerial cables. The Village does not current plant or trim to account for aerial cables. Other notable items: • Pruning will be performed during the normal tree maintenance cycle if the trees can handle it. • As the trees age over the decades, they tend to get above the light poles, but obviously there is a lot of time there can be conflict. 24 9/7/2017 • If trees are planted after the poles are in place, sometimes a tree species with smaller canopy will be selected if a future conflict is anticipated. Luminaire Properties Mounting Height The height at which luminaires are mounted tends to vary by the roadway classification the size of the roadway, and the type of luminaire being used. With standard luminaires, Arterials may have mounting heights such as those, but generally have 30-40-foot mounting heights. Local and collector roads in residential areas will generally have shorter mounting heights in the 18 to 30-foot range, with residential tending toward the shorter end of the range. The mounting height can have a significant impact on the photometric distribution of the luminaire. Lower mounting heights tend to produce a distribution close to the pole. As the height increases, the ability of the luminaire to project further down the road is increased. Shorter mounting heights also can produce areas of more intense light directly under the luminaire and light levels dropping off quickly further from the luminaire. This creates low uniformity levels, and is common with high intensity discharge lamps such as high-pressure sodium or metal halide lamps. LED luminaires are less prone to this since each luminaire in the LED packet can be aimed to create the distribution pattern desired. As the mounting height increases, the high intensity areas level out and the light levels become more uniform. Light Source The choice of light source can impact the "look" of the lighting, but also the energy used in normal operations. Several characteristics help explain the operation of streetlighting light sources. Color Rendering index (CRI) The CRI is a way to measure how well a light source reproduces colors of object as compared to a natural light source. The index ranges from 1 to 100, with 100 being closest to the ideal natural light source. As a rule of thumb, a CRI measured above 80 is considered good for most application, and greater than 90 is considered a high CRI light source. Efficacy This is a measure of how much light (lumens) are produced related to the amount of electric power (watts) consumes to produce that light. This is measured in lumens per watt. Restrike Time When power is interrupted to a high intensity discharge (HID) light source there is a delay during which the lamp must cool down before it will relight, or restrike. Restrike time can range from one to 15 minutes or more, depending on the HID light source. 25 9/7/2017 Here is a description of typical light sources and the associated pros and cons: High Intensity Discharge Sources This group of lamps produce light by use of an arc tub containing a variety of elements of mixtures of elements, which gasify and produce visible light when an electrical arc is created between the electrodes on either end of the tube. These lamps have a very high efficacy in lumens output per watt input. HID lights are susceptible to power interruptions, after which they have a restriking delay during which the lamp must cool sufficiently before the lamp will restart. Mercury Vapor (MV) One of the first HID lamp types produced, these lamps have a quartz arc tube and use argon gas a starting gas, and use mercury vapor. They have an average life of 24,000 hours, and produce about 30 to 60 lumens per watt, depending on the lamp wattage. Restriking time times are about 5-6 minutes after power interruption. High Pressure Sodium (HPS). These lamps also have a long average life of more than 24,000 hours and an efficacy of between 80 and 140 lumens per watt. They utilize a ceramic arc tube and use xenon as the starting gas. HPS lamps are known for poor CRI and a unique yellowish color. Metal Halide (MH) Metal Halide lamps are similar to mercury vapor in that they use similar arc tubes and, mercury vapor, and argon gases, but MH lamps also have metallic salts that can cause the lamp to emit light at discrete wavelengths. This can result in lamps producing a much "whiter" light. Standard probe -start MH lamps have efficacies of 60 to 100 lumens per watt, and pulse -start MH lamps can reach 100 or more lumens per watt. A downside to MH lamps is their shorter average lifespan, which is generally 7,500 to 20,000 hours. Induction Light Source: Induction light sources are fluorescent lamps except they do not have electrodes. Instead, they are driven by a high frequency current that induces the lamp to emit light. Since they don't have the physical electrodes that are often the failure point of standard fluorescent lamps, they have extremely long lives, lasting upwards of 100,000 hours. The CRI is usually very good, and efficacies are usually between 60 and 90 lumens per watt. Unfortunately, induction lamps are a generally very large, and omnidirectional in light output, thus it can be difficult to control the light distribution. 26 9/7/2017 Light Emitting Diodes (LED): LED light sources are a highly efficient light source with extremely long lives with manufacture claims of lifespans between 50,000 to 100,000 hours (about 22 years). The efficacy of LED ranges up to about 120 lumens per watt for streetlights, and the U.S Department of Energy projects LED efficacies to increase in the coming years. LED light sources tend to have good CRI. LED light sources for roadways generally contain a LED package of multiple LEDS with each specifically aimed to produce the desired light distribution. Unlike HID lamps, LEDs have an instantaneous restrike after a power interruption. Light Distribution Light distribution is the illumination pattern on the roadway resulting from the light emitted by the luminaire. The patter is created using lamp location and orientation, internal reflectors, external refracting lenses, or a combination of these. Luminaires with LED light sources often have lenses attached directly to the LED cell to direct the light. Different distribution patterns are used to efficiently illuminate the roadway. IES documentation in the RP-8-14 is goes into more detail about these distribution classifications in Annex E — Classification of Luminaire Light Distribution, but a summary of the light distribution classifications in included here. Type I: These distributions have a short forward throw across the path or driveway, with a fairly wide distribution laterally. These work well for narrow paths and narrow single lane roads but the pole is generally located in the middle of the path. Type II: Type II distributions work well for wider paths and single lane or residential roads when located near the side of the road. The forward throw is larger than Type I distribution, and has similar lateral distribution. Type III: Type III distributions generally have more forward throw and wider lateral distribution than Type II distributions, and work well for most roadways uses. Type IV: Type IV distributions are useful lighting large areas, so are often used in parking lots and garages when lighting from the edge of the area. In some instances, they may be used for roadway intersections. The distribution is tending toward rectangular or shield shape, mostly forward from the light. 27 9/7/2017 Type V: Type V distributions are generally symmetric, forming an either almost round or square coverage shape. These work well for illuminating parking lots and open areas Color Temperature Color temperature describes the apparent warmth or coolness of a light source. It is based on the range of colors of a metal body (which for the tests a black body radiator is used) as it is heated and brought to higher temperatures, measured on the Kelvin scale. For reference, 0° Celsius equals 273' Kelvin. As the black body radiator is heated, it changes color from black, to reds, continuing through oranges and yellows, into whites, and then reaches blue colors. The color of a light source is described by its temperature in Kelvins (K). A typical incandescent light is in the 2300 to 2600 K range, which is a reddish yellow color, and a metal halide light source is about 5000 K, which is a white - blue color. The choice of color temperature is important. With LED light sources, the color temperature can be selected generally from 2500 to 5500 K. The whiter light generally provides good color rendering, facial recognition, and a makes the driving task easier. Power Sources Direct Utility Connection Power can be connected directly to the utility power. There is no metering, fusing of the service, or disconnects associated with this connection. In these instances, the luminaire is usually controlled by a photocell, turning on the luminaire once a certain light level has been reached. This setup is usually seen when a municipality either provides its own power, or when it has entered into an agreement with the power utility company and a flat rate is applied to each type of luminaire attached to the utility company's power. Disconnect Box Disconnect boxes are used in scenarios similar to the Direct Utility Connection, only this installation has a disconnect box between the utility power and the luminaire. The disconnect may control a single luminaire or circuit with multiple street lights. Individual photocells are provided at each luminaire. This configuration allows maintenance staff the ability to easily de -energize the circuit for repairs or other maintenance activities. Controller Controller and the associated cabinets are generally used when multiple circuits will be controlled from a central point. A connection to utility power is made to the controller, and the controller distributes it to the various circuits. Controllers can be metered or unmetered, depending on the agreements with the power utility. Controllers offer the 28 9/7/2017 highest level of control over the power distributed to the lighting system and are generally used on arterial roadways. Smart Technology Advanced lighting system technologies are available that can increase an agency's ability to monitor the operations of the lighting systems and adjust or respond to system needs as they arise. The technology available permits detection of the status of streets lights individually and collectively, such as if a lamp is burned out and needs replacing, energy usage, and current power levels. Additionally, the systems can be used to develop different lighting levels to match the roadway use. For example, lights can be at full power from dusk to a defined time when road usage is low, such as 1 am, after which time, lighting levels can be reduced. Some systems also provide sensors to detect when users are on the roadway system and dynamically adjust light levels up ahead of the user and then return them to lowered levels after the vehicles pass. Potential Benefits There many potential benefits derived from these systems. • Potential for reduced annual energy costs for lighting. • Reduced lighting levels and times of use may increase the life of the equipment • Village staff time dedicated to outage reviews can be allocated to other tasks. • Track equipment life and report upcoming replacements. This is especially useful with LED equipment as they continue to dim overtime and do not fail catastrophically. • Automatic reporting of day -burning luminaires. Comparison with Current Procedures The Village currently does not utilize smart technology for the residential street lighting system. Luminaires are generally controlled via photocells; therefore, each luminaire turns on and off individually. Dimming technology is currently not used within the Village. Day burning luminaires are reported as they are noticed. Village staff currently must drive throughout the lighting system to locate lamp outages, or tripped lighting circuits, or they must rely on calls from residents to inform them of the outage. If the smart lighting systems are utilized, the outage would be evident at a central control area, and staff dispatched accordingly. Potential Residential Lighting Installation Schemes Several potential residential lighting installation schemes were considered for the Village Residential Lighting program. The discussion, logic, and analysis is described for each installation scheme. 29 9/7/2017 Data Source Each scheme was evaluated using GIS data provided the Village. While the provided data appears to be fairly accurate, incorrect coding of roadways or parcels with the GIS data may result in small changes to the quantities and estimates contained within this report. Assumptions Several assumptions were made in order to provide the installation schemes. Roadway Geometric Design Information Average roadway widths in residential areas were obtained by measuring aerial images within Google Earth's PC application. It was estimated that the average residential roadway width is 28 feet wide. It is understood that some roadways may differ in width from this average, but this value appears representative of most residential roadways in the Village. For intersection photometric calculations, each approaching roadway is assumed to have a 28-foot width, and the curve radius between approaches was assumed to be 15 feet. Luminaires Used in An Four mast arm style LED luminaires manufactured by Leotek, were used in the analysis: • GCM2, 30H, 3000K, Type 3 Medium distribution, 700 mA drive current (for mid -block locations) • GCM2, 40H, 3000K, Type 3 Medium distribution, 950 mA drive current (for mid -block locations) • GCM2, 30H, 3000K, Type 4 distribution, 700 mA drive current (for intersections) • GCM2, 40H, 3000K, Type 4 distribution, 950 mA drive current (for intersections) Decorative style luminaires manufactured by Sternberg were used in the analysis: • "Oldtown" A850S RL E D-3ARC45T3-M D L03, 3500 K, Type 3 Medium distribution • "Oldtown" A850SRLED-4ARC45T3-MDL03, 3500K, Type 3 Medium distribution • "Euro" E450LED/FL/X/16L/45/T3/MDL(10 and 14) • "Euro" E450LED/FL/X/21L/45/T3/MDL(10 and 14) Intersections Only This scheme would place a street light only at intersections of residential roadways. Mid -block lighting would not be considered. Analysis was performed on the GIS data 30 9/7/2017 provided by the Village and there are approximately 781 intersections within residential areas of the Village of Mount Prospect. The IES Recommended Practice RP-8-14 for Roadway Lighting details recommended lighting design criteria for intersections based on functional roadway classifications. Collector and Local roadway classifications are the two likely types to be located in residential areas. For this analysis, low pedestrian conflict classifications were selected. This classification has low pedestrian volumes at night, and typically has low density residential housing development and single-family dwellings. The recommended design criteria are shown in the Table 8 below. Table 8: IES Recommended Intersection Illumination Functional Pedestrian Area Average Average Classification Classification Maintained Uniformity Ratio Illumination at Evg/Ein Pavement in foot-candles (fc) Collector/Collector Low 1.2 4.0 Collector/Local Low 1.0 4.0 Local/Local Low 0.8 6.0 Adapted from IES RP-8-14, Table 8: Illumination for Intersections The current practice for intersection lighting in the Village for a four-way intersection, as observed in Google Earth photography, is a single light pole, either stand-alone or on a utility pole, angled toward the center of the intersection. For analysis of four -legged intersections, the light pole layout consists of one pole with the mast arm oriented toward the center of the two streets. At "T" intersections, one pole will be placed in one of the quadrants adjacent to the terminating roadway, with mast arm oriented to the center of the intersection. Photometric analysis of this typical intersection using the Type IV light distribution luminaire on a 10' mast arm confirms that the IES recommended illuminance levels can be obtained with one luminaire at the intersection. Photometric analysis also confirms that illuminance levels can also be attained with one decorative light pole and luminaire. Table 9 summarizes the estimated number of intersections with and without lighting. 31 9/7/2017 Table 9: Summary of Residential Intersections Residential Intersections 781 Intersections with Village Owned Lights 88 Intersections with Com Ed Owned Lights 590 Unlit Intersections 103 Intersections Plus Midblock where Block Length Greater than 300 Feet This scheme includes installation of lights at intersections plus one additional mid -block pole location for roadway segments greater than 300'. The total residential roadway sections were determined from the GIS roadway centerline data supplied by the Village. Based on the analysis, there are approximately 1,422 residential road segments, with 1,161 classified as local roadways and 261 classified as collector roadways. Of those, 1,144 are greater than 300' long. Table 10 illustrates the estimated number of poles. Table 10: Estimated Number of Mid -Block Poles Residential Blocks 1,422 Blocks < 300' 278 Blocks < 300' with Village owned lighting 15 Blocks < 300' with Com Ed owned lighting 19 Blocks < 300' with no mid -block lighting 244 Blocks >_ 300' 1,144 Blocks >_ 300' with Village owned lighting 88 Blocks >_ 300' with Com Ed owned lighting 94 Blocks >_ 300' with no mid -block lighting 962 Pole Spacing to Meet IES Recommendations The IES Recommended Practice RP-8-14 for Roadway Lighting details recommended lighting design criteria for streets. For this analysis, low pedestrian conflict classifications were selected. This classification has low pedestrian volumes at night, and typically has low density residential housing developments and single-family dwellings. The recommended design criteria are shown in Table 11 below. 32 9/7/2017 Table 11: IES Recommended Street Lighting Design Criteria Average Max Veiling Pedestrian Average � UniformityMax Uniformity Luminance Classification Area Luminance Ratio Ratio Ratio Classification Lang (cd/M2) Leg/Lmin L /L max min LV /L max avg Collector Low 0.4 4.0 8.0 0.4 Local Low 0.3 6.0 10.0 0.4 Adapted from IES RP-8-14, Table 3: Lighting Design Criteria for Streets Based on the recommended design criteria and the stated assumptions, a pole spacing analysis was performed. In Table 12, the approximate pole spacing and number of poles required to fill in between existing or proposed intersection lighting, roadway type and mounting height. Table 12: Number of Poles Required to meet IES Design Recommendations — Standard Equipment Roadway Classification Mounting Height Pole Spacing Number of Poles Required 25' 185' 506 Collector 30' 225' 373 20' 160' 31104 Local 25' 205' 2,221 Table 13: Number of Poles Required to meet IES Design Recommendations — Decorative Equipment Roadway Classification Mounting Height Pole Spacing Number of Poles Required Collector 16' 125' 813 Local 16' 125' 4,047 Intersections Plus Midblock Lighting, with a Not -to -Exceed Max Spacing This scheme places a street light at each residential intersection plus mid -block streetlight installations. The mid -block lighting would consist of placing one or more light poles not to exceed a 300' spacing. Note that these are totals are the number of pole required to fill in between existing or proposed intersection lighting. 33 9/7/2017 Table 14: Estimated Number of Mid -Block Poles for the Noted Spacing Not to Exceed Spacing Number of Poles 150' 3788 200' 2,563 250' 2,019 300' 1773 Estimates and Costs Unit r-nctc New Pole Installations Estimated unit costs for new installations were determined by reviewing recent IDOT bid results for installations of standard equipment. Luminaire sales representatives were contacted to obtain current pricing for decorative equipment. The unit cost is estimated at $8,000 per pole. This unit cost includes a cobra head style LED luminaire, standard mast arm style pole, cable, unit duct, controller, ComEd connection fees, restoration fees and all other expenses associated with installing a street lighting system through a bidding process. Unit prices are based on a small quantity (10) installed at a time. Larger installations will result in lower unit costs. Luminaire Replacements The estimated cost for the replacement of a standard cobrahead luminaire has been estimated at $550 each. This estimate includes $300 for the purchase of a luminaire and $250 for labor, equipment and miscellaneous supplies for installation by Village staff. These values are based on past maintenance work orders provided by the Village. Additional savings will likely be realized if a significant number of luminaires can be replaced at the same time. Generally, installation by a contractor will result in reduced labor costs due to the competitive nature of the work and single focus on only replacements, in comparison with Village staff that will likely have other tasks to address. In addition, the Village can eliminate the labor cost from this unit price by making the assumption that Village labor is already included within the Village budget. ComEd Pole Removals Costs for removal of existing ComEd equipment are the responsibility of the Village. To arrange removal, the Village would need to contact ComEd New Business and submit a work order request. ComEd will then prepare an estimated cost for review and approval 34 9/7/2017 by the Village. Because ComEd does not provide cost estimates for planning purposes, we have the cost for a crew of four to be $7,200, which includes labor, materials and equipment. Estimated production is six removals per day, for a unit cost of $1,200 per removal. This unit cost includes the removal of wood poles. Not all wood poles will be removed with the luminaires in cases where the poles are supporting other ComEd facilities or other utilities. Replacement of ComEd Light Removals The costs of the removal of existing ComEd lights and replacement with Village -Owned lights is simply the sum of removal ($1,200) and new installation ($8,000), which is $9,200. C.nct Far_tnr A cost factor system has been developed to reduce the number of cost calculations included in this report. The cumulative cost factor can be multiplied times the $8,000 per pole estimate or any of the estimates contained within this report. An example can be found below. Cost Factors Standard Lighting Includes standard mast or davit arm pole and cobrahead luminaire and all other equipment required for a complete lighting system. Decorative Lighting Upgrade to basic decorative equipment, such as a fluted pole with decorative base, and post top luminaire. Premium Decorative Equipment Upgrade to a more detailed pole and luminaire. Smart Controls Include smart controls and infrastructure required to manage them. C'.nntm1hnr Install full street lighting controller in lieu of direct utility connections. Design Engineering Estimated cost for a consultant to perform design engineering services. Note that work can be performed by Village staff, if resources allow. 35 9/7/2017 Construction Engineering Estimated cost for a consultant to perform construction observation services. Note that work can be performed by Village staff, if resources allow. Table 15: Cost Factors Option Cost Factor Standard Lighting 1.00 Decorative Equipment 0.15 Premium Decorative Equipment 0.10 Smart Controls 0.02 Controller 0.30 Design Engineering 0.10 Construction Engineering 0.10 Examples of Cost Factor Application An estimated cost can be determined by using the following equation: Estimated Cost = (# of poles) x (cost factor) x (unit price). For an installation of 10 standard residential street lights, the estimated cost is $80,000. Estimated Cost = 10 x 1.00 x $8,000 = $807000 For an installation of 10 premium decorative residential street lights, the estimated cost is $1003000. Estimated Cost = 10 x (1.00+0.15+0.10) x $8,000 = $100,000 For an installation of 10 residential street lights with all the options listed in Table 15, the estimated cost is $141,600. Estimated Cost = 10 x(1.00+0.15+0.10+0.02+0.30+0.10+0.10) x $8,000 = $141)600 36 9/7/2017 Flat Rate vs. Metered Electrical Charges For a widely dispersed lighting system, as commonly found in residential areas, it is generally preferred to choose unmetered electrical billing. Meters are not required by ComEd for luminaire-only circuits; therefore, the cost of the meter pedestal can be saved. Savings are also realized by having to maintain the pedestals. ComEd Monthly Lease Charges The monthly charges for ComEd leased street lighting equipment is specified in ComEd's Schedule of Rates for Electric Service. The rental rates for the ComEd lighting equipment currently in use by the Village is listed in the table below. The effective rate, also shown in the table, is the listed rate plus the prorated cost per month of all other charges and fees associated with leasing the lighting equipment, including electrical charges. The effective rate is calculated from current information valid through December 2017. Table 16: ComEd Monthly Equipment Lease Charges Equipment Rate Book Cost/Mo. Effective Cost/Mo.# Light Emitting Diode (LED) Cobra Head — 40 to 60 Watts $2.67 $4.15 Light Emitting Diode (LED) Cobra Head — 61 to 80 Watts* $3.28 $5.10 Light Emitting Diode (LED) Cobra Head — 81 to 119 Watts* $3.63 $5.64 Mercury Vapor (MV) Cobra Head — 100 Watts $4.18 $6.50 MV Cobra Head — 175 Watts $4.21 $6.55 MV Cobra Head — 250 Watts $4.39 $6.83 MV Cobra Head — 400 Watts $4.95 $7.70 High Pressure sodium (HPS) Cobra Head — 100 Watts $4.69 $7.29 HPS Cobra Head — 150 Watts $4.54 $7.06 HPS Cobra Head — 250 Watts $4.93 $7.67 HPS Cobra Head — 400 Watts $5.38 $8.37 Mounting Bracket —eight feet (8 ft.) or less in length $4.16 $6.47 Mounting Bracket —over 8 ft. in length $5.58 $8.68 * Not currently in use by Village. Shown for comparative purposes. 37 9/7/2017 # Includes electricity charges, maintenance and other fees. Life Cycle Cost of Ownership Annual costs of ownership for Village owned and ComEd owned equipment have been calculated below. Installation costs were split over 50 years, the lifespan for light poles, as determined in the Village's Street Lighting Program Guidelines. Cost calculations are based on a 100-watt LED luminaire. Village -Owned Standard Pole Table 17: Life Cycle Cost of Ownership — Village -Owned Standard Pole Expense Cost Installation ($8,000/50 years) $160 Annual Maintenance $100* Annual Electricity Charges ($0.28NV)* $28 Total $288 * = using rates calculated in the Village's Corridor Lighting Evaluation Village -Owned Decorative Pole Table 18: Life Cycle Cost of Ownership — Village -Owned Decorative Pole Expense Cost Installation ($9,200/50 years) $184 Annual Maintenance $100* Annual Electricity Charges ($0.28NV)* $28 Total $312 38 9/7/2017 ComEd (Leased) Wood Pole Table 19: Life Cycle Cost of Ownership — ComEd (Leased) Wood Pole Expense Cost Installation ($3,600/50 years) $72 Lease Charges ($14.32/month)# $172 Total $244 # _ $5.63/month for luminaire + $8.68/month for mast arm. Includes electricity charges, maintenance and other fees. Note that ComEd does not provide cost estimates without a work order, therefore, the installation costs above were estimated based on a crew of 4 completing two units per day. Replacement of Existing ComEd Pole with Village -Owned Standard Pole Table 20: Life Cycle Cost of Ownership — Replacement of Existing ComEd-Owned pole with Village -Owned Standard Pole Expense Cost Removal ($1,200/50 years) $24 Installation ($8,000/50 years) $160 Annual Maintenance $100* Annual Electricity Charges ($0.28NV)* $28 Total $312 * = using rates calculated in the Village's Corridor Lighting Evaluation Payback of Replacing Existing ComEd Pole with Village -Owned Standard Pole Based on the values in Table 20, replacement of an existing leased ComEd pole with aVillage-owned LED pole costs $9,200 ($1,200 for removal, $8,000 for installation of a new pole). Annual costs are reduced from $244 (lease, maintenance and energy charges) for the ComEd pole to $128 (maintenance and energy charges), a savings of $134 per year. The payback for the replacement is calculated by dividing the replacement cost ($9,200) by the annual savings ($134) to determine the number years for payback. Payback is calculated at 69 years ($9,200/$134). Since this value significantly exceeds the expected service life of 50 years for the 39 9/7/2017 poles, replacement of the existing leased ComEd poles with Village -owned equipment is not cost effective. However, there are other non -financial benefits associated with replacement that should be considered such as improved appearance, elimination of overhead cables and an appearance consistent with other installations throughout the Village. Cost Summary & Comparison The table below summarizes the above information for easy comparison. Upfront costs are the initial cash outlay require to construct a new pole or replace an existing luminaire. Annual Maintenance and Annual Electricity Costs are based on Village historical data and projects for new LED equipment completed for the Corridor Lighting Study. Lease Costs are the charges for equipment leased from ComEd. These charges included maintenance and electricity charges. The Net Budget Impact is the net change (new costs minus existing costs) to the budget as a result of the listed improvement. Electricity and lease charges are inclusive of taxes and fees. Table 21: Cost Summary and Comparison — Standard Poles Upfront Annual Annual Lease Net Improvement Cost Maintenance Electricity Costs Budget Costs Costs Impact Existing HPS, MH, or _ $100 $42 - $142 MV Luminaire Replace Existing Village -Owned $550 $82 $28 - ($32) Luminaire with LED Luminaire Install New Village - Owned Pole with LED $87000 $82 $28 - $110 Luminaire Replace Existing ComEd Pole with $91200 $82 $28Village-Owned ($134) Pole($244) and LED Luminaire Existing ComEd-Owned _ _ _ $244 - Pole Install New ComEd- $31600 - - $244 $244 Owned Pole 40 9/7/2017 Implementation Cost Estimates Cost estimates have been prepared for several options to upgrade the Village's lighting system, ranging from filling in gaps in the existing system to complete replacement with a design that meets IES recommendations. All estimates are for standard equipment. The costs factors previously identified should be applied, if desired. Fill-in Unlit Intersections Install lighting at the intersections that are currently unlit. Table 22: Estimate of Cost — Fill-in Unlit Intersections — Standard Poles Number of Poles Unit Cost Extended Cost 103 $8)000 $8241000 Upgrade Village -Owned Intersection Luminaires to LED Table 23: Estimate of Cost — Upgrade Village Owned Intersection Luminaires to LED Number of Poles Unit Cost Extended Cost 88 $550 $481400 Fill-in Unlit Mid -Block Locations, Single Pole Install a single mid -block pole for blocks with no current mid -block lighting. Table 24: Estimate of Cost — Fill-in Unlit Mid -Block Locations — Standard Poles Number of Poles Unit Cost Extended Cost 962 $85000 $7065000 Fill-in Unlit Mid -Block Locations, 300' Minimum Spacings Install mid -block lighting for locations with no current mid -block lighting. Maximum spacing of 300' per current Village Code. Note that multiple poles may be required for blocks longer than 600'. Blocks with existing mid -block poles with spacings exceeding 300' are also included. 41 9/7/2017 Table 25: Estimate of Cost — Fill-in Unlit Mid -Block Locations — Standard Poles Number of Poles Unit Cost Extended Cost 11868 $8)000 $14)944)000 (1,021 locations) Upgrade Village -Owned Mid -Block Luminaires to LED Table 26: Estimate of Cost — Upgrade Village Owned Mid -Block Luminaires to LED Number of Poles Unit Cost Extended Cost 300 $550 $1651000 Illuminate to IES Recommended Levels Costs include an all -new lighting system. Some poles and/or foundations may be reused; therefore, actual cost will likely be less. 2,594 standard poles are required to illuminate to IES recommended levels. If decorative poles are used, up to 4,860 poles may be required. Table 27: Estimate of Cost — Illuminate to IES Recommended Levels Number of Poles Unit Cost Extended Cost 21594 $8)000 $20)752)000 to to to 41860 $97200 $44)712)000 Illuminate with Fixed Spacing (150% 200' & 250') Costs include an all -new lighting system. Some poles and/or foundations may be reused; therefore, actual cost will likely be less. A range of 2,019 to 3,788 poles are required depending on the selected fixed spacing and pole style. 42 9/7/2017 Table 28: Estimate of Cost — Illuminate with Fixed Spacing (150; 200' & 250') Number of Poles Unit Cost Extended Cost 2, 019 $16)1527000 to $8)000 to 3, 788 $30)304y000 Potential Funding Sources Grants The following sources offer grants that may be applied to the installation or retrofit of efficient lighting. With the current financial climate of the State of Illinois, many programs have been suspended or eliminated. The websites below should be checked on a regular basis for updated information. Public Sector Energy Efficiency Program by DCEO This program is no longer available as ComEd has taken over the Illinois Department of Commerce and Economic Opportunity's (DCEO) Energy Now program. See the ComEd's Energy Efficiency Program below. Illinois Clean Energy Community Foundation The Illinois Clean Energy Community Foundation does not currently offer any programs that apply to street lighting, but they have within the last 18 months. More information can be found at this website. Database of State Incentives for Renewables &Efficiency (DSIRE) The DSIRE website (http://www.dsireusa ) is a searchable database of incentives and grants related to energy efficiency funded by the U.S. Department of Energy. The interface is very simple, allowing the ability to quickly search by zip code and topic. ComEd Energy Efficiency Program Beginning January 1, 2018, ComEd will begin administering their Energy Efficiency Program, which replaces the State of Illinois' DCEO program. This program is available to public entities and will include incentives for the replacement of older street lighting technologies with LED equipment. 2017 funding levels are $1.47 per watt reduced, resulting in a savings between $30 to $175 per luminaire. 2018 funding levels have not been released at the time this document was prepared. The process for obtaining funding is complete an application with ComEd, obtain pre -approval, install the new equipment, and submit final paperwork. Further details can be found at ComEd's website. 43 9/7/2017 ComEd Smart Lighting Program ComEd is planning to upgrade the Village's leased HPS luminaires to LED in 2018 as part of their smart lighting program. While the existing luminaires will be replaced, ComEd's existing wood poles, mast arms and aerial cables will remain. The installation of LED luminaires will result in whiter light, which may appear to be brighter to the naked eye. This work will be completed at no charge to the Village, provided an updated lease agreement is adopted. ComEd has made initial contact with Village staff regarding these improvements. Village Capital Improvement Plan The Village can consider adding the upgrade of the residential street lighting to the Village Capital Improvement Plan/budget and identify funding as necessary. Private Financing Private financing is obtained from financial institutions, equipment manufacturers, contractors, and energy service companies. Private financing works similar to a car loan. Installment payments are created to finance a large purchase such as the installation of a street lighting system. Some financers allow project costs such as design, installation, project management, energy charges and on -going maintenance to be included in the monthly payment, if desired. When retrofitting a large number of inefficient luminaires, it is common for the reduced monthly energy charges to offset the monthly payment for the luminaire upgrades. Per discussion with two sources familiar with financing street lighting systems, the process of vetting this type of financing often takes up to one year. This is due to the cautious nature of the lender and the borrower. Actual time for processing the credit application is a few days to a couple of weeks. Our contacts also provided the following information: Term Standard terms for roadway lighting installations range from 5 to 10 years. Terms of 5 to 6 years are preferred because they typically have better rates. I ntAract RatA Current interest rates for roadway lighting installations range from 2 to 5 percent. Rates are influenced by credit rating, amount financed and tax-exempt status. Rates are generally fixed for the term. Payment Payments typical range from $10 to $20 per month per thousand dollars financed. This number is highly dependent on the term of the financing. For example, $11000,000 financed over 5 years would result in a payment of approximately $20,000 per month. Payments can be invoiced monthly, quarterly, semi-annual or annual. 44 9/7/2017 Fees Fees may be incurred, depending on the provider. The maximum known fee reported was "a one-time Documentation Fee of 1 %, not to exceed $25,000". This fee was billed with the first payment. Implementation Recommendations The intent of this report is to provide the Village with the information necessary to make informed decisions regarding residential lighting policies and installations. Through review of this document and subsequent discussions, the Board can begin the process of exploring community goals and proposed improvements to be included in the Village of Mount Prospect Residential Lighting Policy. As preferences are identified, a more detailed analysis of a few options can be completed to refine scope and cost. Obtain Public Feedback Through the 2016 Community Survey, residents indicated a desire for improved residential street lighting. The Village should consider opening a dialog with the community to better understand what improvements are important to Village residents. Involving the community in the decision process can beneficial in many ways. It provides the Village an opportunity to disseminate information quickly and efficiently to the public. Inviting the public to have input can engender goodwill between the Village and residents. Public involvement allows for meaningful input from "end -users" of the system who may have specific concerns or suggestions not previously presented to the Village, and can be helpful when making key decisions later in the process. We recommend the Village use the public involvement process to help inform and guide their decision - making process. Identify Community Goals As public feedback as received, potential goals for the lighting system can be identified. Opinions can be gathered and summarized to determine if too much or too little light is being provided, safety concerns or even maintenance issues. These goals may be associated with different types of neighborhoods such as residential or multi -family dwellings. Determine Extent of Li_ghtinp Desired Evaluate potential lighting upgrades or new installations that are required to meet the identified community goals. Update budgetary estimates to provide an accurate cost for proposed improvements. Identify Preferred Equipment Consider costs, performance and aesthetics to select a preferred style of equipment. Consider obtaining sample equipment, performing trial installations and site visits to evaluate options. 45 9/7/2017 Develop Residential Street Lighting Policy Develop a formal policy. Outline requirements, equipment and procedures required to complete the entire process. Prepare standardized details and specifications. Amend Village Li_ghtinq Ordinance Once a residential street lighting policy is developed, and preferred styles of lighting equipment have been selected, the Village may want to consider updating or amending the Street Lighting Ordinances, currently Chapter 16, Section 800, Article VIII Street Lighting. The current article 16.801: Street Lighting Improvements includes guidance for all roadway classifications and types of lighting. 46 9/7/2017 Appendix A — Existing Village Code 16.801: STREET LIGHTING IMPROVEMENTS: A. General: All development shall include the design and construction of street lighting facilities for the illumination of all roadways, public or private, which lie in or border the development. Street lighting to be accepted by the village shall be constructed within public right of way or in easements dedicated to the village. New developments proposed on a county or state roadway shall not be required to install streetlights at the time of development only if such installation is not permitted by the state of Illinois and/or Cook County and provided the owner signs a restrictive covenant guaranteeing their installation at a later time. Refer to section 15.202 of this code for a list of state and county roadways. B. Specifications: Streetlights and appurtenances shall be designed and installed according to: the "American Standard Practice for Roadway Lighting", current edition, the national electrical code, current edition, as amended by the village electrical code; and this code. C. Streetlight Locations: 1. Residential, Commercial and Industrial Districts: Poles shall be located at all intersections and spaced at a distance not exceeding three hundred feet (300') from one another for midblock locations. Poles shall also be located at the ends of cul-de-sacs and a curve in the roadway as required by the director of public works. Poles shall be set in the parkway two feet (2') from the back of curb. Where the distance between the sidewalk and the curb is such that this location is impractical or where the sidewalk is adjacent to the curb, the director of public works shall be consulted for an alternate location for the pole. Unless otherwise directed by the director of public works, the direction of the support arm shall be at right angles to the intersection of the centerlines of the intersecting streets at a four (4) legged intersection. At "T" intersections, a pole shall be provided on the centerline extended of the terminating street at the top of the "T" with the support arm extending toward the center of the intersection. Between intersections, mast arms shall be orientated at a right angle to the centerline. In cul-de-sacs, lights shall be placed in the center median or if no center median is to be constructed, at the end of the cul-de-sac along the centerline extended. 2. Arterial and Collector Streets: Poles shall be located at intersections and spaced such that the illumination meets the following criteria: a. Maintain 1.2 average foot-candles (after depreciation). b. Maximum/minimum ratio of six to one (6.0: 1.0). c. Average/minimum ratio of three to one (3.0: 1.0). D. Light Pole Requirements: 1. Standard Light Poles: Appendix A-1 9/7/2017 a. All poles shall be round tapered seamless poles fabricated from aluminum alloy 6063-T6. Poles shall be provided with bolt down anchor bases and handholes. Anchor bases and handhole frames shall be manufactured from aluminum alloy 356-T6. b. Bracket arms shall be truss tapered elliptical arms manufactured from aluminum alloy 6063- T6. Bracket arm shall taper to two and three -eighths inches (23/8") at luminaire end. c. Poles shall be designed and fabricated to withstand eighty (80) mph winds and associated wind gusts and vibrations. The light poles shall be able to support a luminaire panel up to one and seven -tenths (1.7) square feet. All poles shall be designed in conformance with AASHTO's "Standard Specifications for Structural Supports for Highway and Traffic Signals". In residential areas, the lighting standards shall have bolt down bases and shall be constructed of spun aluminum with a twenty-five foot (25') mounting height and ten foot (101) truss arm with wraparound clamp in lieu of rivnuts. The lighting standards shall be Crouse - Hinds no. RTA8M25AAT10268 clamp design, Union Metal model 154-Y1 clamp design, or approved equal. In commercial or business areas, the lighting standards shall have bolt down bases and shall be constructed of spun aluminum with a thirty foot (30') mounting height. The lighting standard shall be Crouse -Hinds no. RTA8M30AAT15268 clamp design, Union Metal model 154-Y11 clamp design, or approved equal. In cases where black finish is desired, the finish shall be anodized duranotic black finish on spun aluminum. Painted steel poles shall not be allowed. Alternate poles and mounting height shall be approved by the director of public works and director of community development. 2. Light Pole Designs: Light poles in village downtown business districts and their environs, and other areas designated by the director of public works shall be in keeping with the character of the area, and shall be specified by the director of public works. E. Luminaries and Lamps: 1. Standard luminaries shall consist of a housing, reflector, reflector holder, lamp socket, slipfitter, three (3) terminal photoelectric cells and back light shield. The luminaries and lamps shall be high pressure sodium. Any mercury vapor lamps in existence on April 16, 1991, may continue in use. All fixture components shall be designed to operate under all environmental conditions. All luminaries shall be designed and wired to operate on sixty (60) hertz alternating current with a multiple tap high power factor (95+%PF) regulator type ballast. All lenses shall be heat resistant borosilicate glass. All fixtures shall be designed to operate at minus twenty -degree Fahrenheit (- 20°F) (28°C) minimum starting temperature. a. The mercury vapor luminaries existing as of April 16, 1991, shall have a die cast aluminum housing with a removable ballast assembly, acrylic or borosilicate glass refractor, photoelectrical cell receptacle and cell multitap reactor type ballast and universal slipfitter. Acceptable units include General Electric M-power/door, ITT horizontal luminaire or approved equal. b. The high-pressure sodium luminaire may be either the conventional horizontal flat lens cobra head type or the decorative shoebox type, either of which shall be the cutoff type fixture. Appendix A-2 9/7/2017 HECIORBA GROUP result nEngineers c. The cobra head type shall have die cast aluminum housing, removable ballast assembly, a photoelectrical cell receptacle and cell, a multiple tap reactor type ballast and universal slipfitter receptacle. Acceptable units include: (1) For Residential Areas: (A) General Electric M-power/door M2AR1550H2GMS31. (B) Crouse -Hinds OVS15SR22ET or approved equals. (2) For Commercial Areas: (A) General Electric M-power/door M4AC40SOA2GMC31. (B) Crouse -Hinds OVM40SCW2EF quad tap or approved equals. d. The high-pressure sodium decorative shoebox type fixture shall have a formed aluminum housing, removable ballast assembly, a photoelectrical cell receptacle and cell, and a multiple tap reactor type ballast. Acceptable units include: (1) For Residential Areas: (A) General Electric D25S15SOH2GMC3DBR. (B) Quality Lighting 117-14G150WHPS quad tap. (2) For Commercial Areas: (A) General Electric D40S40SOH2GMC3DBR. (B) Quality Lighting 117-14G-120HPS400PCT. 2. Luminaries in village downtown business districts and their environs, and other areas designated by the director of public works shall be in keeping with the character of the area, and shall be specified by the director of public works. F. Wire/Cable Requirements: 1. All wire and cable installed under this section from the power source to the lighting standards shall be contained in either unit duct manufactured from high density smooth wall polyethylene electrical plastic duct or heavy walled galvanized steel conduit. Direct burial of all wire and cable under this section is prohibited. All unit duct shall be installed in accordance with the "Standard Specifications for Road and Bridge Construction", Illinois department of transportation, latest edition. All wire and cable installed under this section shall be heat and moisture resistant, type XHHW, and be suitable for use at seventy-five degrees centigrade (75°C) (167°F) and shall have insulation rated at 600V. Appendix A-3 9/7/2017 HECIORBA GROUP result n ineer The bare ground wire shall be #8AWG stranded copper wire. 2. All wire will be subject to an insulation test to ground after installation. The minimum acceptable resistance to ground shall be 250,000 ohms. Any section of wiring failing to pass the minimum insulation test for any reason or showing an obvious short circuit shall be rejected. All wire, cable and unit duct to be furnished shall be buried not less than thirty inches (30") below finished grade. 3. All runs shall be continuous without splice in cable or unit duct from pole handhole to pole handhole or to control cabinet. Cable slack shall be provided such that there is a minimum of two feet (2') of slack at the base of all light standards. 4. Adequate slack shall be provided such that the service connection can be made without splices other than at the power source. In the case of aerial service, rigid steel conduit for service pole riser including insulated bushing shall be provided for a service pole riser. 5. When passing under concrete or asphalt surfaces, rigid galvanized steel conduit not less than two inches (2") in diameter with bushings shall be used for raceways. 6. Disconnects shall be provided and installed at all points of connection to the Commonwealth Edison power source. 7. Fuse holders with fuses shall be installed in each conductor and located at the base of each pole so they are accessible through the handhole at the base of the pole. Fuse holders shall be Buss-Tron in -line waterproof fuse holder and breakaway receptacle #HEB-AW-RLC or approved equal. (Ord. 5253, 5-21-2002) Appendix A-4 9/7/2017 HE CIORBA GROUP nsul n ineer Appendix B — Survey Questions Polic 1. Does your municipality have a formal residential lighting policy? 2. Does your municipality include residential street lighting in the annual budget? 3. Where are residential light poles typically installed? a. Corners b. Mid -block c. Fixed spacing 4. Is lighting required for new subdivisions or redevelopments? 5. Does your municipality own your residential lighting system or is it leased from other, such as Com Ed? 6. What is the approval process for new residential lighting installations? 7. Who performs new lighting installations? a. Village staff b. On-call/maintenance contractor c. Bid out Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) ii. Decorative/Architectural b. Mounting height (estimate in feet) c. Approximately how many are installed in your municipality? d. Approximately what percentage of residential streets are illuminated? e. What light sources are used? i. HPS ii. MV iii. Induction iv. LED v. Other f. Is aerial or underground cabling utilized? g. Does the Village utilize smart lighting to identify outages, usage, etc.? i. Currently using ii. Considering using iii. Not considering using Appendix B-1 9/7/2017 Operations: 1. How is your residential lighting controlled? a. Controller or disconnect b. Photocell (direct ComEd connection) c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type b. Metered (actual usage) Maintenance 1. Who performs the maintenance of your residential lighting system? a. Village staff b. Contractor 2. Is preventative maintenance completed for the following? a. Group relamping b. Photocell replacement c. Cleaning d. Inspections e. Painting f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: i. Light out ii. Circuit/controller out iii. Knockdown Appendix B-2 9/7/2017 Appendix C — Survey Results Arlington Heights Polic • 1. Does your municipality have a formal residential lighting policy? Yes 2. Does your municipality include residential street lighting in the annual budget? Yes 3. Where are residential light poles typically installed? a. Corners b. Mid -block c. Fixed spacing xxx 4. Is lighting required for new subdivisions or redevelopments? Yes 5. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? Combination, the majority is owned and maintained by the village 6. What is the approval process for new residential lighting installations? Handled by the Engineering Dept and Public Works 7. Who performs new lighting installations? a. Village staff b. On-call/maintenance contractor c. Bid out xxx Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) xxx i i . Decorative/Arch itectu raI xxx b. Mounting height (estimate in feet) 14'126', 30', 35, 477 c. Approximately how many are installed in your municipality? Approx 3,900 d. Approximately what percentage of residential streets are illuminated? Approx. 75% e. What light sources are used? i. H PS xxx ii. MV iii. Induction iv. LED xxx v. Other f. Is aerial or underground cabling utilized? underground g. Does the Village utilize smart lighting to identify outages, usage, etc.? i. Currently using Appendix C-1 9/7/2017 ii. Considering using xxx iii. Not considering using Operations: 1. How is your residential lighting controlled? a. Controller or disconnect b. Photocell (direct ComEd connection) xxx c. Timer d. Other (please explain) cabinet controlled by photo cell Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type xxx b. Metered (actual usage) xxx Maintenance 1. Who performs the maintenance of your residential lighting system? a. Village staff xxx b. Contractor 2. Is preventative maintenance completed for the following? a. Group relamping if a fair amount are out on a circuit, we will re -lamp all b. Photocell replacement no, as needed c. Cleaning yes when repairs are made d. Inspections yes e. Painting yes, downtown decorative f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. Currently repairs are made as reported, moving forward with the LED change out, smart lighting controls will be looked at 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: i. Light out 3 days ii. Circuit/controller out 1 day iii. Knockdown 1 hour Buffalo Grove Polic • 1. Does your municipality have a formal residential lighting policy? Only ordinance provisions and standard operating procedures for knock downs/maintenance 2. Does your municipality include residential street lighting in the annual budget? Only maintenance, recently adding some relamping to change to LED Appendix C-2 9/7/2017 3. Where are residential light poles typically installed? a. Corners and Cul-de-sacs mostly b. Mid -block All curves c. Fixed spacing 360' or as designed 4. Is lighting required for new subdivisions or redevelopments? Yes 5. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? Both 6. What is the approval process for new residential lighting installations? Engineering review 7. Who performs new lighting installations? a. Village staff b. On-call/maintenance contractor c. Bid out Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) Both ii. Decorative/Architectural Both 1. Ameron International, Centrecon Series Medium Embedded Octagonal Pole, twenty-three feet in height, catalog number MEO-7 (W/MO-AD-8ft. Davit Arm). 2. Ameron International, Centrecon Series Medium Embedded Octagonal Pole, twenty-eight feet in height, catalog number MEO-8.5 (W/MO-AD-8ft. Davit Arm). 3. Any poles also permitted for major streets as permitted by the Village Engineer. a. Luminaries and lamps are to be matched to the proximal existing system to match Leotek Light -On group, ECobra- head, EC1-6-M-MV-NW-2-530-DB or any luminaires permitted for major streets as permitted by the Village Engineer. b. Mounting height (estimate in feet) Varies c. Approximately how many are installed in your municipality? 3200 d. Approximately what percentage of residential streets are illuminated? 90% e. What light sources are used? i. HPS Appendix C-3 9/7/2017 ii. MV iii. Induction iv. LED — Will eventually only be LED, phasing out HPS v. Other f. Is aerial or underground cabling utilized? Generally underground for lighting we own, aerial for Corned rentals g. Does the Village utilize smart lighting to identify outages, usage, etc.? i. Currently using iii. Considering using iii. Not considering using Operations: 1. How is your residential lighting controlled? a. Controller or disconnect b. Photocell (direct ComEd connection) c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type -both b. Metered (actual usage) -both Maintenance 1. Who performs the maintenance of your residential lighting system? a. Village staff — Initial response, assessment and ensure site is safe b. Contractor —All other repairs 2. Is preventative maintenance completed for the following? a. Group relamping b. Photocell replacement c. Cleaning d. Inspections e. Painting f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. Nothing more than visual identification or resident notification. 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: i. Light out — 24 hours ii. Circuit/controller out — 24 hours Appendix C-4 9/7/2017 llac Plainac PO�iC 1. Does your municipality have a formal residential lighting policy? No 2. Does your municipality include residential street lighting in the annual budget? A�paiirtfiir in iii IIIII nnn IIIIIIIII ff it R R IIIII "Oh"Ohe oi6iiregUlaiir a tiiiii is foiir'flhe li iii iinll nnn iin in tiiriiiii iiiiit it iiiii tiiiii iin Rir R iiiii htiiiii iin 3. Where are residential light poles typically installed? a. Corners b. Mid -block c. Fixed spacing 4. Is lighting required for new subdivisions or redevelopments? Pheire iiii iino"t a foiirii iilcy, R ii44UHng ii It iii iir iii iir IIIII 5. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? Ph,,,,, vas"t n iiriiiiity of ir iiiii ,,,,, iintiiiii iiiii htiii iin iii ° iir ii . R��IIIIII R��IIIIII IIIIIIIIIII III III IIMb it it ' IIIIIIIIIIII IIIII IIIIIII ii h iiiii Its iiriiiii tiiiii iins sca"t"teired h it u h uIII II he Gi'ty Andiii iin iinew u iiiii iiiii iiiii iin , t h ,,,,, iii htiii iin iii I iii inn "tiru R ,,,,, Ito be Gi'tyIIIIIII*wiined I 6. What is the approval process for new residential lighting installations? IIIII a iiiii nnn ,,,,, nnr nnr R ,,,,, ° h� nnr u h ° h iiiiiii° lin iii li liriii li iiiii nnrtin ���� nnnt IR i II II lip° is lin IIIII iiiii nnnt it tiiiii nnn "Uha"t iiiis r6iissiiiiiniiiftt, the'Uhe iireques"t is nnn nnr nnr f iii"t is iino"t ain iiiii nnnt nnr tiiiii nnn IIIII the'Uhe iireques"t iiii iii iiniied I 7. Who performs new lighting installations? a. Village staff b. On-call/maintenance contractor c. Bid out IIIIIIIIIIII IIIII IIIII IIIII IIR IIR IIR li it lir inR it R it iiiii° lii' iiiii lin li li li lin.. Equipment: 1. What type of residential lighting equipment is installed within your municipality? Appendix C-5 9/7/2017 CIORBA GROUP Co. i,ii ,j '�n�itier a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) ii. Decorative/Architectural iiVht:s weireiii t iiriii ii it 't t iii" ii iiiii ii ii t airim ainiimiiiinaiiiireiii't is ii iii iin 't irniiiinuiim pos"t aind ii iirii pp nnnnno niw iii iir oio b. Mounting height (estimate in feet)' c. Approximately how many are installed in your municipality? , iiiii° iined d. Approximately what percentage of residential streets are illuminated? iin't iir "iiiii iin e. What light sources are used? i. HPS ii. MV iii. Induction iv. LED v. Other Operations: 1. How is your residential lighting controlled? a. Controller or disconnect b. Photocell (direct ComEd connection) t h 't c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/I u m i nai re type — °° iiriiiii ii iiriiiii fiiiiixed ra"te. iin f ° of ime"teired t fiiiii iin b. Metered (actual usage) Appendix C-6 9/7/2017 Maintannnr_a 1. Who performs the maintenance of your residential lighting system? a. Village staff "t i iii iint iin iince peirfoirimed by Gi'ty" ff b. Contractor ii h as paiiiiin"fliiingin h ° it iirneiin't aire iiiii iin iirfoirimed by a coin"tirac"toir Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain . irt firoirri pirevein"ta"tiveii iiiii ii ' ii ii , based iin iir ,,,,, it outages iir t h iir iissues 4. Has the Village established recommended response times for responding to outages or maintenance requests? Yes a. If so, what are the response times for: i. Light out houirs ii. Circuit/controller out houirs Knockdown houirs Elk Grove Village No response received. Morton Grove Polic • 1. Does your municipality have a formal residential lighting policy? Not really. 2. Does your municipality include residential street lighting in the annual budget? No. 3. Where are residential light poles typically installed? Wherever considered to be practical. a. Corners b. Mid -block c. Fixed spacing Appendix C-7 9/7/2017 4. Is lighting required for new subdivisions or redevelopments? Not really. Regulation is limited to requirement that lighting installed must conform to Village standards. 5. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? Both. 6. What is the approval process for new residential lighting installations? Subdivision approval process 7. Who performs new lighting installations? Bid out in 2007, the last time we had a Village program a. Village staff b. On-call/maintenance contractor c. Bid out Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) mast arm, cobrahead and post -top ii. Decorative/Architectural Mast arm and cobra head b. Mounting height (estimate in feet) Residential is 15 feet. Roadway is 25 feet. c. Approximately how many are installed in your municipality? Residential is 398. Roadway is 337. d. Approximately what percentage of residential streets are illuminated? Small percentage. (<10%) e. What light sources are used? i. HPS -Yes ii. MV —Not since February 2017 iii. Induction -No iv. LED —Yes. v. Other - MH f. Is aerial or underground cabling utilized? UG g. Does the Village utilize smart lighting to identify outages, usage, etc.? i. Currently using — No. ii. Considering using — No. iii. Not considering using -Yes Operations: 1. How is your residential lighting controlled? a. Controller or disconnect -Yes b. Photocell (direct ComEd connection) -Yes c. Timer d. Other (please explain) Appendix C-8 9/7/2017 Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type -Yes b. Metered (actual usage) —Yes. mnintannni►a 1. Who performs the maintenance of your residential lighting system? a. Village staff — Yes. b. Contractor — Only for pole and fixture replacements 2. Is preventative maintenance completed for the following? a. Group relamping — No. b. Photocell replacement -No c. Cleaning - No d. Inspections - No e. Painting - No f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. No. 4. Has the Village established recommended response times for responding to outages or maintenance requests? — No. a. If so, what are the response times for: i. Light out ii. Circuit/controller out iii. Knockdown Niles Polic 1. Does your municipality have a formal residential lighting policy? YES 2. Does your municipality include residential street lighting in the annual budget? YES 3. Where are residential light poles typically installed? a. Corners X b. Mid-blockX c. Fixed spacing 5. Is lighting required for new subdivisions or redevelopments? I AM NOT SURE. I HAVE NEVER HAD IT COME UP. 4. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? They are ComED Appendix C-9 9/7/2017 5. What is the approval process for new residential lighting installations? N/A That goes through Village Hall. 6. Who performs new lighting installations? a. Village staff b. On-call/maintenance contractor c. Bid out X Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) x ii. Decorative/Architectural b. Mounting height (estimate in feet) AROUND 25 FT. c. Approximately how many are installed in your municipality? d. Approximately what percentage of residential streets are illuminated? ALL STREETS HAVE AT LEAST 1 STREET LIGHT e. What light sources are used? i. HPS X ii. MV iii. Induction iv. LED v. Other f. Is aerial or underground cabling utilized? MOSTLY AERIAL g. Does the Village utilize smart lighting to identify outages, usage, etc.? NO. WE ARE CURRENTLY WORKING ON ADDING THAT i. Currently using ii. Considering using X iii. Not considering using Operations: 1. How is your residential lighting controlled? a. Controller or disconnect b. Photocell (direct ComEd connection) X c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type x b. Metered (actual usage) Mnintananr-p 1. Who performs the maintenance of your residential lighting system? a. Village staff b. Contractor X Appendix C-10 9/7/2017 2. Is preventative maintenance completed for the following? None that I am aware of. a. Group relamping b. Photocell replacement c. Cleaning d. Inspections e. Painting f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. Residents can call Public Services if they see an outage and Public Services contacts ComED . Public Services staff members also will report an outage to ComEd 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: WE RESPOND AS SOON AS THE SERVICE REQUEST COMES IN BY CALLING THE RESIDENT BACK. i. Light out USUALLY FIXED IN A COUPLE OF WEEKS. ii. Circuit/controller out ASAP iii. Knockdown ASAP Palatine Polic 1. Does your municipality have a formal residential lighting policy? a. All new subdivisions are required to install lighting. Per Appendix B of Village Code of ordinances (8.09. Street lighting.) 2. Does your municipality include residential street lighting in the annual budget? ® We have a capital plan to install street lighting in areas not currently lit. 3. Where are residential light poles typically installed? a. Corners b. Mid -block c. Fixed spacing 4. Is lighting required for new subdivisions or redevelopments? a. Yes, see #1 5. Does your municipality own your residential lighting system or is it leased from other, such as Com Ed? a. Most are owned by the village but there are several leased lights also Appendix C-11 9/7/2017 6. What is the approval process for new residential lighting installations? ® Needs to meet requirements in appendix b, See #1 above. 7. Who performs new lighting installations? a. Village staffX-repairs/knockdowns only b. On-call/maintenance contractor c. Bid out Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) i i . Decorative/Arch itectu ral b. Mounting height (estimate in feet) 14, see appendix b for height per street type c. Approximately how many are installed in your municipality? d. Approximately what percentage of residential streets are illuminated? e. What light sources are used? i. HPS ii. MV iii. Induction iv. LED X — new standard residential street standard v. Other X-metal-halidef. Is aerial or underground cabling utilized? UG, Most Com Ed rentals are OH g. Does the Village utilize smart lighting to identify outages, usage, etc.? i. Currently using ii. Considering using iii. Not considering using iv. Unknown at this time Operations: 1. How is your residential lighting controlled? a. Controller or disconnect X b. Photocell (direct ComEd connection) X c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? a. Fixed rate per pole/luminaire type X b. Metered (actual usage) X Maintenance 1. Who performs the maintenance of your residential lighting system? a. Village staff b. Contractor Appendix C-12 9/7/2017 2. Is preventative maintenance completed for the following? a. Group relamping b. Photocell replacement c. Cleaning d. Inspections e. Painting f. Other? X —capital plan for annual cable replacement in areas of direct burry cabling (Worst first) 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. a. Police patrol reports outages as they see them, semiannually inspection is done by PW staff. 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: i. Light out ii. Circuit/controller out iii. Knockdown Rolling Meadows 1. Does your municipality have a formal residential lighting policy? Not yet adopted 2. Does your municipality include residential street lighting in the annual budget? Yes 3. Where are residential light poles typically installed? Corners, curves and cul-de-sacs a. Corners b. Mid -block c. Fixed spacing 4. Is lighting required for new subdivisions or redevelopments? Yes 5. Does your municipality own your residential lighting system or is it leased from other, such as ComEd? We have both. 6. What is the approval process for new residential lighting installations? Request are taken into consideration and reviewed by staff. If they have merit, we will get quote from ComEd or City Engineer. 7. Who performs new lighting installations? ComEd or City Contractor a. Village staff Appendix C-13 9/7/2017 b. On-call/maintenance contractor c. Bid out Equipment: 1. What type of residential lighting equipment is installed within your municipality? a. Aesthetics i. Standard (mast or davit arm, cobrahead luminaire) Yes ii. Decorative/Architectural - No b. Mounting height (estimate in feet) 30' and 50' c. Approximately how many are installed in your municipality? 700 d. Approximately what percentage of residential streets are illuminated? 100% e. What light sources are used? HPS / MV / MH / LED i. HPS ii. MV iii. Induction iv. LED v. Other f. Is aerial or underground cabling utilized? Both — all City owned are underground g. Does the Village utilize smart lighting to identify outages, usage, etc.? Not at this time i. Currently using ii. Considering using iii. Not considering using Operations: 1. How is your residential lighting controlled? City owned are by controller and all ComEd are photocells. a. Controller or disconnect b. Photocell (direct ComEd connection) c. Timer d. Other (please explain) Electricity Charges: 1. How are electrical charges billed? We have both due to installation of Holiday Decorations. a. Fixed rate per pole/luminaire type b. Metered (actual usage) Maintenance 1. Who performs the maintenance of your residential lighting system? Both a. Village staff b. Contractor 2. Is preventative maintenance completed for the following? None a. Group relamping b. Photocell replacement c. Cleaning Appendix C-14 9/7/2017 d. Inspections e. Painting f. Other? 3. Has the Village defined a procedure for identifying outages and other issues with the lighting system? If yes, please explain. No 4. Has the Village established recommended response times for responding to outages or maintenance requests? a. If so, what are the response times for: i. Light out —within 1 week ii. Circuit/controller out — next business day iii. Knockdown — within 1 hour Appendix C-15 9/7/2017 Attachment B Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation June 20, 2016 Prepared by: CIORBA GROUP'Consulting Engineers 5507 N. Cumber1land Avenue., Suite 402, Chicago, 1111in.olis 60656 Phone: 773,775,40:09 # Fax: 773.775.4014 www, doirba-com Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Table of Contents ExecutiveSummary................................................................................................................... 1 Purpose.................................................................................................................................. 1 Methodology........................................................................................................................... 1 ExistingVillage Lighting.......................................................................................................... 1 Recommendations.................................................................................................................. 1 Existing Corridor Lighting Review............................................................................................... 3 Corridors................................................................................................................................ 3 FieldReviews......................................................................................................................... 3 DaytimeReview.................................................................................................................. 3 NighttimeReview................................................................................................................ 3 FurtherI nvestigation........................................................................................................ 4 DataCollection....................................................................................................................... 4 Roadwaywidth................................................................................................................... 4 AdjacentLand Use.............................................................................................................. 4 Length of Roadway to be Illuminated---------------------------------------------------------------------------------- 5 Average Annual Daily Traffic (AADT)---------------------------------------------------------------------------------- 5 Existing Conditions Summary------------------------------------------------------------------------------------------------- 6 Recommended Improvements--------------------------------------------------------------------------------------------------- $ PhotometricAnalysis-------------------------------------------------------------------------------------------------------------- $ IESClassification---------------------------------------------------------------------------------------------------------------- $ Street.............................................................................................................................. 8 PedestrianConflict.......................................................................................................... 8 TargetLighting Levels......................................................................................................... 0 RoadwaySections.............................................................................................................10 PoleMounting Height.........................................................................................................10 PoleLayout........................................................................................................................10 Luminaires.........................................................................................................................11 6/20/201 G Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Calculations.......................................................................................................................11 Recommended Improvements Summary...............................................................................12 ImprovementPriority.................................................................................................................14 RatingsCriteria......................................................................................................................14 Adjacent Land Use (ALU)--------------------------------------------------------------------------------------------------14 RoadwayGeometry(RG)................................................................................................... 15 VOMP Police Department Input(PDI)................................................................................ 15 CostEstimate...........................................................................................................................16 UnitCost...............................................................................................................................16 Numberof Poles....................................................................................................................16 Estimate by Corridor —New Lighting.....................................................................................20 Estimate by Area —LED Retrofit............................................................................................21 TotalProgram Cost...............................................................................................................22 EnergyCharges....................................................................................................................22 ExistingCharges................................................................................................................22 ProposedCharges ............................................................................................................. 22 Maintenance Expenses---------------------------------------------------------------------------------------------------------22 ExistingExpenses .............................................................................................................. 22 ProposedExpenses ........................................................................................................... 23 FailureRates..................................................................................................................23 LED Luminaire Replacements........................................................................................23 ExpenseCalculation.......................................................................................................24 Comparison of Maintenance Expenses..............................................................................25 Potential Funding Sources........................................................................................................25 Village Capital Improvement Plan..........................................................................................25 Northwest Municipal Conference...........................................................................................25 Highway Safety Improvement Program (HSIP)..................................................................25 Illinois Transportation Enhancement Program (ITEP) ........................................................ 266 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Surface Transportation Program(STP)..............................................................................26 Grants...................................................................................................................................26 Public Sector Energy Efficiency Program by DCEO...........................................................26 Illinois Clean Energy Community Foundation.....................................................................26 Database of State Incentives for Renewables &Efficiency (DSIRE) .................................. 26 Energy Service Company......................................................................................................27 PrivateFinancing...................................................................................................................27 Term..................................................................................................................................27 InterestRate......................................................................................................................27 Payment............................................................................................................................27 Fees...................................................................................................................................28 Recommendations....................................................................................................................28 Determine Program Scope....................................................................................................28 Determine Program Timeline.................................................................................................28 ObtainProgram Funding.......................................................................................................28 ProjectPackaging.................................................................................................................28 DesignEngineering...............................................................................................................28 Construction Observation------------------------------------------------------------------------------------------------------29 Trialinstallation(s).................................................................................................................29 LuminairePreferences ....................................................................................................... 29 LightColor Temperature----------------------------------------------------------------------------------------------------29 Luminaire Manufacturers---------------------------------------------------------------------------------------------------29 ControlSystems.................................................................................................................29 Develop Standard Details and Specifications........................................................................29 Dark-Sky...................................................................................................................................30 Purpose.................................................................................................................................30 IndustryAcceptance..............................................................................................................30 ModelLighting Ordinance......................................................................................................30 Recommendations.............................................................................................................30 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme � � Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Dark -Sky Community Certification ......................................................................................... 31 Designation........................................................................................................................ 31 KeyRequirements............................................................................................................. 31 Recommendations............................................................................................................. 31 Appendix A - Lu min ai[e Catalog Cuts ..................................................................................... A- 1 Appendix B - Photometric Results .......................................................................................... B- 1 Appendix C - Photometric Calculations for Areas that Required Further Investigation ............ C- 1 Appendix ❑ - VO M P Police Department Correspondence ...................................................... ❑ - 1 Appendix E- Electricity Charges Calculations........................................................................ E- 1 Average Monthly Electricity Charges (2015) ....................................................................................... E- 1 Dollar p e [ Watt Calculation.................................................................................................. E-2 Proposed Street Lighting Annual Electricity Charges Calculation ........................................ E- 3 Appendix F- Maintenance Expense Calculations ................................................................... F- 1 iv 6/20/201 6 MECI OR BA GROUP IConsu/ing Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Executive Summary Purpose In late 2015, the Village initiated a 2015-2021 strategic planning process. The Board of Trustees has expressed an interest to `brighten up' Mount Prospect and become more sensitive to light pollution concerns. Ciorba Croup has been retained to study these requests and provide recommendations to be considered for the strategic plan. This study includes the review of nine key `gateway' corridors to evaluate the adequacy of the existing lighting and determine the cost and packaging for the installation of new roadway lighting for the unlit sections. Information regarding the Dark -Sky Association is also presented for consideration. Methodology Two field reviews were completed to evaluate the existing lighting and determine the need for additional lighting. Other data was gathered through online sources such as Google Earth, the Illinois Department of Transportation (IDOT) website and other websites. Additional data was gathered from industry sources such as manufacturers and professional organizations. This data was assembled into this document, which was reviewed by Village Public Works staff and revised as necessary. Existing Village Lighting The existing roadway lighting within the Village generally meets current recommended design standards. During the review, three locations were identified for further investigation, with one location requiring corrective action to bring it into compliance. Recommendations The following recommendations should be considered: ■ Determine program scope. ■ Determine program timeline. ■ obtain funding. ■ Prepare pilot program/trial installation. ■ Develop standard details and special provisions. ■ Complete program. Additional information regarding each of these recommendations can be found elsewhere in this document. 6/20/201 G MECIORBA GROUP I Consulting Engineers Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation 'VILLAGE Of MOUNT PROSPECT CORRIDOR LIGHTTNG EVALUATION CAMP MCCONALD RD wi IV. Am W lw .10TIMAD. MAD. WAWWM)Wqti q1. ................. EUCLID AVE Attachme 5 . ..........in 91 ... ... ... .. . ............ .. .... . . .. I ...... .. ... .... . .. .. ... . .. . ...... ....... . ... k ilk ....... . . . . ........ in ............................... Fde !H. fN M a M lip lu ffM We JR ... ......... . . ............... ........ ........... ZJR ..... . . . . 4w_: LIGHTING LIGHTING TO BE IMPROVED 'VILLAGE LIMITS K LIGHTING 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Existing Corridor Lighting Review The corridors included in this study were selected by the Village based on traffic volumes and/or the presence of commercial land use. Corridors The following corridors were identified for study: • Algonquin Road (IL 62) —Cedar Glen Drive to Elmhurst Road • Busse Road — I-90 to Central Road • Central Road —Arthur Avenue to Wolf Road • Dempster Street —Algonquin Road to Elmhurst Road • Euclid Avenue (Cook Count A59) —Rand Road to River Road • Golf Road (IL 58) — Goebbert Road to Mount Prospect Road • Elmhurst Road /Main Street (IL 83) — Oakton Street to Camp McDonald Road • Northwest Highway (US 14) —Waterman Street to Mount Prospect Road • Rand Road —Albany Lane to Camp McDonald Road Field Reviews Two field reviews were completed to evaluate the existing lighting system and also identify the locations where new lighting is necessary to completely illuminate each corridor. Daytime Review The first review occurred during daytime hours. This purpose of this review was to identify locations without existing light poles. The entire length of each corridor was reviewed. Each corridor was broken down into segments of lit and unlit. The segments of each corridor without street lighting have been included in the Existing Conditions Summary table found at the end of this section. Nighttime Review A second review was completed for each segment of illuminated roadway during night hours while the luminaires were on. This review was focused on the quality of the lighting provided by the existing poles. Photometric analysis of the existing lighting would be very labor and cost prohibitive due to limited available information for the installed equipment. A much more cost-effective review was completed by having an experienced lighting designer drive each illuminated segment after dark. Locations that appeared to display inconsistent or low lighting levels were identified for further investigation by means of photometric analysis. 3 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Further I nvestigation Three locations were identified for further investigation: ■ Northwest Highway — Central Road to Fairview Avenue ■ Northwest Highway — Evergreen Ave to Mount Prospect Road ■ Rand Road — Elmhurst Road to Henry Street These locations were analyzed using ACi32 lighting design software. Photometric curves for the existing luminaires were assumed by considering information from the Hansen database, Village equipment preferences and past experience. Photometric analysis revealed that two of the three locations meet I ES recommendations. Lighting levels for Northwest Highway between Central Road and Fairview Avenue are slightly out of the I ES recommended ratios for a roadway of Collector Medium classification. This location can be brought into compliance by replacing the luminaires with those that have a better photometric distribution. Calculations were performed for a LED luminaire to confirm compliance with I ES requirements. Photometric results for all three of these locations can be found in Appendix C. Data Collection Additional data was gathered for use in preparation of the recommended improvements. A brief description of the source of the data is included below. The collected data has been included in the Existing Conditions Summary table found at the end of this section. Roadway width Roadway widths were obtained by measuring aerial images within Coogle Earth's PC application. Changes in roadway width generally have a big impact in the spacing of light poles and required photometric distribution, therefore, each corridor was broken down into multiple segments where the roadway width changed due the addition of lanes or changes to roadway cross-section. Isolated right turn lanes were not included in the roadway width measurements. Right turn lanes were included for segments with multiple consecutive turn lanes. Adjacent Land Use Field notes, Coogle Earth aerial, and Coogle Street View images we reviewed to determine an overall adjacent land use for each segment. 11 6/20/201 G CI IBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Length of Roadway to be Illuminated The limits of proposed lighting identified during the daytime field review were located using aerial images. The distance between these limits were measured using Coogle Earth. Average Annual Daily Traffic (AADT) Traffic volumes for each segment were identified using I DDT's Traffic count website. For segments that reported multiple AADT values, the higher value was used. 61 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Existing Conditions Summary ~ 0 0 0 L0 L0 0 0 0 0 0 07 f` N 07 07 (0 CI) CI) r C\I Q r CAI CI) 0 0 CAI CAI 07 Co 07 L0 N C,0 C,0 L0 (0 0 C,0 N L0 CAI 0 0') 0 C,0 L0 f` � Co N J CI) CI) r N CI) C,0 f` � o Q coo ° U) b � }, o o U) L o -� ° � Cv� U U)70 -0 -0 of > 0 LO7 0 J v U) - a) � m 0 of w 70 o U) -0-�CL m L E 0-0 � .� -0 M o ° ° 0 L }' w J � ° E o E Cv o � ° s= � 00 0 }' � E w 0 E J v 0 w w o o U o U) C 0 0 w= o a3 0 J 0 � L w o 0 0 0 r o 0 w = o C\I � 4-j U CU E J � � � m a ° pp Z) 70 - - v U a) a) CU Of 4-j � C a) 1 C -U -U ) v) 0 U)a m (1) Cv � o L0 0 Ile-.-. ° U) v � (0 .-. moo/ co Lo i 0 J � U j 0 U J E 0 0 0 ._. � a)w o Q U 6/20/201 G Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation ~ 0 0 0 0 0 0 0 Q CI) co CI) r CI) �7 co L N C.o L0 (.o L0 C.o 0 0 0 0 0 0 0 N co 0 co 0 J 0 CI) CAI �7 CAI CI) r v U) � L 0 Q- U) 0 o E U) E C4-j Z) 0 �°� -0 C� A--j C � �� C) °� °��� 0 °� 0 s=Q � cn ° U Q �_ Cv `� C 0 � }' Q �_ }, '— E co� _ � L - _ �[1] w C� = C '� � � C.- �� C� J o � �� Cv 0 �z � o m -� � o U wo 0 �w wo 0 ° 0 0 0 0 0 0-Ne z°- 0 z 0 L z 0 o 0 0 CI)o p o 0 � 0 CD r � � CI) E E 0 13 oo .0 Cv J L] L] -0 E •� U) -0 U) E Q a a 0 U L ^ 0 - � r 0 N r U) co 4- j i J U) 70 U) L 0 z 6/20/201 G CIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Recommended Improvements Recommended improvements were determined by photometric analysis. The following narrative documents the selections made to complete photometric calculations. Photometric Analysis IE5 classification The following classifications are defined in ANSW ES RP-8-14, the current recommended practice for roadway lighting. Each corridor was assigned to a classification based on the definitions listed below. Selections are included in the Recommended Improvements Summary table found at the end of this section. Street Major The part of the roadway system that serves as the principal network for through - traffic flow. The routes connect areas of principal traffic generation and important rural roadways entering and leaving the city. These routes are often known as "arterials," "thoroughfares," or "preferentials." They are sometimes subdivided into primary and secondary; however, such distinctions are not necessary in roadway lighting. These routes primarily serve through traffic and secondarily provide access to abutting property. Collector Roadways servicing traffic between major and local streets. These are streets used mainly for traffic movements within residential, commercial and industrial areas. They do not handle long, through trips. Collector streets may be used for truck or bus movements and give direct services to abutting properties. Local Local streets are used primarily for direct access to residential, commercial, industrial, or other abutting property. They make up a large percentage of the total street system, but carry a small proportion of vehicular traffic. Pedestrian Conflict High Areas with significant numbers of pedestrians expected to be on sidewalks or crossing the street during darkness. Examples are downtown retail areas, near theaters, concert halls, stadiums, and transit terminals. 8 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Medium Areas where lesser numbers of pedestrians utilize the streets at night. Typical are downtown office areas, blocks with libraries, apartments, neighborhood shopping, industrial, parks, and streets with transit lines. Low Areas with very low volumes of night pedestrian usage. The can occur in any of the cited roadway classifications but may be typified by suburban streets with single family dwellings, very low density residential developments, and rural or semi -rural areas. Target Lighting Levels Target lighting levels were identified at 100 to 125% of the luminance values listed in Table 3 of the RP-8-14: STREET CLASSIFICATION PEDESTRIAN AREA CLASSIFICATION AVG. LUMINANCE (Lavg (cdlm2) AVG.UNIFORIVIITY RATIO Lavg/Lmin MAX. UNIFORMITY RATIO L /L max m� n MAX. MAX. LUMINANCE RATIO LV maxIL avg HIGH 1.2 3.0 8.0 0.3 MAJOR MEDIUM 0.9 3.0 8.0 0.3 LOW 0.6 3.8 6.0 0.3 HIGH 0.8 3 8.0 0.4 COLLECTOR MEDIUM 0.6 3.8 6.0 0.4 LOW 0.4 4.0 8.0 0.4 HIGH 0.6 6.0 10.0 0.4 LOCAL MEDIUM 0.8 6.0 10.0 0.4 LOW 0.3 6.0 10.0 0.4 �181 6/20/2016 CI IBA GROUP I Consulting Engineers Attachme p5;Y �hCA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation Roadway Sections To reduce the number of calculations made, similar roadway widths were grouped together. Ten roadway sections were identified for analysis: Section # Roadway Width (ft) Roadway Classification Pedestrian Classification 1 24 Collector Low 2 44 Collector Low 3 44 Major Low 4 64 Collector Low 6 64 Major Low 6 64 Major Low 7 64 collector Medium 8 64 Major Low 9 64 Major Medium 10 76 collector Low Pole Mounting Height Pole mounting heights were chosen with two main criteria. The primary consideration was to matching the mounting height of other poles already installed in the Village. By sticking with a minimal number of pole sizes, maintenance inventory requirements are reduced. The second consideration was application of the golden ratio. This ratio is commonly used in architecture to approximate sizes of structures. This ratio (4:3 horizontal: vertical) provides a good starting point to find a pole mounting height that is aesthetically pleasing. Pole mounting height is included in the Recommended Improvements Summary table found at the end of this section. Pole Layout Pole layout was chosen based on the most economical configuration that meets RP-8- 14 requirements. Generally, a one-sided pole layout is more cost effective that an 10 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation opposite arrangement for narrow roadways. As roadway width increases, opposite arrangements become more cost effective. The preferred layout for each roadway section is included in the Recommended Improvements Summary table found at the end of this section. Luminaires Luminaires from American Electric and GE were used for this analysis based on the availability of photometric information. Two manufacturers were used for all calculations to confirm that more than one supplier can provide suitable luminaires. Catalog cuts for American Electric and GE have been included in Appendix A. Calculations Photometric calculations were prepared using the Roadway optimizer design tool with ACi32 from Lighting Analysts. ACi32 is the format required by I DOT and is the standard for preparing photometric calculations within the State of Illinois. Calculations for each of the sections listed above have been included in Appendix E. 11 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Recommended Improvements 5umma c Q D D D D D co N CIO D r D C0 D C. Lr3 r D D Q r N N N N r N N N N N �C S Lr3 Lr3 D D D Lr3 D D D Lr3 i E D D D N N D Dco N N J D D D D t LO N LO Co D D D D 0 = 0 CL CL � a- � J (/) (/) � � U) U) � � � 0 oD d7 C) r N I` I` Lr3 C0 C0 D v 4- D CIS v � v + {fj D C) C) � ccL L �� j CL UD} � CQ V) a- D m D LC3 D 70 W D }' D L J U} a] ❑ p� (!) D E E a) — J D D ❑_ CO D }, m W � _ W - E •: W W C) D C) CI) 0 0 D W= D D D �n � Z D ao D � D a cn L W D v D W CD r N J W a)Cco M M a] � v Ln �D � i � N � , � 70 v o •ico 0 Cr a) Q o LO J `� � ED D Q ❑ W D C� 12 6/20/201 G Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation c C) C) C) C) C) C) Q C) I` v v v v C) CD r � CY) C11 C11 C11 N C11 � C11 r C11 C11 C11 C11 C11 i � E m v C11 v C11 v C11 v J CM v LO v v v v v .CM I�t co o = ♦, Cu Cu Cu Cu o v v v v � CL 0(D CL 0� CL J 0 0 0 0 0 ov CIO (3) C0 (3) c4 ov v v) v Cu � o v Q > .c > o 0) C: o � � U) CIO U cc ?� � Cu m Q ?� cc v Cu Cu :3 cn W E5 v � p C: v '� 'CC v � p C) � W L) m L) W c) v� v Z v� W o Z v Z� U) o Z� o o v v o o 1 o Q C) v o cc � c� v p v v c� c4 v co v co r Co co = r r .i co J W W `. v Z 13 6/20/201 G Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Improvement Priority Ratings Criteria The following criteria were used to prioritize the installation of street lights among the corridors: AADT AADT Points 151000 1 15,000 to 24,999 2 > 25,000 3 Adjacent Land Use (ALU) Adjacent land use was assigned points based on the table below. When a corridor had more than one significant land use type, the average value of all land uses present was awarded. Land Use Points Business 1 Commercial 2 Industrial 2 Residential 1 14 6/20/201 G MECI IBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Roadway Geometry (RG) Roadways with complex roadway geometry were weighted heavier than roadways without. If the following feature existed within the unlit section of the roadway within a corridor, points were awarded. Feature Points Curve +1 > 2 lanes +1 Complex intersections? +1 VOMP Police Department Input (PD1) The Village of Mount Prospect Police Department (PD) was invited to provide feedback on which corridors would benefit the most from the installation of street lighting. The PD recommended the installation of lighting for several locations. Points were assigned to each recommendation location,. See Appendix C for copies of this correspondence. Impact Points Recommended 2 Rahn s An overall rating was determined by adding the points for each rating criteria. Corridors were ranked based on most total points. Ties were broken by using two criteria. Locations receiving a recommendation for lighting by the PD were ranked ahead of those without a recommendation. The second criteria was to compare AADT. The roadway with the highest AADT was given the higher priority. 15 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Priority Corridor AADT ALU RG PDI Total Algonquin Road 8 2 1.8 2 8.8 (IL 62) 4 Busse Road 2 1.8 2 2 7.8 8 central Road 1 1 1 3 8 Dempster Street 1 1 1 2 8 Euclid Avenue (cook 7 2 1 2 8 County A89) Golf Road 1 3 1.8 2 2 8.8 (IL 88) Main Street 3 3 1.8 2 2 8.8 (IL 83) Rand Road 2 3 1.8 2 2 8.8 (US 12) Cost Estimate 1 Mit rn-gt The unit cost for a pole was reviewing recent I DOT bid results for similar installations. The unit cost is estimated at $12,000 per pole. This unit cost includes a LED luminaire, pole, breakaway device, cable, controller, Com Ed connection fees, restoration fees and all other expenses associated with installing a street lighting system through a bidding process. Number of Poles The number of poles required for each corridor was determined by dividing the length of roadway to be illuminated by the 90% Spacing for each section. Pole quantities were increased by five percent to account for conflicts with driveways, trees, utilities, etc. Eight additional poles were included for each signalized intersection to provide transition lighting on the cross street approaches as well as additional poles to meet the increased i[* 6/20/2016 CI IBA GROUP I Consulting Engineers Attachme p5;Y �hCA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation lighting levels required at intersections by RP-8. Note that these estimates are conservative. It is anticipated that slightly less poles will be required when a comprehensive design is completed. 17 6/20/201 G CIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation MENNEN M 4. �3 o 0 Ln C4 00 00 CIO r Ln Ln N N 00 � I` I` 0) I` r G7 a0 F- L C. 00 00 C0 pp C0 � D C0 o a f� L o C11 r r N r C11 CIO LnMENNEN N NIP 0.1 CIO CIO N � 4- 0 C0 � N CIO oD N C0 I` CIO CO r C) CIO C)r— L) CIO r I` o a •- D D D D D co L) N L) co D r D C0 D C. L) r D D C) C) CDoo CD CDC) C) oo C) D C) D D � C0 N r N G7 c4 I` CIO oD J.91 ce ce r Ni N cv c4 I` �3 � o (n D to D t13 D Q] Q] Q] Q] Q] Q] D D a J a- a- CL 0(/) 0C/5 0 CL CL 0(/) 0 0 0 0 0 0 o U) � o o C) }' C)L 0 (1) 7 (1) CL +�+ cn � }' D � D 4—D D m � CQ LLJ DD J D a] L E tv�o J D LJ o � CI DCr C I �� cn � W v a) v D D CD Z C)D D Cr D D D LJWD 7D UDj r 00 � C) J E C) Lo C) co r N W t` v .L .� c U Ln m v E 0 � 00 W .� 0 Q 18 6/20/2018 Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation MENNEN 0 o Cv c4 CIO c4 C4 C� r � r- Cv r ov � Q r 0 (1) 0 o � � 00 � C0 — a f� L 0 C11 r CIOMENNEN r C11 � C11 NIP Ln C11 C11 r CIO r C11 o C)C4 r N C) C)IX] r Ln r r C)0 Or) a o a •�, c CL C11 r C11 C11 C11 C11 C11 �i C) C) LO C) C) C) C) C) C) C) v J r Ni cv C11 Ln C11 cv U} [U [] U} [U [] U} [U [] U} J a- 0 U) CL 0 U) CL 0 (/) CL 0 0 0 0 v � v o v v � v Cu > o v •- Q o C) > U) Q Q v� C) Cu Cu ❑ v C '� E C)C) v Z L c� L '�LLJ 4-- L c� o v 4- Z v U) 4- v U) CD) v Z v 4-- c v Z E Q o CDE cc o v p M v C� C� p M Co co ccco 0 w _ n 0)co n 0 co U) U) c v Z 19 6/20/201 G Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Estimate by Corridor— New Ughtina Corridor Cost was obtained by multiplying the number of poles by the unit cost per pole ($127000). Corridor # of Poles Corridor Cost Algonquin Road 88 $7801000 (IL 62) Busse Road 141 $116921000 Central Road 22 $2641000 Dempster Street 48 $5761000 Euclid Avenue kook County 186 $1 872 000 ' A89) Golf Road 91 $110921000 (IL 88) Main Street 244 $219281000 (IL 83) Rand Road 137 $116441000 (US 12) Total: 904 $1058485000 KII 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Estimate by Area — LED Retrofit A cost to replace all the existing Village roadway luminaires with new LED luminaires has been included for reference. Should the Village adopt a color temperature that does not match the existing equipment, this budgetary amount will allow replacement, if desired. It is likely that some of the existing equipment will match the desired color temperature and will not need to be replaced; therefore, this amount is conservative. Location # of Luminaires Cost Algonquin/Busse/Dempster 80 $461000 Northwest Highway 55 $311625 (US 14) Downtown 265 $1521375 Main Street 75 $431125 (south of downtown) Central Road 90 $511750 (west of US 14 ) Central & Rand 68 $391100 Everything else 457 $2621775 Totals 15090 $6265750 21 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Total Program Cost New Corridor Lighting $1018481000 LED Retrofits $6261750 Sub -Total $1114741750 Phase II Engineering (6%) $6871485 Phase III Engineering (10%) $111471475 Total: $1353095710 Energy Charges Calculations related to energy charges can be found in Appendix E. Existing charges The Village currently spends $75,000 per year on electricity charges for roadway lighting. This does not include lighting in residential areas leased from ComEd. Proposed charges Retrofit of the existing luminaires within the Village should result in a reduction of annual electricity charges to $51,100. This is an annual savings of approximately $24,000. This estimate is conservative, as many of the existing luminaires to be replaced have lower wattages than those used in the electricity charge calculation. Additional savings will be realized when lower wattage luminaires are installed. Electricity charges for the new street lighting are estimated at $45,600 per year. The net result of replacing all existing luminaires with LED and installing new lighting on all the corridors identified in this report will result in a net increase of $21,700 ($517100 + $457500 - $75,000) per year. Maintenance Expenses Calculations related to maintenance expenses can be found in Appendix F. Existing Expenses Work orders from 2014 and 2015 were reviewed to determine recent expenses related to maintenance of the street lighting system. The Village currently spends approximately $95,000 per year on materials, equipment and labor to maintain the existing street lighting system. Wr 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Proposed Expenses Fair irP RatPq Failure rates for other municipalities were identified for comparison with the Village's rates. These failure rates can be found in the table below. The Village's failure rate for 2013, 2014 & 2015 was identified to be 5.6% in the Street Lighting Program Guidelines. This is similar to the failure rates experienced by the other municipalities. To determine the reduced maintenance costs of LED lighting, a LED failure rate of 1 % will be assumed. A lower LED failure rate will result in even more savings. Municipality Kansas DOT Portland, OR Seattle, WA Sunnyvale, CA LED Failure Rate 0.2% 0.5% 1.0% 0.86% H P5 Failure Rate 10% 6% 6% 8% The number of failures for the retrofit of the existing street lighting system with LED luminaires is calculated to be 11 (1.0% x 1090) per year. The number of failures for the combined retrofit of existing luminaires and installation of new corridor LED street lighting is calculated to be 20 (1.0% x 1994) per year. LED Luminaire Replacements LED luminaires generally do not fail completely at the end of their service life. LED luminaires slowly and continuously reduce their output over time. Because there is no obvious sign of when they reach the end of their useful life, these luminaires should be replaced at the end of their service life. This replacement should be included in the maintenance costs for the lighting system. A twelve year service life will be assumed for the purposed of comparing costs, therefore, 1/10 (10%) of the luminaires will be planed to be replaced. The number of luminaire replacements required each year to maintain the Retrofit Only LED street lighting system is calculated to be 110 (10% x 1090) per year. The number of luminaire replacements required each year to maintain the Retrofit and New Corridor LED street lighting system is calculated to be 200 (10% x 1994) per year. 23 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Expense Calculation Maintenance expenses will be the sum of replacement of luminaire failures, planned luminaire replacements and other miscellaneous repairs such as knockdowns, blown fuses, photocell replacements, etc. Maintenance Expenses —Retrofit Only (Year 1) Luminaire Failures 11 ea. @ $575/ea. Misc. Repairs Total (Year 1): $5,325 $207000 $26,325 Maintenance Expenses —Retrofit Only (Year 10) Luminaire Failures 11 ea. @ $575/ea. $67325 Planned Luminaire Replacements 110 ea. @ $575/ea $637250 Misc. Repairs $207000 Total (Year 1): $89,575 Note that replacements will not be required for several years after initial installation of LED equipment, as it will have a full service life to expend prior to being replaced. Also note that this estimate is conservative. As LED technology evolves, service life will increase and the percentage of luminaires to be replaced each year will decrease. The cost of luminaires will also continue to decline and the increased cost line item will reduce to zero. Maintenance Expenses —Retrofit and New Corridor Lighting (Year 1) Luminaire Failures 20 ea. @ $575/ea. $117500 Misc. Repairs $307000 Total: $41,500 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Maintenance Expenses —Retrofit and New Corridor Lighting (Year 10) Luminaire Failures 20 ea. @ $575/ea. $117500 Planned Luminaire Replacements M isc. Repairs Comparison of Maintenance Expenses 200 ea. a@ $575/ea $1157000 $307000 Total: $156, 500 Expense current Retrofit OnlyRetrofit + New corridor Year 1 Year 10 Year 1 Year 10 Electricity $757000 $517100 $517100 $967700 $967700 Maintenance $957000 $267325 $807575 $417500 $1567500 Total $1707000 $777425 $1407675 $1387200 $2537200 Potential Funding Sources Village Capital Improvement Plan Consider adding a Lighting Program line item to the Village Capital Improvement Plan/budget and identify funding as necessary. Northwest Municipal Conference The Chicago Metropolitan Agency for Planning (CMAP) , in association with the IDOT, administers federal money allocated to the local sub -region council, the Northwest Municipal Conference (NWMC). Mount Prospect is a member of NWMC. NWMC oversees many federal funding sources, such as the Surface Transportation Program (STP), Congestion Mitigation and Air Quality (CMAQ), Illinois Transportation Enhancement Program (ITEP), Illinois Safe Routes to School (SRTS), Highway Safety Improvement Program (HSIP), among others. The following federal funding sources have been used to construct roadway lighting systems in the past: Highway Safety Improvement Program (HSIP) HSIP funds may be used to install lighting for locations where serious accidents or fatalities have occurred. Further information can be found on the I DOT website, here. W 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme p5;Y �hCA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation The maximum funding level possible is 00% of the cost of street lighting. Funding can be applied, to engineering, construction and construction engineering. Illinois Transportation Enhancement Program (ITEP) The ITEP program designates funds to be used for the enhancement roadway projects beyond the traditional accommodations for cars, trucks and transit. ITEP funds may be used to pay for 50-80% of the cost of street lighting. Funding can be applied to engineering, construction and construction engineering. The street lighting must be part of a larger project to qualify for funding. Further information can be found in the Illinois Transportation Enhancement Program 2015 Guidelines Manual, found here. Surface Transportation Program (STP) Lighting projects can be constructed using STP funds; however, I DOT requires that `fully documented day/night accident warrants' must be included in STP funding applications for lighting project. Further information can be found in the NWMC STP Guide, found here. Funding may cover up to 80% of the cost of street lighting during the construction phase. Design and construction engineering are funded at 50%. Grants The following sources offer grants that may be applied to the installation or retrofit of efficient lighting. With the current financial climate of the State of Illinois, many programs have been suspended or eliminated. The websites below should be checked on a regular basis for updated information. Public Sector Energy Efficiency Program by DCEG This program provides grants to public sector entities for the installation of eligible energy efficiency measures such as lighting and HVAC. The incentives are available to units of local, state, and federal government, schools, community colleges and universities. More information can be found at the DCEO website. The 2015 cycle has just ended. The 2017 cycle has not been announced yet. Illinois Clean Energy Community Foundation The Illinois Clean Energy Community Foundation does not currently offer any programs that apply to street lighting, but they have within the last 18 months. More information can be found at this website. Database of State Incentives for Renewables & Efficiency (DSIRE) The DSI RE website (http://www.dsireusa) is a searchable database of incentives and grants related to energy efficiency funded by the U.S. Department of Energy. The interface is very simple, allowing the ability to quickly search by zip code and topic. We 6/20/201 G CIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Energy Service Company Energy Service Companies (ESCO) are organizations that specialize in energy efficiency upgrades as a turn -key solution. If desired, the ESCO can analyze the entire life -cycle of an existing system, provide design services, obtain project financing, monitoring, etc. A concern with the ESCO approach to roadway lighting is the ability for the ESCO to obtain I DOT or Cook County. Private Financing Private financing is obtained from financial institutions, equipment manufacturers and sometimes contractors. Private financing works similar to a car loan — installment payments are created to finance a large purchase such as the installation of a street lighting system. Some financers allow project costs such as design, installation, project management, energy charges and on -going maintenance to be included in the monthly payment, if desired. When retrofitting a large number of inefficient luminaires, it is common for the reduced monthly energy charges to offset the monthly payment for the luminaire upgrades. Per discussion with two sources familiar with financing street lighting systems, the process of vetting this type of financing often takes up to one year. This is due to the cautious nature of the lender and the borrower. Actual time for processing the credit application is a few days to a couple of weeks. our contacts also provided the following information: Term Standard terms for roadway lighting installations range from 5 to 10 years. Terms of 5 to 5 years are preferred because they typically have better rates. Interest Rate Current interest rates for roadway lighting installations range from 2 to 5 percent. Rates are influenced by credit rating, amount financed and tax exempt status. Rates are generally fixed for the term. Payment Payments typical range from $10 to $20 per month per thousand dollars financed. This number is highly dependent on the term of the financing. For example, $1,000,000 financed over 5 years would result in a payment of approximately $20,000 per month. Payments can be invoiced monthly, quarterly, semi-annual or annual. 41A 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Fees Fees may be incurred, depending on the provider. The maximum known fee reported was "a one-time Documentation Fee of 1 %, not to exceed $25,000". This fee was billed with the first payment. Recommendations Should the Village decide to move forward with expansion of the street lighting system, the following recommendations should be discussed before committing to a specific design or technology. Determine Program Sc The desired extent of corridor lighting desired shall be identified. Determine Program Timeline A program timeline should be established to complete the identified scope. This will likely be very closely related to project funding. Obtain Program Funding The Program Scope and Timeline will likely define the funding model for the program. If the scope and timeline of the program requires a significant amount of lighting to be installed in a short time, financing of the lighting installations should be considered. If a slow, methodical approach is preferred, funding the installations through the Village's capital program should be considered. Proiect Packaging Larger projects generally offer a better economy of scale, therefore projects consisting of 50 poles or more are recommended. An annual program may be considered to increase contractor interest. The possibility of additional future work may encourage more aggressive bidding. For smaller budgets, a bi-annual program may be more cost effective than an annual program. Design Engineering Design engineering should be completed during the summer of the year prior to installation. This will allow ample time for utility coordination, permitting, bidding, contract award, catalog cut review and manufacturing so that construction can be completed as planned. 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Construction Observation The Village should determine if construction observation will be completed in-house or with consultants. If a consultant is to be utilized, an agreement should be in place so that they can participate when required. Trial <nsta«ation(s) A trial installation should be considered for testing potential equipment prior to making a Village -wide investment. Luminaire and controls manufacturers would be happy to provide samples for testing and comparison. Multiple options could be installed side by side for easy comparison. The unlit section of Central Road is an ideal candidate for a trial installation. This section is fairly short, with only 22 poles required. The 22 poles would complete a gap between to illuminated sections of Central Road. The location is near downtown, within walking distance to several existing styles of equipment for comparison. A trial installation would also allow Village staff an opportunity to get first-hand experience with several different manufacturers before committing to anything long-term. Luminaire Preferences Sample luminaires can be obtained prior to installation so that a hands-on review can be made to observe build quality, installation procedures and adjustability. Recent LED designs can include an adjustable driver, allowing the adjustment of the light output of a luminaire with the twist of a switch. This feature would allow a single luminaire to be suitable for multiple installations, reducing required maintenance inventory. Light color Temperature Multiple color temperatures can be installed side by side for comparison. Luminaire Manufacturers Preferred manufacturer(s) can be identified for future projects, if desired. Control Systems Controls can be `test driven' to determine if the features available of interest. current control systems can report outages, energy usage, and day -burning luminaires as well as monitor energy usage and report service life. Develop Standard Details and Specifications During a trial installation, Village standard details and specifications can be updated or created as necessary to ensure future projects are built to the Village's requirements. Upon completion of the trial project, a review should be completed to identify required revisions or improvements. ��1 6/20/201 G MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Dark -Sky Purpose The International Dark -Sky Association (IDA) is an organization that works to prevent and fight light pollution through education and advocacy. Wehslte The IDA website (www.darks ) contains a lot of reference information regarding light pollution and how to reduce it. While much of the information is geared towards residential, architectural and commercial lighting, there is some information to be found regarding roadway lighting. Industry Acceptance While the cause is noble, support of the IDA among roadway lighting designers is lower than expected. Support is likely low because the goals of IDA are usually already incorporated into the requirements used to design roadway lighting systems, such as the IES RP-8. It is in the nature of an engineer to optimize their design to provide the best quality design possible, including reducing light trespass, glare, excess illumination and excess energy usage. The tone of many articles posted on the IDA website also tend to support the organization's agenda, instead of an approach where the facts are laid out clearly and conclusions are built from these facts. To be clear, the information provided is not in error, it appears to be presented in a biased nature. Model Ughtlna Ordinance In 2011, the IDA and IES published a joint Model Lighting Ordinance (MLO). This document presents a complete document that can be adopted to govern the outdoor lighting found within a municipality. However, the MLO states that IES RP-8 shall be followed for roadway lighting. A brief model street lighting ordinance is included in the MLO. The methodology within the IDA street lighting ordinance is similar to that used for international street lighting. This methodology is significantly different than the IES RP-8 method. Recommendations It is recommended to not consider adoption of the MLO street lighting ordinance because it does not align with current industry recommended practice, the RP-8. Choosing a different standard could open the Village to unwanted legal responsibility. In addition, the IDA ordinance could not be applied to all street lighting within the Village because I DOT routes would still need to be designed to RP-8 requirements. K91 6/20/201 G CIORBA GROUP I Consulting Engineers Attachme p5;Y �hCA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation Adoption of the M Lo for non -roadway outdoor lighting could be considered, but is beyond the scope of this report. Perhaps this topic would be best addressed by the building department, as it applies to their day-to-day activities. Dark -Sky Community Certification The IDA has developed a Dark Sky Places Program to recognize communities and other places that committed to protecting the night sky. Designation The Dark Sky Place designation is received by completing an application process. Further information can be found on this webpage. Key Requirements Full requirements can be found here. ■ Adopt MLo or similar lighting ordinance ■ Adopt a color temperature of 30000 Kelvin or less. ■ Commit to bringing Village owned lighting into conformance with the adopted ordinance requirements. ■ Require full -cutoff or shield for luminaires with an output over 1,500 lumens. ■ Demonstrate community support for the Dark Skies movement. Recommendations Because roadway lighting is excluded from the M Lo, the decision to pursue a Dark -Sky Places designation should not be considered within the context of the street lighting program. 31 6/20/201 G CIORBA GROUP I Consulting Engineers Village of Mount Prospect Attachme ,,�:: p51"y CA Street Lighting Capital Program Corridor Lighting Evaluation Appendix A— Luminaire Catalog Cuts Appendix A-1 6/20/201 G MECI IBA GROUP I ConsultingEngineers A u t o b a h n S etraienaltAT B 0 Consistent v%,A LEES❑als ' 4%TM & Cireen 61ohes" criteria Roadway Lighting NIGHTTIME for light pollution reduction FRIENDLY Applications: Roadways Off ramps Residential streets Parking lots Effective Projected Area (EPA): The EPA for the ATBO is 0.76 sq. ft. Approx. Wt. - 14 Ihs. Features: OPTICAL Same Light: Performance is comparable to 70-200W HPS roadway luminaires. White Light: Correlated color temperature - standard 4000K, 70 CRI minimum or optional 5000K, 70 CRI minimum. Unique IP00 rated LED light engines provided 0% uplight and restrict backlight to within sidewalk depth, providing optimal application coverage and optimal pole spacing. Available in Type II, III, IV, and V roadway distributions. ELECTRICAL Expected Life: LED light engines are rated >100,000 hours at 25°C, L70. Electronic driver has an expected life of 1001,000 hours at a 25°C ambient. Lower Energy: Saves an expected of 40-60% over comparable HID luminaires. Robust Surge Protection: Three different surge protection options provide a minimum of IEEE/ANSI CO2.41 Category C (10kV/5kA) protection. 20kV/10kA protection is also available. MECHANICAL Includes standard AEL lineman -friendly features such as tool -less entry, 3 station terminal block and quick disconnects. Bubble level located inside the electrical compartment for easily leveling at installation. Rugged die-cast aluminum housing and door are polyester powder -coated for durability and corrosion resistance. Rigorous five -stage pre -treating and painting process yields a finish that achieves a scribe creepage rating of 8 (per ASTM D1054) after over 1000 hours exposure to salt fog chamber (operated per ASTM B117). Optional Enhanced Corrosion Resistant finish (CR) increases the salt spray exposure over 5000 hours. Mast arm mount is adjustable for arms from 1-1/4"' to 2" (1-5/8" to 2-3/8" O.D.) diameter. Provides a 313 vibration rating per ANSI C130.31 Wildlife shield is cast into the housing (not a separate piece). CONTROLS NEMA 3 pin photocontrol receptacle is standard, with the Acuity designed ANSI standard 5 pin and 7 pin receptacles optionally available. Premium solid state locking style photocontrol - PCSS (10 year rated life) Extreme long life solid state locking style photocontrol - PCLL (20 year rated life). Multi -level dimming available to provide scheduled dimming as specified by the customer. Optional onboard Adjustable Output module allows the light output and input wattage to be modified to meet site specific requirements, and also can allow a single fixture to be flexibly applied in many different applications. STANDARDS DesignLights Consortium@ (DLC) qualified product. Not all versions of this product may be DLC qualified. Please check the DLC Qualified Products List at www.designllghts.org/GPLto confirm which versions are qualified. Rated for -400C to 400C ambient CSA Certified to U.S. and Canadian standards Complies with ANSI: C130.2, C130.10, C130.14, C130.31, C130.15, C130.37 Note: Specifications subject to change without notice. Actual performance may differ as a result of end -user environment and application. American Electric (0 2014-2016 Acuity Brands Lighting, Inc. 02/17/16 PX L Lighting- Autobahn Serio&ATBO Series Performance Packages .................................... ATBR Auto LEA 20BLEDE531 20B Chips, 525mA Driver .........:.........................:............................... 20BLEDE10 20B Chips, 1050mA Driver 20BLEDE13 20B Chips, 1300mA Driver 30BLEDE70 30B Chips, 700mA Driver 30BLEDE85 30B Chips, 850mA Driver 30BLEDE10 30B Chips, 1050mA Driver 30BLEDE13 30B Chips, 1300mA Driver 30BLEDE151 30B Chips, 1500mA Driver Color Temperature (CCT) (Blank) 4000K CCT, 70 CRI Min. (Standard) 5K 5000K CCT, 70 CRI Min. Paint (Blank) Gray (Standard) BK Black BZ Bronze DDB Dark Bronze GI Graphite WH White Surge Protection Blank Standard 10kV/5kA SPD 20 20kV/10KA SPD MPI MOV Pack ILI SPD with Indicator Light Terminal PinA, (Blank) Terminal Block (Standard) T2 Wired to L1 & L2 Positions Misc. BL External Bubble Level CR Enhanced Corrosion Resistant Finish HS House -Side Shield NL Nema Label XL Not CSA Certified Roadway Lighting Example: ATBO 30LEDEI n MVOLT R2 Voltage Mi1�ILT 1111 u 1t� o t, � 2� 277�1 347 347V 480 480V Controls (Blank) 3 Pin NEMA Photocontrol Receptacle (Standard) P53 5 Pin Photocontrol Receptacle (Dimmable Driver Included) P73 7 Pin Photocontrol Receptacle (Dimmable Driver Included) NR No Photocontrol Receptacle A01 Field Adjustable Output DM OV-10V Dimmable Driver (Controls by others) ML1,6 Multi -Level Dimming PCSSI Solid State Lighting Photocontrol (120-277V) PCLL Solid State Long Life Photocontrol SH Shorting Cap Packaging (Blank) Single Unit (Standard) JP Job Pack (42/Pallet) American AE, Electric Lighting AFL Headquarters, 3825 Columbus Road, Granville, OH 43023 www.americanelectriclighting.com (0 2014-2016 Acuity Brands Lighting, Inc. All Rights Reserved. 02/17/16 Optics R Rada'Yp R3 Roadway Type I II R4 Roadway Type IV R5 Roadway Type V Notes 1 20BLEDE53 not compatible with the following options: P5, P7, AO, DM, ML. 2 Not available in 347 or 480V. 3 Not available with DM, ML or NR. 4 Not available with DM or ML options. 5 Not available with AO, DM, P5 or P7 options. 6 Dimming Schedule and light level information required from the customer in ❑rdert❑ configure product. Contact Infrastructure Technical Support to proceed. Warranty Five-year limited warranty. Complete warranty terms located at: www.acuitvbrands.com/CustomerResources/Terms and conditions.asox Actual performance may differ as a result of end -user environment and application. All values are design or typical values, measured under laboratory conditions at 25 T. Specifications subject to change without notice. Piease contact your safes representative for the latest product information. AutobahnS&rjeSnATBO Roadway Lighting (Vote: Information shown above is based on nominal system data. Individual fixture performance may vary. Specifications subject to change without notice. ■ 150C 200C 250C 300C 350C 400C ' 1.02 1.01 1 0.98 0.97 0.95 To calculate the LLD for a temperature other than 25°C, multiply the LLD @ 250C (shown in the performance package table) bythe LLD multiplier for the selected temperature. American Warranty Five-year limited warranty. Complete warranty terms located at: Electric www.acuitybrands.com/CustomerResources/Terms and conditions.aspx Lighting Actual performance may differ as a result of end -user environment and application. AFL Headquarters, 3825 Columbus Road, Granville, OH 43�23 All values are design or typical values, measured under laboratory conditions at 25 T. www.americanelectriclighting.com Specifications subject to change without notice. (0 2014-2016 Acuity Brands Lighting, Inc. All Rights Reserved. 02/17/16 Piease contact your sales representative for the iatest product information. ' Consistent with LEED'' goals 4%T11 & Cireen 61ohes" criteria NIGHTTIME for light pollution reduction FRIENDLY Applications: Roadways Off ramps Residential streets Parking lots 25.4mm{1"1 101.6 mm {4 38.1 mm (1.5"1 355.6 mm (14"1 787.4 mm (31 ") Effective Projected Area (EPA) The EPA for theATB2 is 0.78 sq. ft., Approx. Wt. = 21 I hs. (9.53 kg) AutobahnS&rjeSnATB2 Roadway Lighting Features: OPTICAL Same Light: Performance is comparable to 250-40OW HPS roadway luminaires. White Light: Correlated color temperature - standard 4000K, 70 CRI minimum or optional 5000K, 70 CRI minimum. Unique IP66 rated LED light engines provided 0% uplight and restrict backlight to within sidewalk depth, providing optimal application coverage and optimal pole spacing. Available in Type II, III, IV, & V roadway distributions. ELECTRICAL Expected Life: LED light engines are rated >100,000 hours at 25°C, L70. Electronic driver has an expected life of 1001,000 hours at a 25°C ambient. Lower Energy: Saves an average of 40-60% over comparable HPS platforms. Robust Surge Protection: Three different surge protection options provide a minimum of IEEE/ANSI C62.41 Category C (10kV/5kA) protection. 20kV/10kA protection is also available. MECHANICAL Easy to Maintain: Includes standard AEL lineman -friendly features such as tool -less entry, 3 station terminal block and quick disconnects. Bubble level located inside the electrical compartment for easy leveling at installation. Rugged die-cast aluminum housing is polyester powder -coated for durability and corrosion resistance. Rigorous five -stage pre -treating and painting process yields a finish that achieves a scribe creepage rating of 8 (per ASTM D1654) after over 1000 hours exposure to salt fog chamber (operated per ASTM B117) Optional Enhanced Corrosion Resistantfinish (CR) increases the salt spray exposure to 5000 hours. Four -bolt mast arm mount is adjustable for arms from 1-1/4" to 2" (1-5/8" to 2-318" O.D.) diameter and provides a 3G vibration rating per ANSI C136. Wildlife shield is cast into the housing (not a separate piece). CONTROLS NEMA 3 Pin photocontrol receptacle is standard, with the Acuity designed ANSI 5 Pin and 7 Pin receptacles optionally available. Premium solid state locking sale photocontrol - PCSS (10 year rated life). Extreme long life sold state locking style photocontrol - PCLL (20 year rated life). Mulit-level dimming available to provide scheduled dimming as specified by the customer. Optional onboard Adjustable Output module allows the light output and input wattage to be modified to meet site specific requirements, and can also allow a single fixture to be flexibly applied in many different applications. STANDARDS DesignLights Consortium° (DLC) qualified product. Not all versions of this product may be DLC qualified. Please check the DLC Qualified Products List at www.designlights.orglGPL to confirm which versions are qualified. Rated for -400C to 400C ambient. CSA Certified to U.S. and Canadian standards Complies with ANSI: C136.2, C136.10, C136.14, C136.31, C136.15, C136.37 Note: Specifications suhjectto change without notice. Autobahn Series — AEL 0109 ATB2 American IM L Electric Lighting AutobahnS&rjeSnATB2 Series I F Performance Packages I�TB AaQn LER .::.......:.....:: C p Rpad,a p 40BLEDE13 40B Chips, 1300mA Driver 40BLEDE151 40B Chips, 1500mA Driver 60BLEDE85 60B Chips, 85OmA Driver 60BLEDE10 60B Chips, 1050mA Driver 60BLEDE13 60B Chips, 1300mA Driver BOBLED Elfl' 8 B h` ' `7fl r' D r� e BOBLEDE85 80B Chips, 85flmA Driver oatw# 400wo�50 A D � Color Temperature (CCT) (Blank) 4000K CCT, 70 CRI Min. (Standard) 5K 5000K CCT, 70 CRI Min. Paint (Blank) Gray (Standard) BK Black BZ Bronze DDB Dark Bronze GI Graphite WH White Surge Protection Blank Standard 10kV/5kA SPD 20 20kV/10KA SPD MP' MOV Pack IL' SPD with Indicator Light Terminal Rlnrk (Blank) Terminal Block (Standard) T2 Wired to L1 & L2 Positions Misc. BL External Bubble Level CR Enhanced Corrosion Resistant Finish H5 House -Side Shield NL Nema Label XL Not CSA Certified HK Hingekeepers Roadway Lighting Example: ATB2 40LEDE70 MVOLT R2 Voltage Optics .....................................:......:.:.:...................................................... 347 3 47V 480 480V Controls (Blank) 3 Pin NEMA Photocontrol Receptacle (Standard) P52 5 Pin Photocontrol Receptacle (Dimmable Driver Included) P72 7 Pin Photocontrol Receptacle (Dimmable Driver Included) NR No Photocontrol Receptacle A01 Field Adjustable Output DM OV-10V Dimmable Driver (Controls by others) ML3,1 Multi -Level Dimming PCSSI Solid State Lighting Photocontrol (120-277V) PCLL Solid State Long Life Photocontrol 5H Shorting Cap Packaging (Blank) Single Unit (Standard) JP Job Pack (24/Pallet) American At Electric Lighting AFL Headquarters, 3825 Columbus Road, Granville, OH 43023 www.americanelectriclighting.com (0 2014-2016 Acuity Brands Lighting, Inc. All Rights Reserved. 03/29/16 R.2 Roadway Type e II R4 Roadway Type IV R5 Roadway Type e V Notes 1. Not available in 347 or 48OV. 2. Not available with DM or ML options. 3. Not available with AO, DM, P5 or P7 options. 4. Dimming schedule and light level information required from the customer in order to configure product. Contact Infrastructure Technical Support to proceed. Warranty Five-year limited warranty. Complete warranty terms located at: www.acuitvbrands.com/CustomerResources/Terms and conditions.asox Actual performance may differ as a result of end -user environment and application. All values are design or typical values, measured under laboratory conditions at 25 T. Specifications subject to change without notice. Piease contact your sales representative for the iatest product information. AutobahnS&rjeSnATB2 Roadway Lighting Note: Information shown above is based on nominal system data. Individual fixture performance may vary. Specifications subject to change without notice. ■ 1 50C 200C 250C 300C 350C 400C 1.02 1.01 1 0.99 0.97 0.96 To calculate the LLD for a temperature other than 25°C, multiply the LLD @ 250C (shown in the performance package table) bythe LLD multiplier for the selected temperature. LIAmerican Warranty Five-year limited warranty. Complete warranty terms located at: Electric www.acuitybrands.com/CustomerResources/Terms and conditions.aspx L'i Actual performance may differ as a result of end -user environment and application. AFL Headquarters, 3825 Columbus Road, Granville, OH 43023 All values are design or typical values, measured under laboratory conditions at 25 °C. www.americanelectriclighting.com Specifications subject to change without notice. (0 2014-2016 Acuity Brands Lighting, Inc. All Rights Reserved. 03/29/16 Piease contact your sales representative for the iatest product information. Attachment B GE Lighting IIIIIIIIIIr IIIIIIIIIIr IIIII��i�ir� �����oil.. V60/111,11/1a wa r��rrrrfI/�� Ju�,1 f I 1 l� i o I f, I I �i ��tiF//// ri%� ri%�� l Iiiiiiiiiii., Iiiiiiiiiiiiii Iiiiiii�/I �, ri%� �ii fi 1J f Scalable Specification Grade Cobrahead (ERS1, ERS2, ERS3 & ERS4) is J 1................................. ........... .. .... . . )J. rf rf SS rf SS M a o rrrf f Attachment B Pror'Uct /IF, II III FeatUres rf/.! ,i/�llllll/,��.I,J � IlllrY!r[+:qVl!' rrl,� /!r �rnllfr 'rrrr!>l From local to major roadways, the GE EvolveTm LED Roadway Scalable Cobrahead fixtures are changing the way you light your lanes. Preserving the aesthetic look of traditional roadway Cobrahead fixtures, GE balances the technical needs of a sophisticated LED system with the functional demands of an outdoor fixture facing extreme weather hazards. CE's advanced LED optical design offers hundreds of photometric options to meet your precise fighting requirements, while delivering reduced glare and improved light control. The refined thermal management system incorporates a sleek and robust heat sink directly into the fixture to ensure maximum heat transfer and long LED life. The GE Evolve LED Roadway Scalable Cobrahead offers more than 11 years of reliable service life to significantly reduce maintenance frequency and expense, based on a 50,000 hour life and 12 hours of operation per day. rrrh J f „ f t I1 0 �111, I • Designed to meet recommended luminance and illuminance requirements for local to major roadway 1 street classifications. »»al �„ f U1I I I' g • Die cast aluminum housing. • A modern design preserving the aesthetic look of traditional roadway Cobrahead fixtures incorporates the heat sink directly into the unit ensuring maximum heat transfer and long LED life. • Meets 3G vibration per C136.31-2010 • Power door assembly with removable retention latch. rrrr rrrr Jf,. �rrrrly, ,r+,./n� �,, p. i»» i»» i»r(' fi,»��e r++.nlf �'•,�J% �"i+, ': ���; 4�,� 1 wf' ,m 1 .r.�h • Structured LED array for optimized roadway photometric distribution. • Evolve light engine consisting of scalable reflective technology designed to optimize application efficiency and minimize glare. • Reverse facing light engine options available. • Utilizes high brightness LEDs, 70 CRI at 3000K, 4000K & 5000K typical. • LM-79 tests and reports are performed in accordance with IESNA standards. 1«'�% % .. 1«'% li; �L' � � ,rr., .�hr gym;. ,rr., ryr.� ,rr., c gym;. ii, • Lumen Maintenance and TM21 projections listed below each lumen data table rrr,r p • .ln ,rr., g , • SA@ listed, suitable for wet locations per U L 1598. • IP66 rated optical enclosure per ANSI C136.25-2009. • Temperature ratings: - 400C to 500C for 525mA and 700mA skus except for ERS4 @ 347-480V (-40°C to +4500 - 400C to +40°C for 1050mA skus • Upward Light output Ratio (ULoR) = 0. f„ f U1J€III I • Slipfitter with +1- 5 degree of adjustment for leveling. • Integral die cast mounting pipe stop feature. • Wildlife intrusion protection at mounting pipe entry. • Adjustable for 1.25 in. or 2 in. mounting pipe. • Corrosion resistant polyester powder painted, minimum 2.0 mil. thickness. • Standard colors: Black and Gray. • RAC & custom colors available. • 120-277 volt and 347-480 volt available. • System power factor is >90% and THD <20%.* • Class "A" audible sound rating. • Surge Protection per ANSI C136.2-2014 - Standard: 6Kv13kA "Basic" (wlextended C62.41.2 Combination Wave capacity of 120 events) - optional: 10kV15kA "Enhanced" - optional: 6kV13kA High Capacity (wlextended C62.41.2 Combination Wave capacity of 5000 events) • EMI: Title 47 CFR Part 15 Class A. • Photo electric sensors (PE) available for all voltages. * System power factor and TH❑ is tested and specified at 120V input and maximum load conditions. ��I�. �,t ill,. � ,� .rr �%r.., I �.. �r. 1,- in it ��.,, �r�q jrrN's � f �j ��� ���! � lil. t l l f;,;; r. 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J 1 1 f J 111 1 1 I r( J I J I 1 , l I l 1 1 JJ11 .1 �111! f l l Il 1. 111��I 1 1 1 Il 1. 111��I�1 1 1� 11 111 lIl1 J J / J J �l I IJI.JIIrr� � lll! ! 11. 1 lll! ! 11. 1I111� 1 1 1. ,� J I � !r 1 , 1.1 1 � 11 I1I J J l J, 1 l., � ++ 11 .11 .1J II .. � . 1 II 1 l l.1 IIJ 1:II;f rr .. rr ,1 J ,.. r r ,.. f r r ,.. f r r . r . r , r fff f fff f ref r r rrr r � � f r f r f 1 1 J r � I I l I l 1 J r I f 1 I r 1 1 IIII II IJ 111 I I1 JrJJJJI1JIJJJr1I1I1.If1>f1f�J+I fJJ>I )Jr��JIII1r>J< �>JIlfl� �f��r,J rr,�l(� �rlr1! r�rrrrf�I�Ir �I�.�,r1rlr.�/>>�>>«>/II>r>/�>>f >>>>>>>>1>�IIIIIIIIIIJ)JJJ,II�JJIIJJJ� �J�J�JIrJJ1I r r��I rl�rl I, l ��I111J11 Il f ERS1 5Z5mA 31 34 2300 2700 1-0-1 1-0-1 ERS1 23A1530-1Z0-Z77V.IE5 ER51 Z3A1540-1Z0-Z77V.ies ER51 23A1550-1Z0-Z77Vies 3...... ,, - - - J.............................. rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr. .................................................................................................................J,,,,,,,,,,,,,,,,,,,,,,, ,....f..����.� ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr......................... 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'' l! 5Z5mA 45 50 3400 4000 1-0-1 1-0-1 ERS1 A3A1530-1Z0-Z77V.IES ERS1 A3A1540-1Z0-Z77V.ies „ERS1 A3A1550-1Z0-Z77V.ies - - - AlI»»»»»»»»»»»»»»»»l �,,,,,,,,,,,,,,,,,,,,,,,,, I rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrlrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr�.....................................................................................................................I....................................................................................................................I rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS1 3';; 525mA 60 66 4500 5400 Z-0 1 Z-0 1 ERS1 KA1530 -1Z0 Z77V.IES ERS1 KA1540 -1Z0 Z77V.ies ERS1 HA1550 -120 Z77V.ies I- - - ....................... «rrrrrrrrrrrrrrrrrrrrrrr ««rrrrrrrrrrrrrrrrr�,....................................................................................................................1................................................................................................................. 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, 5Z5mA 31 34 2300 2800 1-0 1 1-0 1 ERS1 23C1530 -1Z0 Z77V.IES ERS1 23C1540 -120 Z77V.ies ERS1 23C1550 -120 Z77Vies 1, - - - ..: '::::::::::::::: :IIII ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,lrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJ.......................1.............................�rrrrrrrrrrrrrrrrrrrrrrrrrrrrr,............................��......................................................................................................................I,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,J:...................................................................................................................1 ERS1 I� ,,;1 525mA 45 50 3500 4100 1-0-1 1-0-1 ERS1 AK1530-1Z0-Z77V.IES ERS1 AK1540-1Z0-Z77V.ies ERS1 AK1550-120-277V.ies »»»»»»»»»»»»»»l �,,, ,,,,,,,,,,,,,,,,,,, I rrr«rrrrrrrrrrrrrrrrrrrrrrrrrrrlcrr«rrrrrrrrrrrrrrrrrrrrrrrrrr�...................................................................................................................I...................................................................................................................I rrr rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS1 525mA 60 66 4600 ,,.,,,, 5500 1-0-1 2-0-1 ER51 B3C1530-120-277V.IE5 ER51 B3C1540-1Z0-Z77V.ies ERS1 BK1550-1Z0-Z77V.ies ;' rrr««rrrrrrrrrrrrrrrrr�.............................I rrrrrrrrrrrrrrrrrrrrrrrrrrr......................................,................-...................................................................................................................-...............................................................................................I ......................r f - - - - - ERS1 5Z5mA 73 80 5600 6800 Z-0 1 Z-0 1 ER51 C3C1530 -1Z0 Z77V.IE5 ER51 C3C1540 -1Z0 Z77V.ies ER51 C3C1550 -1Z0 Z77V.ies „III; 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ERS1 525mA 73 80 5500 6600 1-0-1 2-0-1 ER51 C3D1530-120-277V.IE5 ER51 C3D1540-1Z0-Z77V.ies ER51 C3D1550-1Z0-Z77V.ies 11111111111111111111111111111111111111 II.1.l.Lr.11//.11rr.1.1f:111.f IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!l1�11111111111111111111111111111111I1111111111111111111111111111111111111Flllllllllllllllllll ffffffffffffffffffffffffffffffff.�ffffffffffffffffffffffffffffffff.11llllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllI ERS1 23;;; 525mA 31 34 2300 2800 1-0-0 1-0-1 ERS1_Z3EIS30 120 Z77V.IES ERS1_Z3EIS40 120 Z77V.ies ERS1_Z3E1550 120 Z77V.ies ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,I...............................a I,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,, J,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,I..................................................,...............................................................,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,.............................. . ';1 - - - - - ERS1 ;A3 5Z5mA 45 50 3500 4100 1-0 1 1-0 1 ER51 A3E1530 -1Z0 Z77V.IESIII ER51 A3E1540 -1Z0 Z77V.ies ER51 A3E1550 -1Z0 Z77V.ies E1.....................................»,»»»»»»»»»»»»»»I............................1,,.................., lrrr«rrrrrrrrrrrrrrrrrrrrrrrrrrrlrrr«rrrrrrrrrrrrrrrrrrrrrrrrrrl..................................................................................................................«rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl................................................................................................................. - - - - - ERS1 3' SZSmA 60 66 4600 ,,.,,,, 5500 1-0 1 Z-0 1 ER51 B3E1530 -1Z0 Z77V.IE5„ rER51 B3E1540 -1Z0 Z77V.ies ER51 B3E1550 -1Z0 Z77V.ies, .I ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,I... l,,,,,,,,,,,,......,,,,,,,,,,,,,,,,,,,,,,,,,,,.I,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,, ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,......,,,,,,,,,,,,,,,,,,,,,,,, ERS1 5Z5mA 73 80 5600 6800 Z-0-1 Z-0-1 ERS1 GE1530-1Z0-Z77V.IES lERS1 C3E1540-1Z0-Z77V.ies ERS1 C3E1550-1Z0-Z77VJes rIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII;IIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIJIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�fIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIJIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIJIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIJIIIIIIIIIIIIIIIIIIIIIIIIIIIII »l�llllllllllllllllllllllllllllllllllllllllllllllllllllllllll»»»»»»»»»»»»»»»»»»»»»»»»»»»»lllll»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»» NOTES. mr% % t1,1 III m;. nr•g % m;. � ; ,� �s fl . . ;: � ,,, rr���fl ,,,, +ff, I: � � rf rr:� � I � r,,,% �€ �€ I �,,, .r �: I r,,,/ �€ I • Max Operating Ambient 50' C • Some 347-480 Not DLC Listed (Contact Manufacturer) ■ Projected L92 UK �! 50,000 at To 25C ■ Projected L70 (10K) > 100,000 at To 25C Based on 10,000h LM-80 data for Nichia 219E SQETM LH 17005 Attachment B G C E R C r,",[ t e r,", r,", c e NOTES: .1jjj U11 e • Max Operating Ambient 50' C • 347-480V Not Available in 700mA & 1050mA 9 Projected L91 (10K) � 50,000 at To 25C • For T Option (Contact Manufactured 9 Projected L70 (10K) > 1000000 at To 25C Based on 10,000h LM-80 data for Nichla 219B SQETMLH17005 Attachment B G C E f. R ""i' r J U11 e"'i c e NOTES: • Max Operating Ambient 40' C e r, r",i • 347-480V Not Available in 700mA & 1050mA 9 Projected L88 (10K) � 50,000 at To 25C • T Option Not Available 9 Projected L70 (10K) > 1000000 at To 25C • For 1050mA Drive Current, Nominal Color Temperature (CCTJ = 5300K Based on 10,000h LM-80 data for Nichia 219B SQETMLH17005 Attachment B P f,//,et : tnfrChoo , S C C d, I E R ISO Grid Distance in Units of Mounting Height at 30' Initial Footcandle Values at Grade E S 1 E,,,,,, -t r a I',J,, a r r o y m m e -t r i c 10700 Lumens 5000K HS ER51—GA1150 -120-277V.ies E S 1 I',J,, a r r o v),./ y m m e -t r i c [,J1 e j.), m 10900 Lumens 5000K HS ERS1 C3B1150 -120-277V.ies E S 1 Asymme-tric 5,"wir"t C 1) 10900 Lumens 5000K HS ERS1—C3C1150 -120-277V.ies E S 1 D 1) 10700 Lumens 5000K H$ ERS1 GD1150 -120-277V.ies E S 1 Asymme-tric �C 3 E 1) 10900 Lumens 5000K HS ER51—GE1150 -120-277V.ies w 64LI w Polar Trace Vertical and Horizontal Plane through Horizontal Angle of Maximum Candlepower C Coefficients of Utilization Street Width / Mounting Height MENE M a ME 1101ill! 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ERS2 I..... ... 3:::: t- 7OOmA . 189���J,..i 13400 . 16100 . 3 . . . . ; : .... .. .. :.....:.:...:............� ; - . - - . - . - ; - . 111111111111111 ,�'ll""I'll""I'll",'ll""I'll""IiiiiiiilililI iiiiiiiiiiiiiiiiiiiiiillillillillillill�ilI .. .. .. .. .... iiiiiiiiiiiiiiiiiiiiiillillilliiiiiiiiI hilil ... 1A 1111111111111111111111 liiiiiiiiiiiiiiiiiiiiillilliliiiiiiiiiiiiiiiiiiiiiiiiiil�iiiiiiiiiiiiiiiiiiiiiillillilill�iiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiilliiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiil: NOTES: I ... �. .)� r n i)/,,,,,,,,,! i, ",,[ r""/, I fil:,�, i! I I , ,,,,[ t', J)/"" I ""! I , ,,,,[ fi:',�, i! I , ""[ C J)/"" " ""! * Max Operating Ambient 50' C 0 Projected L91 (10K) �! 50,000 at To 25C * 347-480V Not Available in 7OOmA & 1050mA 0 Projected L70 (10K) > 100,000 at To 25C * For T Option, Contact Manufacturer Based on 10,000h LM-80 data for Nichic 219B SQETMLH17005 Attachment B G i lie C I.- lie E R lie lie 11W 1 JJJJJJJJJJJJ �JJJJ J�J . J , J rr J 1 111fJJJ . r. rl II Ilr� J J , r. rr r':.5:' ., rr f . . r IIr Jr , 1M,J(0J f 11 �JJ eM 1 IJ � 11JJ1 � ���l���I���lr���r��(r���� �����������1���1������� ����rrl������r���r��r�r�� ����11�11�11�111�1��1 ��. ,I,Jill -120-277WES ERS2 D3AI150 -120-277WES 1050mA 179 .10900 13000 3-0-2 3-0-3 ERS2 D3AI130 -120-277WES ERS2 D3A1140 ERS2 ....................................... .................................. ................................................................................................................................ ERS2 E3A1140 -120-277WES ERS2 E3A1150 -120-277WES 1050mA 204 .12500 15000 3-0-3 3-0-3 ERS2 E3A1130 -120-277WES ERS2 »III .. . .... . ... ... . . .. -120-277WES ERS2 .1 Al 1050mA 232 14100 16900 3-0-3 3-0-3 ERS2 F3AI130 -120-277WES ERS2 F3AI140 -120-277WES ERS2 F3AI150 .. .. .... ....... .... .. ....... ....... ..................................... ........... ............................ -120-277WES -0-3 3-03 ERS2 G3AI130 -120-277WES ERS2 G3AI140 -120-277WES ERS2 G3AI150 ERS2 1050mA 257 15600 18800 3 . .... ......... ............................. ............... ERS2 1050mA 285 17100 20500 3-0-3 3-0-3 ERS2 H3AI130 -120-277WES ERS2 H3AI140 -120-277WES ERS2 H3AI150 -120-277WES MR, ...... ..... .. ............ . .. .. ................. ERS2 1050mA 179 11100 13400 . 3irrrrrrrrrrrrrrrrrrrrrrrrrrrl rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrirrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJiliiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiJiliiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiriiiiiiiiiiiiiiiiiiiiiiili -0-2 3-0-2 ERS2 D3B1130 -120-277WES ERS2 D3B1140 -120-277WES ERS2 D3B1150 -120-277WES ................................... ........................... ..................................... ERS2 -0-2 3-0-2 ERS2 E3BI130 -120-277WES ERS2 E3BI140 -120-277WES ERS2 E3BI150 -120-277WES 1050mA 204 12800 15400 3 ...................................... 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ERS2 i B1 1050mA 232 14500 17400 3-0-2 3-0-2 ERS2 F3B1130 -120-277WES ERS2 F3B1140 -120-277WES ERS 2 F3B1150 -120-277WES ..................................... 1050mA 257 ..................................... .... 160 0 . ........................... ............................... . -120-277WES 19200 3-0-2 3- ERS2 0-2 ERS2 G3BI130 -120-277WES ERS2 G3BI140 -120-277WES ERS2 G3BI150 . ............................. 1050mA -120-277WES ERS2 285 17500 21100 3-0-2 3-0-3 ERS2 H3BI130 -120-277WES ERS2 H3BI140 -120-277WES ERS2 H3BI150 f f f f f fffffffffffffffffffffffffffffffffffJ lffffffffffffffffffffffffffff � ........................... ffffffff M. f �fffffffffffffffffffffffffffffffff -120-277WES ERS2 D3C1130 -120-277WES ERS2 D3C1140 -120-277WES ERS2 D3C1150 11100 13400 3-0-2 3-0-2 ERS2 D3 1050mA 179 ............................ ........................................................................... ................................................... ERS2 -120-277WES 1050mA 204 12800 15400 3-0-2 3-0-2 ERS2 E3C1130 -120-277WES ERS2 E3C1140 -120-277WES ERS2 E3C1150 .......... m- ..................... ........... .............. ................................................................................................................................ ................................................................................................................................ -120-277WES 17400 3-0-2 3-0-2 ERS2 F3C1130 -120-277WES ERS2 F3C1140 -120-277WES ERS2 2 F3C1150 C1 1050mA 232 14500 ERS21...................................... ........................................................................... ................................ . .................................... . ..... -120-277WES -0-2 3-0-2 ERS2 G3C1130 -120-277WES ERS2 G3C1140 -120-277WES ERS2 G3C1150 f 16000 19200 3 1 ERS2 GY 1050mA 257 ............................ ................................................................................................................................ ....................................... .................................... ........... . -120-277WES ERS2 1050mA 285 .17500 21100 3-0-2 3-0-2 ERS2 H3C1130 -120-277WES ERS2 H3C1140 -120-277WES ERS2 H3C1150 f ig .......... .......... -120-277WES .10900 .13000 . 2-0-2 S . ERS2 D3DI150 ERS2 D3 1050mA 179 3-0-2 ERS2 D3DI130 -120-277WES ERS2 D3DI140 -120-277WE ....................................... ............................ ................................................................................................................................ ERS2 1050mA 204 12500 15000 3-0-2 3-0-2 ERS2 E3D1130 -120-277WES ERS2 E3D1140 -120-277WES ERS2 E3D1150 -120-277WES ....................................... ................. . ............................. ................................ ERS2 -0-2 3-0-2 ERS2 ......... F3DI130 -120-277WES ERS2 F3DI140 -120-277WES ERS2 F3DI150 -120-277WES D1 1050mA 232 14100 16900 3 ............... ....................... ....................................... .................................. ............................. 15600 18800 ERS2 G3D1130 -120-277WES ERS2 G3D1140 -120-277WES ERS2 G3D1150 -120-277WES -2 3-0-2 ERS2 1050mA 257 3 0 ...................................... ................................... ........................... I ............................. ........... 20500 -120-277WES -0-2 3-0-2 ERS2 H3DI130 -120-277WES ERS2 H3DI140 -120-277WES ERS2 H3DI150 ERS2 1050mA 285 17100 3 . ................... rr.r.f ,.I.rur.1 rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr �rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrliffffffffffffffffffffffffffffffffff�rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJ�rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJtrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr>�rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS2 1050mA 179 11100 13400 . 3-0-2I ............................... 3-0-2 ERS2 D3E1130 -120-277WES ERS2 D3E1140 -120-277WES ERS2 D3E1150 -120-277WES ...... ...... ................................................................................................................................ 1»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»». .............................. ...... .... ...... .... ERS2 1050mA 204 12800 15400 3-0-2 3-0-2 ERS2 HE1130 -120-277V.1ES ERS2 HE1140 -120-277WES ERS2 E3E1150 -120-277WES ..................................... ..................................... ........................... ............................... .................................. ERS2 3.El 1050mA 232 14500 17400 3-0-2 3-0-2 ERS2 F3E1130 -120-277WES ERS2 F3E1140 -120-277WES ERS2 2 E3E1150 -120-277WES ........... ................................................................................................................................. ............................................................................................................................... -0-2 3-0-2 ERS2 G3E1130 -120-277WES ERS2 G3E1140 -120-277WES ERS2 G3E1150 -120-277WES ERS2 1050mA 257 16000 19200 3 ............................... ................................................................................................................................. ......................................I».»»»»»»»»»»»»»»... ........................... .............................»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»». lr ERS2 1050mA 285 17500 21100 3-0-2 3-0-2 i ERS2 H3 El 130- 120-2 77W ES ERS2-H3E1140 -120-277WES ERS2-H3E1150 -120-277WES 111111111111111111111111111111111111111 NOTES: J I I I I L e r,",[ t e r,",[ r,",i c e m;. • Max Operating Ambient 50' C • 347-480V Not Available in 700mA & 1050mA 9 Projected L91 (10K) � 50,000 at To 25C • T Option Not Available 9 Projected L70 (10K) > 1000000 at To 25C Based on 100000h LM-80 data for Nichla 219B SQETMLH17005 Attachment B P ft ,//, et ! : C hoo nf,rI S v", C C d, I E R 2 f. ISO Grid Distance in Units of Mounting Height at 30' Initial Footcandle Values at Grade E S E, -t r a I',J,, a r r o v),./ y m m e -t r i c r,, I 13A1) 20500 Lumens 5000K ERS2—H3A1150 -120-277V.IES HI E S 11"J" a r r o vt./ A, y m m e -t i" i c e j.), m 21100 Lumens 5000K HS ERS2 H3B1150 -120-277V.IES E S A, y m m e -t r i c S I,"i o r 1: r,, I 13C1) 21100 Lumens 5000K HS ERS2—H3C1150 -120-277V.IES E S r,, 1 13 D 1) 20500 Lumens 5000K HS ERS2—H3D1150 -120-277V.IES E S Ast, rrl rrl e.L ri c 1 13 E 1) 21100 Lumens 5000K H$ ERS2—H3E1150 -120-277V.IES w NO w IN w I �,`, o I r C f,,, j, r v - e Polar Trace Vertical and Horizontal Plane through Horizontal Angle of Maximum Candlepower C Coefficients of Utilization Street Width / Mounting Height 1111101111111111 MONEENEENNEENEENEENE RON EMIM NONE 0=000=0000 NONE NONEINEEN ME wMea EEMEMEN MEMO soon 01110,1111111000 NONNNONE■!E EEMEN MEMO IMIMMUNUEZZ MEMO ONEENEENEENEENE ME so 000000 NOMENNEENEENEENE 1R!00M ONEEMEN M00 ...........00 0 AMMEHIMEMENEEN NONE .MMMMIMIMMMIMIM n///irr rlrl� rJnry. g �+r+Ir/Jrr�(//. �. f/Jlrfl ,�ii�� rr/.!�iirfig �lrrr,� rri/ l � f(,� �/,1y,, r 1� I I I I I I� (.�� �II�`` ��/,�.11 �Jin l 11: �Ji, '�.r�� �rrurrr 1� rrrrrr �,uffl 11: 'rrn!!• rry. rmf `ni,,,i,n,Isr 3 f ERS3 5 n 11 11 11 1 J , I J , JJJJJJJJJJJJJ JJJJJJJJJJJJJ J J r fl rs fl rs r Ir 1 r, r, r , I� 1 1111 r1111�J 1 11 J J�JJJ!!!�! ! 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NOTES: • Max operating Ambient 50' C • Max operating Ambient 450 C for 347-480V • Projected L91 (10 K) 50,000 at To 25C • For T option, Contact Manufacturer • Projected L70 (10K) > 1000000 at To 25C Based on 10,000h LM-80 data for N ichia 2 19B SQETM LH 17005 Attachment B G C E R 3) C 1 JJJJJJJJJ JJJJJJJJJ JJJJJ JJJJ J �J JJJ , J J k'l � � r1;rl f I J'� )0�/rI rrr0 rJJJ r�I I. r.• :, f�� q ff i I 111111 JJJ f) .rrr 1 1 / f J i J I ERS3 -0-2 3-0-3 ERS3 J3AI530 347-480WES E 347-480V.1 ES .. .............. J 3 525mA 151 166 11700 14 3 ........... ...................................... .......... ...... ........................... ..........................................................................................................I I'll JJ .................... 525mA 170 187 .12700 15300 3-0-3 3-0-3 ER53 QA1530 347-480WES ER53 QA1540 347-480WES ER53 QA1550 347-480WES ERS3 . . .... ... .. ............ ....................................................................................................................... ........... ...... ...... ...........ff .......... ............ ERS3 : � -0-3 3-0-3 ERS3 L3AI530 347-480WES ERS3 L3AI540 3 4 7-48OV.1 ES ERS3 L3A1550 34 7-48OV.1 ES Al 525mA 183 201 .13700 16500 3 .....................................I el . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .................................I .. . .. ...... . ...... 3 525mA 196 216 :14700 17700 -0-3 3-0-3 ERS3 M3AI530 347-480WES ERS3 M3AI540 347-480WES ERS3 M3A1550 347-480WES ERS3 ....................................I .................................. J .................................I . .............................rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrf ..I .......... HHH"I'll" ........................... ........................................................................................................................ . ERS3 525mA 209 230 15700 18900 3-0-3 3-0-3 ERS3 N3AI530 347-480WES ERS3 N3AI540 347 -4 80V. I ES ERS3 N3A1550 347 -4 80V. I ES .................... .................... .... rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJr ..... ERS3 -48 OV. I ES 525mA 151 166 .12000 14400 3-0-2 3-0-2 ERS3 J3BI530 347-480WES ERS3 J3BI540 347-480WES ERS3 J3B1550 347 A�m ............................. .............................. ....................................................................................................................... ....................................................................... ............................................... ....................................................................................................................... -0-2 3-0-2 ERS3 QB1530 347-480WES ERS3 QB1540 347-480WES ERS3 QB1550 347-480WES ERS3 3.. 525mA 170 187 .13000 15600 3 .. ..... . . ................................I ...............................................................................I J, ....................................................................................................................... ERS3 BI 525mA 183 201 .14000 16900 3-0-2 3-0-2 ER53 L3BI530 347-480WES ERS3 L3BI540 3 4 7-4 80 V. I ES ERS3 L3B1550 3 4 7-4 80 V. I ES ............................... .......... ......................... ......................................................................................................................I ...................... .................................................................................................. :::.::.:...:.... ERS3 I :::...M3 J 525mA 196 216 .15100 18100 3-0-2 3-0-2 ERS3 M3B1530 347-480WES ERS3 M3B1540 347-480WES ERS3 M3B1550 347-480WES ...:...:::.:ERS3 525mA 209 230 .16100 19400 3-0-2 3-0-2 ERS3 N3B1530 347-480WES ERS3 N3B1540 347-48OV. I ES ERS3 N3B1550 347-48 OV. I ES "ffffffffffffffffffffffffffffffffffj fffffffffffffffffffffffffffff!, ........ .... .............. . . . . ... . .. .. .. . -0-2 3-0-2 ER53 JK1530 347-480WES ER53 JK1540 347-480V.1 ES ER53 JK1550 347-480V.1 ES J3 ..... .. . . . ERS3 525mA 151 166 12000 14400 3 .................................. .................................I .......................... ............................. ........... ERS3 525mA 170 187 13000 15600 3-0-2 3-0-2 ERS3 KK1530 347-480WES ERS3 KK1540 347 - 4 8 0 V. I ES ERS3 QC1550 347 - 4 8 0 V. I ES ..................................... ................................. .................................. . .............................. ............................. ............................. ....... ......... . . ... ............... ... -480WES ERS3 . . ... .... ...... .. . . ... . Cl 525mA 183 201 .14000 16900 3-0-2 3-0-2 ERS3 LK1530 347-480WES ERS3 LK1540 347-480WES ERS3 LK1550 347 ....................................I i .................................I J ............... .......................... �:...M 3 ERS3 525mA 196 216 .15100 18100 3-0-2 3-0-2 ERS3 MKI530 347- OWES ERS3 MKI540 347-480WES ERS3 MKISSO 347-480WES ............. .................................. ........................................................... ............................ ........................................................................................................................ ERS3 525mA 209 230 .16100 19400 3-0-2 3-0-2 ERS3 NK1530 347-480WES ERS3 NK1540 34 7-48OV.1 ES ERS3 NK1550 34 7-48OV.1 ES ................................. ................................ -48OV.1 ES ERS3 525mA 151 166 11700 14000 2-0-2 3-0-2 ERS3 J3DIS30 347-480WES ERS3 J3DIS40 347-480WES ERS3 J3DISSO 347 ...................................... . 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I ....................................................................................................................... ........................................................................................................................ .......................................................................................................................I .. ...... .. 1...«...........................-0-2 3-0-2 ERS3 L3DIS30 347-480WES ERS3 L3DIS40 347-480WES ERS3 L3DI550 347-480WES . ....... 3 ERS3 . ... . . . �f DI 525mA 183 201 13700 16500 ...................................... ............................... ....................................................................................................................... ................................................................................................................. .... ...... -0-2 -480WES . ERS3 M3DI540 3 4 7 -48 OV. I ES ERS3 M3DI550 347-480WES ERS3 M3 525mA 196 216 .14700 17700 3 3-0-2 ERS3 M3DI530 347 ............. .............................. .............................. ........................................................................................................................ .......................................................................................................................I -0-2 ERS3 525mA 209 230 15700 18900 3 3-0-2 ERS3 N3DI530 347-480WES ERS3 N3DI540 347-480WES ERS3 N3DI550 347-480WES ........... ERS3 -0-2 ERS3 J3EIS30 347-480WES ERS3 J3EIS40 347-48OV.1 ES ERS3 JH1550 347-48OV.1 ES 525mA 151 166 12000 14400 3 3-0-2 .......... ....................................................................................................................... ............ 15600 -0-2 -0-2 ERS3 QE1530 347-480WES ERS3 QE1540 347-48OV.1 ES ERS3 KH1550 347-480V.1 ES ERS3 525mA 170 187 .13000 3 3 ................................. .................................I . ............................. .............................. ................... ... ..... El -0-2 3-0-2 ERS3 LH1530 347-480WES ERS3 LH1540 3 47-48OV. I ES ERS3 LHISSO 3 47-48OV. I ES ERS3 525mA 183 201 14000 16900 3 ....................................I ................................. .................................I ......................... ............................. ........................................................................................................................ .. .. . . . .. . .. .... .... ...... ERS3 M3 525mA 196 216 .15100 18100 3-0-2 3-0-2 ERS3 M3EIS30 347-480WES ERS3 M3EIS40 347-480WES ERS3 MH1550 347-480WES ................................. ............................................ a...........................1:»»»»»»»»»»»» .............. .................................................................................................... ERS3 525mA 209 23 16100 19400 3-0-2 ERS3 N3EI530 347-480WES ERS3 N3EI540 347-480WES ERS3 NHISSO 347-480WES NOTES: • Max operating Ambient 50' C • Max Operating Ambient 450 C for 347-480V 9 Projected L91 (10K) 50,000 at To 25C • For T Option, Contact Manufacturer 9 Projected L70 (10K) > 1000000 at To 25C Based on 100000h LM-80 data for Nlchla 219B SQETMLH17005 Attachment B P f,//,et ! : tnfrChoo , S E R 3) C G i E 3 -t r a I',J,, a r r o v),./ y m m e -t r i c 3 A 1) 18900 Lumens 5000K ERS3—N3A1550 -120-277V.IES E S 3 I',J,, a r r o v),./ m m e -t r i c ',Yji e d i 19400 Lumens 5000K ER53—N3B1550 -120-277V.IES E S 3 y m m e -t i" i c S I,"i o fir, t ",,1, 3 C 1) 19400 Lumens 5000K ER53—N3C1550 -120-277V.IES E S 3 3 Cif) 18900 Lumens 5000K ER53—N3D1550 -120-277V.IES E S 3 y m m e -t i" i c e j.), m 3 E 1) 19400 Lumens 5000K ER53—N3E1550 -120-277V.IES HS IN ML I HS 11MOR HS ISO Grid Distance in Units of Mounting Height at 30' Initial Footcandle Values at Grade w 64LI N Polar Trace Vertical and Horizontal Plane through Horizontal Angle of Maximum Candlepower C Coefficients of Utilization Street Width / Mounting Height n//lirrfl p�. p� r�nry. g Ir+I f f/Jrr�r//. �. f/Jrrrl�ii�r//.!�iirrig flrrr,�G�j, JI � f(,f, �j,�j, { rl l l l r (f : � !I` 1J: � /I ��iin l 1J: G ,,r� J�rr»rrr 11 rrrrrr +r,urfl 1J: +rnJ!' y. lip" dn,. �'n.J{ ,�n.J{ irrr.. 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ERS4 E1 5Z5mA 247 272 19200 23000 3-0-2 3 0 3 ERS4 R3E1530 -120 Z77WES ERS4 R3E1540 -1Z0 Z77V.IE5 ;ERS4 R3E1550 -120 Z77V.IESIII ,,.- - - ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,, I, 1f ERS4 525mA 260 286 20200 24300 3-0-2 3 0-3 ERS4 53E1530-120-277V.IE5 ERS4 53E1540-120-277V.IE5 ERS4 53E1550-120-277V.IE5 »»»»»»»»»»»»»»»»»1..................................1............................................................I »»»»»»»»»»»» »»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»,.....................................................................................................................I»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»»». 5Z5mA 274 301 21200 25400 »I„»3-0-2 »I„»4-0-3 »ERS4 TH1530-1Z0-Z77VIE5 ERS4 TH1540-120-277V.IES ERS4 T3E1550-120-277V.IES»I IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII �Illllllllllllllllllllllllllllllllllll�fllllllllllllllllllllllllllllllllllllllllllllllllll (IIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII�IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII- NOTES. m.(% % lm% r1,1 Ih ,m;. m, nr•r m;. rfn l: I€ E r »r I€ I 14»% I€ I€ I �,r, r I: 14»/ I€ I • Max operating Ambient 50' C �yr1. • Max operating Ambient 400 C for 347-480V • Projected L91 (10 K) �! 50,000 at Ta 25C • For T option, Contact Manufacturer . 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I ES -0-3 J4-0-3 JERS4 T3BI530 -347-48OV.IES ERS4 T3BI540 -347-480V.IES ERS4 T3BI550 rrr««rrrrrrrrrrrrrrrrrrrrrrrlrrr«rrrrrrrrrrrrrrrrrrrrrrrrlrrr«rrrrrrrrrrrrrrr-rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr.....................................................................................................................)rrr«rrrrrrrrrrrrr-rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJ ERS4 525mA 274 301 21200 25400 3 .............. rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrlJrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrlrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr .... ....... ERS4 525mA 222 244 17200 20600 3-0-2 3-0-2 ERS4 PKI530 -347-48OV.IES ERS4 PKI540 -347-480V.IES ERS4 PKISSO -347-480V.IES »,. ............................ ............................... .............................. ........ ........... .................................. .......... ...................... . -347-48OV.IES 525mA 234 257 18200 21800 3-0-2 3-0-2 ERS4 QK1530 -347-480V.IES ERS4 QK1540 -347-480V.IES ERS4 QK1550 ,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,I rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS4 .............. ...................................... ..................................... ................................... ............................... ............................... ............................... .............................. .......................................................................................................................... ....................................................................................................................... . .......... . ............ ................ 525mA -0-2 3-0-2 ERS4 RK1530 -347-48OV.IES ERS4 RK1540 -347-48OV.IES ERS4 RK1550 -347-480V.IES ....... .... Cl 247 272 19200 23000 3 R3 rrrr«rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS4 ............................ -480WES J..............ERS4 SKISSO 3 4 7 -4 8OV. I ES -0-2 3-0-2 ERS4 SK1530 -347-48OV.IES ERS4 SK1540 -347 ERS4 525mA 260 286 20200 24300 3 ...................................... :rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrr)rrr«rrrrrrrrrrrrrrrrrrrrrrrrrrrJ...........................I...........................I................................ ERS4 -347-48OV.IES ERS4 TKISSO -347-48OV.IES 525MA 274 301 21200 25400 3-0-2 4-0-3 ERS4 TKI530 -347-48OV.IES ERS4 TKI540 ................ fffffffffffffffffffffffffffff JJJJ ......................... ERS4rr -0-2 3-0-2 ERS4 P3DI530 -347-480V.IE5 ERS4 P3DI540 -347-480V.IE5 ERS4 P3DI550 -347-480V.IE5 525mA 222 244 16700 20100 3 ...................................IrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJ:...............................J:...........................J:»»»»»»»»»»»»III -0-2 3-0-2 ER54 Q3DI530 -347-48OV.IES ERS4 Q3DI540 -347-48OV.IES ERS4 Q3DI550 -347-480V.IE5 525mA 234 257 17700 .21300 3 »»»»»»»»»»»»,,,,,,,,,,,,,,,,,,-,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,I ««`rrrrrrrrrrrrr-««rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrl ERS4 . ..... ......... .. ........ ...................................... . . ............................... ......................................................................................................................... 7! ERS4 -0-2 3-0-3 ERS4 R3DI530 -347-48OV.IES ERS4 R3DI540 -347-48OV.IES ERS4 R3DI550 -347-480V.IES DI 525mA 247 272 18700 .22500 3 ........................... ................................... ................................. ................. ............................ ............................... ERS4 525mA 260 286 19700 23700 3-0-2 3-0-3 ERS4 S3DI530 -347-48OV.IES ERS4 S3DI540 -347-48OV.IES ERS4 53DI550 3 4 7 - 4 8 0 V. I E S ....................... ............ ....................................................................................................... ....................................................................................... ....................................................................................................................... ..................................... 1. liiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiii -0-2 3-0-3 -480WES ERS4 T3DI550 -347-480V.IES ERS4 -347-48OV.IES ERS4 T3DI540 -347 525mA 274 301 20700 24800 3 ERS4 T3DI530 ERS4 525mA 222 244 17200 20600 3-0-2 3-0-2 ERS4 P3EIS30 -347-480V.IES ERS4 P3EIS40 -347-480V.IES ERS4 PHISSO -347-480V.IES .............. . . ................................... ................................. .............................. ............................ ................................ .............................. ERS4 525mA 234 257 18200 21800 3-0-2 3-0-2 ERS4 Q3EI530 -347-48OV.IES ERS4 Q3EI540 -347-48OV.IES ERS4 Q3EI550 - 3 4 7 - 4 8 0 V. I ES .4m .......................................................................................................................... ...................................................... ................................................ ...................................................................................................................... -0-3 . 3 -0-2 . 23000 3 ERS4 R3EI530 -347-48OV.IES ERS4 R3EI540 -347-48OV.IES ERS4 RHISSO -34 7-48OV.1 ES ERS4 El 525mA 247 272 19200 III ...................... ....................................... ................................... ...... .................. .. ........... ... ............................ «rrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrJ ERS4 S3 525mA 260 200 24300 3-0-2 3-0-3 ERS4 SH1530 -347-48OV.IES ERS4 SH1540 -347-48OV.IES ERS4 SHISSO -347-48OV.IES ...................................... ...................................... ................................... .......... 525mA is 0 ERS4 h. 274 301 21200 25400 -0-2 -0-3 -347-48OV.IES ERS4 TH 4 -347-48OV.IES ERS4 THISSO -347-48OV.IES liiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiii ......... . l l lERS4 TH1530 .................... ........................... ................................. ................................ ........ ..................................................................................................... ........................................................................................................................ ............................................................................................................ iiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiii NOTES: • Max Operating Ambient 50' C Ull e fi,, r,",[ t e r,",[ r,",i c e J • Max Operating Ambient 400 C for 347-480V 9 Projected L91 (10K) � 50,000 at To 25C • For T Option, Contact Manufacturer 9 Projected L70 (10K) > 1000000 at To 25C Based on 100000h LM-80 data for Nlchla 219B SQETMLH17005 Attachment B fj: P h ot o n,//,f, et r! i C S v", Gi E R 4) C f �: [ " . I ISO Grid Distance in Units of Mounting Height at 30' Initial Footcandle Values at Grade E E,,,,,, -t r a I',J,, a r r o v),./ y m m e -t r i c 24800 Lumens 5000K HS ERS4—T3A1550 -120-277V.IES E S i, I',J,, a r r o v),./ y m m e -t r i c [,J1 e tj m �"r 3 BY 1) 25400 Lumens 5000K H$ ER54—T3B1550 -120-277V.IES E y m m e -t i" i c S I,"i o r-1: 1) 25400 Lumens 5000K HS ER54—T3C1550 -120-277V.IES E "r 3 D 1) 24800 Lumens 5000K H$ ER54—T3D1550 -120-277V.IES E "r 3 E 1) 25400 Lumens 5000K HS ER54—T3E1550 -120-277V.IES R OR w RR w Polar Trace Vertical and Horizontal Plane through Horizontal Angle of Maximum Candlepower Coefficients of Utilization Street Width / Mounting Height 0=000=0000 MENNEN MENEM MEMEMI No I IN 0:0=0000 ME:: no MEN MENNONNNOMM MEN son !MM MENEZZEN M immmi HN =0■ no IN so IIIII MEN MEMIMMIMMIMMIMMIM WINNE IMMUMMUMM ON MEN: 21.3 in. [542 mm] Attachment B Pror'Uct fD fJ �lrrr, ii iV. rII/r�(�/. ,. �ii�flrpy. '1Hri,� /�iir�ifrrpy.'1Hri,�lr t 1 . Iy��,,1Y�/,, � i i i i � lI ; Iy�, rII+:q i I:1�� J�(� I Y�jJrrrr[+:qf ��fVl!' ir�r � 7r Yr Yr ��fllffr 1J yr Ypfl� 17 �ry V1 r 7 tt �pfl� E�j �� my [j. ; i��i.. r, <« �j <« e-i n,,f Adjustable for 1-1/4 to 2 in. mounting pipe 60 to 2.375 inch ON to60mmOD] 4.5 In. ---- 7.01n. [114 mm] [1771mm] T LJ—€c- 111111J Approximate Net Weight: 20 to 25 Ihs. (9.07 to 11.34 kgs.) ��rrrrrr ?IJI)p1 Contact manufacturer for specific configuration weight. rrrrrrl * Effective Projected Area (EPA): 0.5 sq. ft. max (0.046 sq. m) 25.9 in. [659 mm] i " I GIr.n, ri. 7Y'r. rr., y. Adjustable for 1-1/4 to 2 in. mounting pipe (1.660 to 2.375 inch ON [42to60mmOD] 14.5 In. [368 mm] I I 4.5 In. ---- 7.01n. [114 mm] [177mm] [659 mm] ........................................................................................................................................................................................................................................................................................................................................................................................... 1 111 * Approximate Net Weight: 25 to 29 Ihs. (11.34 to 13.15 kgs.) ��rrrrrr Contact manufacturer for specific configuration weight. jl11111w rrrrrrl • Effective Projected Area (EPA): 0.7 sq. ft. max (0.065 sq. m) L.)00 rrIrr» 5.4 in. [136 mm] In. ,nm] Attachment B fJ fJ Pr!or'LJc't D : n"i e n s i� : ons MISSION,, � !ice li\ IN 11 f loll MISSION,, Fill M Ev v e l, E D C e e c 4 i =Z 2v Adjustable for 1-1/4 to 2 in. pipe (1.660 to 2.375 inch ON [42 to 60 mm ON 37.3 in. [947 mm] 15.0 in. [38 mm] TH IHHHUUUUUUUJ) 4.5 in. 1, ............ 1111ILL ra7.0 in. 5.4 in. a, [177mml m C) [114 mm] [136 mm] 14.7 in. R [373 mm RI 37.3 in. Mold - 15.0 in. I111111. [947 mm] [380 mm] ........................................................................................................................................................................................................................................................................................................................................................................................... Approximate Net Weight: 40 to 46 Ibs. (18.14 to 20.87 kgs.) • Contact manufacturer for specific configuration weight. �`Il IIJVII rrrrrr Effective Projected Area (EPA): 1.0 sq. ft. max (0.093 sq. m) www.gelighting.com GE and the GE Monogram are trademarks of the General Electric Company. All other trademarks are the property of their respective owners. lnformation provided is subject to change without notice. All values are design or typica values when measured under laboratory conditions. GE Lighting and GE Lighting Solutions, LLC are businesses of la the General Electric Company, Q 2015 GE, OLP3067 (Rev 03/10/15) Village of Mount Prospect Attachme ,,�:: p51"y CA Street Lighting Capital Program Corridor Lighting Evaluation Appendix B — Photometric Results Appendix B-1 6/20/201 G MECI IBA GROUP I ConsultingEngineers In Q a U] W L) Z a ,o o LL W CV W a W w a Z_ J o v N o cc CQ LJJ 0) J v v C� U Q v v 4- 0 0) CQ 'o L a E W v L7 CY] [0 r C'7 LJJ a i E r CZI CZI •— W v v v LJ.J J tY3 N v v v J E r j` LO m 00 LL7 CV5 � J J —j CD t CD cm N N J co >� . LO LO 0 U v v J C� U (1) W J U ' J .0 E Cw W v •— `= I E o X L) x �I X r- to W v •_ r v i W r U �3 W �3 L J L LO .i .. p .. ) CAI coo of � L m � L NI w Q _ a Q t� 0) 0) .L CQ U Ca U (U _0 W 0 (n W a) a m F a 0 a 'U Z C (n a m V U L W v � v .E U Q v 0 Q U) z N v � �C3 Co � � v r r N ,Irm- o 0 U (1] J U) .0 0- U) U) cc m +� o CY) J 0) � v Q cc m U Ca m ?0 U) x U E E Z) _0 U) 0 () .E J v v (1) C) v r ai � v Cv 0 LO C U) CO- 15 0 Ir- J (v a E v U � v E CL E Ca J Ca 0 cc v Q� Ca JiD o L E Z J Ca J c� v o o, o m v J 9 v IqT 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATBO LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 24 ft Lanes In Direction Of Travel: 1 In Opposite Direction: 1 Driver's Side Of Roadway: Right Luminaire Information: ATBO 20BLEDE70 XXXXX R2 Description: ATBO 20BLEDE70 XXXXX R2 File Name: ATBO 2OBLEDE70_XXXXX_R2.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 5571 Luminaire Watts: 48 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 8.392 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 135 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATBO 20BLEDE70 XXXX... -405 -6 25 90 0 0 ATBO 20BLEDE70 XXXX... -270 -6 25 90 0 0 ATBO 20BLEDE70 XXXX... -135 -6 25 90 0 0 ATBO 20BLEDE70 XXXX... 0 -6 25 90 0 0 ATBO 20BLEDE70 XXXX... 135 -6 25 90 0 0 ATBO 20BLEDE70 XXXX... 270 -6 25 90 0 0 ATBO-20BLEDE70-XXXX ... 405 -6 25 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft ATBD 20BLEDE70 XXXX... 540 -6 25 90 0 0 Total Number of locations: 8 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q O cn di 00 d' lf77� i-n . +O +O +O . +O C\] cn . +O di d' v +O Cn Lo v +O O 00 . +O Ln cn . +O Ln i-n +O H oo +O �o dl . +O O di C\] Lo C\] dl 00 O C\] di C\] Lo m dl 00 O dl cn [� i-n i-n oo H O [� cn +O i-n Ln +O oo [� +O H dl +O 0 C\] cn +O (30 di +O Qo Q0 +O Lo [— +O a H H L L a) N ri -r v cn . H 00 4 ro cq rd 0 (d 7vco C7)7vco co� ra�,o o m o o o co co co 0 ZD) CO F� �4 (D X ZD) X X a�X �XX In Q ►"I 0 a 0 HI [11 I 8 'a 0 d' C d 01 01 O C\] [� [� H 01 i L9 oo 00 +O +O +O +O C\] C\] [� m d' i-n i-n i-n +O +O +O +O [� C\] H L0 +O +O +O +O di [-- d' 00 C''-i C\] +O +O +O +O di [-- d' 00 C''-i C\] +O +O +O +O [� C\] H L0 +O +O +O +O C\] C\] [� C''-i d' i-n i-n i-n +O +O +O +O H0-) i-n oo 00 cn H C\l 7vNN r--� m o N 7v N P4 00 0 0 0 o o 4-J 4-J 4-J 0 co co co 0 ZD) � � co -H > co co H X XFl� X X v In Q C\] L� H 00 L9 C\] C\] cn d' +I +I +I +I 00 C\] L-- cn i-n Lo C3o 00 . C\l . cn +I +I +I +I cn Q9 Q0 LD [-- CD H C\l v v . • O C\] Cn +O +I +I +I dv i-n 00 L-o H i-n H cn • 7 I C\] +I +I �lv o-) O C\] Ln H cn C\] v. • O C\] +I +I C\] 00 C\] Q9 di H o� • + Q9 di O Cn H Q0 [-- CD . CD + (30 C30 Ln LC7 0 Ln H CD H a CD CD H �- C\� CD a i-n N 00 Q0 00 -ri 0 CD I CD +O +O + + .ri .--I 4 >1Ln cq -P r- 4-) rd ro N> � > H LO In Q r-I 0 a N N 0 0 a �I v a I �I cv I 8 'd D P� Q0 r7V 7--1 CD d' (n (n d' L7 Q0 . . . . +p 4p +p +p [— 7-1 r- L7 (n d' d' L7 4p +P 4p Q0 o 0 0 (n 7:11 Ln Q0 +P -p +P -p N Ln Ln N (7:11 Q0 co . . . . +P 4p +P 4p Q0 r— 7:11 G) (Ln 03 G) o N N o) 7:11 Q0 (3) o . . . . +P 4p +P 47, N N N r- 7:11 Q0 G) o o) co Ln o cn Ln co 0 . . . . +P 4p +P 47, r— Ln r— G) M Ln r— 03 P*h rd U ti rn LO co rn � Q0 o m 0 0 0 o �1 0 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q ►"I 0 a 0 a v b� 14 H I v v a I I cv I 8 'a 0 P� d' C\] ) H H H O . v v . +O +O +O +O L0 Ln C\] [-- C\] C\] C\] H . v v . +O +O +O +O O 01 L0 01 . v v . +O +O +O +O L0 00 di cn Ln Ln Ln di +O +O +O +O C\] [-- O [-- [-- [-- [-- Ln +O +O +O +O [-- i-n oo i-n 00 01 00 [-- +O +O +O +O i-n H 01 [� 01 H O 01 O C\] di co 01 H C\] H H �lv 00 � H C\l . . . . + + +71 +71 o H � H Ln Ln L +o +o +o +o rn rd NO3N U N • )) (Y, v U [I [I [I LO LO rn 0 0 0 0 o � o 4-J 4-J 4-J co co co a 0 ZD) b > co -H > co co HF� X xFl� x x In Q ►"I 0 a N81 -P ro N O a O O O O . v v . +O +O +O +O i-n �o oo dl O O O O . v v . +O +O +O +O [� H d' cn O H H H . +O v +O v +O . +O O i-n co Q0 H H H H +O +O +O +O C\] [� O [� H H C\] H +O +O +O +O C\] [� O [� H H C\] H +O +O +O +O +O +O +O +O 00 dl O 00 O O H O +O +O +O +O Ln �-o �-o Ln CD 0 . . . . + + + + O O O O +O +O +O +O [I 'a E� Ln 4-J • m Fl, U N Ln N m 9: 11 11 11 0 b o -T �4 � N 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 �� o •� � � > CO 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 24 ft Lanes In Direction Of Travel: 1 In Opposite Direction: 1 Driver's Side Of Roadway: Right Luminaire Information: ers2 d3cl540-120-277v tcm201- Description: ERS2 D3C1540-120-277V File Name: ers2 d3c1540-120-277v_tcm201-95179.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 8200 Luminaire Watts: 88 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 8.607 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 150 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers2 d3c1540-120-27... -300 -6 25 90 0 0 ers2 d3c1540-120-27... -150 -6 25 90 0 0 ers2 d3c1540-120-27... 0 -6 25 90 0 0 ers2 d3c1540-120-27... 150 -6 25 90 0 0 ers2 d3c1540-120-27... 300 -6 25 90 0 0 ers2 d3c1540-120-27... 450 -6 25 90 0 0 Total Number of locations: 6 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q [V 0 a (D N 0 [n C\] ,.1 r- co G) c +o +o +o �o o [ �o r- G) [ +o +o +o H Q0 G LC) Qo G c +o +o +o H 7-� o [ +o +o +o GD o LC) [n Ln r +o +o +o L +o +o +o 03 7 C\] cn cn t +o +o +o H 7--d C\] +o +o +o L H C +O +O +O +o +o +o r-r-N CD Ln r— tr Nmr --� ca 11 11 11 co o co ra Lo o N o o o CD � o 4-J 4-J 4-J co co co o ZD) � � 0 x ZD) x x aFl�X �XX In Q 0 a N N 0 H L n N Q0 I." Cn t ■ O C\] ■ r-I ■ -7l L H C ■ 1 n 1^ 1 n C • 1 ■ ` V 1I ■ ` V [ I r` L ■ 1^ N 1I ■ ` r l C H C I r` L ■ 1^ N 1I ■ ` r l C H C I r` • 1 ` V ` V [ 1 n 1^ 1 n C O [\ di L HC r l H 1^ N r HI CN I 'a 0 • tiY • Q0 • tiY r--� N .0-14 U [I [I [I w CO Q0 -T --co m 0 0 0 �oNo��4-J 0 co co co co -H > co co H X XFl� X X In Q Lo L-o L0oo� :................................................... +I +I +I +I [� d-' m cc H L0 O d' d +I +I +I +I (5) Ln �o cc Ln Ln m m +I +I +I +I C\] (3) 03 d1 C\] 7 I C\] d1 +I +I +I +I O di di O dl LC) • 7-I C\] +O +I +I +I dl �9 C\] Q9 Ln • O �o o� Ln (3) Lrl +7 + +` 1 + m 03 0 L . +� +� +�n + c Ln • G) cn CD.1 . $4 +7' +g) +g) +Pc a) N N�lv ri 0 +77" ri H v ..................................... o >1Ln cv �— 'd ,� [ b N D 0� -rl C� > m am In Q r- Ln Ln dv Ln Ln Ln Ln C) [- L0cr CX7 Gl Ln ol [� CCI Gl C) L0 �. 0-) di Lfi [� di Li oz Lfi Ln 0- (n 7�-' Ln �I [, p R 00 G'l 7--I C\ L.! a N N 0 0 a �I N a I �I cv I 8 'd D P� P*h rd U rn � Co Ln CD 0 0 0 o�CD��4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q (V 0 a N N 0 0 a -P v 14 H I v a I I cv I 8 'a 0 P� cn cn O O O [ +O +O +O V I , I 1 n C O OO +O +O +O o) N G r H 7--d O [ +o +o +o I GD l C cn N H c +o +o +o GD CO � [ Ln c [ +o +o +o C\A r— GD L GD 1 n C +O +O +O O O G r O (:7) r— [n co H r cn cn [ GD�G) GD CO [� O L0 �I N C\] [ co m a) N U [I [I [I g: r— co N (d Q0 co 0 0 0 0 o r--� o 4-J 4-J 4-J co co co a 0 ZD) co co E-HXX In Q 0 a 0 a N81 ro N O a O O O +O +O +O H r-I H r O O O +O +O +O cn1 r 1 1 � C O O O r +O +O +O Q0 0) G) c O O O +O +O +O 0D O H c O r-d H +O +O +O O d1 cn H +O +O +O N cn O [ H +O +O +O dl CO Q0 L O O O +O +O +O Ln Ln O O O +o +o +o cn cn cam] c O O O +O +O +O 0 bi --- 'a E� U m m 4-J 7v dv r UQ0N 9: 11 C� (5 o� 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 Z � 0 •� � � > CO -rl (D x ZD) x x x�4 >Fl� X F� X X X N LO H In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U I �4 �4 co C11 - I a �4 v� o W � W � m • 0 o (D H f]Q �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U Q o r W H o co 0 co co 0 0 co 0 (D � co N 4-) � U � 0 r�,' 4-J -H 0 (:� f]Q rl 4-J 0 �n r�,' 4-J � � 0 0 -Ci m m 0 U 4-J U U �� 0 Fl � -� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 U 1 r-I CO � x Q u I I o o N -T r, Ln U � �I m I� I o �4 o Ln 1n 0cz NQ0CDoor--� W Q � o X �I� o X f]Q x LO E-A I LO m F�oNQ0000--A 0 I co F4 0 0rx�� o 1 0 0 1 0 � rx rx (2� U U I I co -H -H I ,Q �4 4-J � U 4-J 0r1-H � + N 00000[—[—cam LnoNoLnr— o1�ocom� co r--� 7v co Q0omrn7+oo o 1 o 1 m 1 bi -- 000 .H -H -H aa�x xx �XX�XX coQ07v co m o No o In Q rA V r0 V) . rl 04 4j l9 0 p rn CC) CC) LO a o >1 m o [- 0 0 0 c Fl� X N IH rn r--� co r--� r--� r--� 1n o N r--� Q0 [- o1C;Nome �� -TNN � o m rn I-n co C; C; � U al pqI 000 NIA Fl� rl > 0 x p)xx ►--i l k � 0 0 [- co N 1n o r--� Q000o • CO o�CDOm9) �LOLOC7) coN c� o rn UoT--�o[-r--�� al v 14 ro HI 0 0 0 a 0 ZD) NIA �5 �H -Hrl > 0 x p) x x ►milk � o r- Q07vr--�oom7vo or--� o o M N - .0 0 0 0. �+ 000Q0r--�Nor--� Q0 o7voo m1-0 rn H z H b, 0 0 0 0 -0 -0 -0 0 H -rl Co co I ►--� � � H CD Lam. In C v E U Q a U] W L) Z a ,o o LL W Rt W a W w a Z_ J o v N L cc W 0) J .L v C� U Q v W v 4- 0 0) cc 'o L a W v ...::::..:::::.::: ...:::..::::..::::..:::..: :::::..::::..:::::..:::... :..::::..:::::..:::..::..: v W L �3 a v v v LLJ v v v v W v J CY] v v v J E r C'r3 00 �C3 E J J v C'e] C.0 N J J v p p v U v v J C� U (1) W J U ' J .0 Q E co W v •- `= I E o X L) x �I ._ 'U) X G� U) W v •_ v W r U �3 W �3 .i .. p .. j co � L m � L NI w L _ a t� Q t� 0 0) .L cc U cc U (U _0 W v (n W a) a m F a 0 a 'U Z C (n a p V� W v � v L Q .E U Q v v L Q U) z N CNCO ,) p � N � N Co r r N 0 0 U (1] J U) U) m x U U cc E m c E +� 0) Z) o � Q .0 C�. v m 70 U) _ J U) U) 0 () .E J vv v v [U (D r � � r N o v G7 r (U 0 r CY) U � � � r 0 0 Ir- LL 4-0 J � J v o CY) (v v a cc L o CL � � � v Cc v cc m y U J Q� Z J J 9 v IqT 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r .............................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Roar, Near Side; 1RNS Roadway Width: 44 ft Lanes In Direction Of Travel: 2 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 40BLEDE10 XXXXX R3 Description: ATB2 40BLEDE10 XXXXX R3 File Name: ATB2 40BLEDE10 XXXXX R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 15519 Luminaire Watts: 138 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Roar 1: 235 Label X-Coord ATB2 40BLEDE10 XXXX... 705 ATB2 40BLEDE10 XXXX... 470 ATB2 40BLEDE10 XXXX... 235 ATB2 40BLEDE10 XXXX... 0 ATB2 40BLEDE10 XXXX... -235 ATB2 40BLEDE10 XXXX... -470 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0 a (D N 0 U b a� -P 0 C G . .............- r� -:v LC', -:v LC7 Ln +�+ + +� Qa -:P C OD -:P -:P C C O') Ln Lf" LQ LQ L [- n"] �� d1 N � 0-)Ln �o i— o OD C m Ln �c oD C c +C+ +C++C+ +� Q9 OD OD C m -:v -:P �C OD C C r +C+ + +� �I Ln d i- �-9 o) Ln n") O Ln LC� OD n"] r N 0-) � o r OD r— �-o C C c �I N O" Ln L- L d C C +C + +C +C +C + +C -:P Ln Q9 OD C -:P Ln C �I +C + +C +C +C + +C Ln �9 C- OD o)C +C + +C +C +C + +C + O� 0') C C 0')C r r C\I N �I r +C + +C +C +C + +C + �I d Ln Ln o-) C N N N C\ N N N C N N 0- N N C +C + +C +C +C + +C C L- L` Ln C C +C + +C +C +C + +C + N d _Nr d -:riC 1� r- bi �Nco7v CD � 0 0 0 CD � o 4-) 4-J 4-J co co co 0 ZD) � � (D x ZD) x x aFl�X �XX (14 In Q 0 a N N 0 0 HI -P 8 'a 0 o cy� r—I cl €=r..............0 0) Cal 0-) �' d1 d-' 0-) r +�+ +�+�I+�+ +� N C C- C Ln OD Ln L C\I r-I C +� + + +� N O n'] �C� Ln O� C � Ln �9 C Ln Ln Lr Ln ni ni ni C�ni ni ni C Q9 Q9 N N C\I N N r O� O O� O�� O� r-I r-I r-I r-I r-I r +� + + +� + d 0-) 0-) C C +C + +C +C +C + +C C C +C + +C +C +C + +C OD OD OD OD OD Q9 d' C r-I r-I r-I r-I r-I r +C + +C +C +C + +C + Q9 �9 LC�9 � C N N C\I N N r +C + +C +C +C + +C + ni ni C� ni ni C +C + +C +C +C + +C + Ln Ln Ln L' Ln Ln d' (\I O n'] �C� LnO� C C� OD O OD Q9 C +C + +C +C +C + +C + N C C- C Ln O Ln L r-I C\I r-I c 0) C +Y-' + +C + Ln OD C-? r-I C- C �' +C + +Y-' +FI +Y-' + +Y-' + 03 m 03 1� 1� • Li-j �► U [I [I [I W [- M 00 LO IT 0 0 0 0 . .H -H -H o o 4-) 4-) 4-) 0 co co co 0 ZD) co -H > co co HF� x xFl� x x In Q 0 a N N 0 W a I >I -I 8 ra 0 r— �o --1 C ............. m m m m +I +I +I +I +I +I +I +I Qa oD c� Ln Qa 0-) r— OD C CD CD OD r- +I +I +I +I +I +I +I +I r— L(-, OD Ln i- N �I N Ln C +I +I +I +I +I +I +I +I �I OD C� 0')1 CD C 0') CD �' r— CD r- m -:v _Nr' -:v Ln +I +I +I +I +I +I +I +I r— CD n-i CD O n') �S 0') CD Lt- CD d' C m r' Ln Ln E +I + +I +I +I +I +I �I �o r— O Qa CD Q9 r- r ni ni �' Ln Ln L +I +I +I +I +I +I +I +I C\] CD C\I C- O: CD C- Q9 Ln C r Cr) 0- d' Ln L +I +I +I +I +I +I +I +I C\] L Q9 N • 7--I C\I C d +CD +I +I +I +I +I +I +I o') C 7--I OD G' 7--I C\] C OD 01) C- ol� C7 • C\] C +N + +y +C +� +I +I +I CD 7-I C- OD C- 7-I o) 0-) OD 5 �9 -J, �S +� + +� +� +N + +P +C Ln (-\i L'' C7 1 o)r Q9 n") C\I 0) CD n +� + +OD +- +�n + +m +� Ln �-Q �I CG +� + +Y-1 +F-I C� C\1 C� CD I--L7 7--I O 0) LC N Ci N N C\I N +Y-' + +Y-' +FI +Y-' + +p + 7--I Ln -I o C- 7-1 'T' N 0) C cif L C7 C\] C!C\] +YI + +Y-' -F +Y-' + +p +9 C- OD -I C- Ln c3 OD r d 0-� CD OD Q9 OD LC' 0') [- r C- �I C\I C\] 0') C +p + +Y-' +FI +Y-' + +Y-' +r I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I v vco a� � � -PC\j Ai -rl F-A > m v In Q 0 a 0) C\] C\] -I 0) Q0 0-) +C +C +C +C +C +C +C C r— �I 7--] 0) r— m ,--I Ln o-) Ln r- C + +1 �� .................... C\] cif Cry di C\] C n -:v L[ 7 Ln Ln t +� + +� +C +� + +� + C� d' r-I C\I OD r-I r- 0-) Ln �C' Q9 Q9 L r— -:P LC'� OD C � C-) Ln �-c i— r Ln c m Ln �-o oD C C +C+ +C+c'+C+ Ln C\I 0) OD m -:P -:P �C r- C C C +C+ + 0) C 0") �I C N d1 C\l [- C C �I 7--1 C C -:ri L C\] 0-) �' Q9 OD C Q9 n C �I C\] 0" d Ln +� + + +� ,ri Ln i- -I ri o) 7--I ,-I � C\I N C'") C d-' Ln C- o) (-\i C rI rI �I rI C\1 r Q9 7--I �I C\] C C r C\] (\I C\] C\] r C\] C\] C\I C\] C\] C rd U U r— LO Nco7v CD � 0 0 0 CD � o 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX LO In Q 0 a (D N 0 0 a -P yWy.� V� 14 R� H I W a -P 8 'a 0 P� C C C C C C C[ C C C, C CDC +C+ + +C N N C\I N 7--I r C C C C C C n N CAI N N C C C C C C C C C CDC C C C ( +� + + +� �9 Ln Ln L[ , Ln d' d' C C C C CDC +� + + +� d1 n"] N 7--I 0') C �I -I 7--1 C C O C� LC� Ln 0')L N N C\I �I C C\I 7--I 7--1 ( L[ 7 L[ 7 L[ 7 Lr, L[ 7 d-v d-v C +C+ + +C C� Q9 Q9 C- C- C- C- Q9 L +C + +C +C +C + +C C C C, C r �I N N C\I N C N Q9 0' C 7--I C n d d Ln o-) N C + + N N O�, �9 LnC 0-) Ln L' Lf ] N r +� + +� +FI +� + +Y-' + N G� N [- L[ 7 r C N r N C Q9 j 7--I 0" C\] j 7--I 0-) L[ 7 LrL[ 7 L[ 7 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I 'd } 03 r-� .-. rj L7 . Ln r-� m U [I [I [I g: � co � ro LO LO 0 0 0 0 CDr-�o��4-) co co co a 0 ZD) co co E-HXX In Q 0 a N N 0 0 a + o.............. C C C 7--lc +C+ + +C r- OD C -I 0') 0') (\1 C C r-I r-1 r-I r-I r C r-I -I r-I r-I r +� + + +� OD C C\I 0') n"] C C r-I r-1 r-I r-I r +� + C9 C C C C C r-I C C +C + +C +C +C + +C C C C C C C +C + +C +C +C + +C N N CAI 0" 0-) r C C C C C C +C + +C +C +C + +C C C C C C C +C + +C +C +C + +C C\I N N C C C C C C C C C +C + +C +C +C + +C -I C\] N N C C C C C C ( +C + +C +C +C + +C C C C C C C C +C + +C +C +C + +C rI rI -I rI C\1 r C C C C C C +C + +C +C +C + +C + r-I r-I r-I r-I r-I r C C C C C C C C r-I r-I r-I r-I C C C� C C c +C+ C C C C C C C C d' Ln �C' C- QQ L C C C C C C +C + +C +C +C + +C + I I I I I I I r.:rt I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I IIIIIIII I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I N Ln C7) 'a 0 �► +} Ln Q U Ln � m m 9: 11 11 11 0 b Ln Ln � �4 o� 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 � � 0 •� � Fl� > CO > Fl� N Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r .............................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Roar, Near Side; 1RNS Roadway Width: 44 ft Lanes In Direction Of Travel: 2 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers2 g3cl740-120-277v tcm201- Description: ERS2 G3C1740-120-277V File Name: ers2 g3c1740-120-277v_tcm201-95332.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 14600 Luminaire Watts: 172 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 8.607 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Roar 1: 235 Label X-Coord ers2 g3c1740-120-27... 705 ers2 g3c1740-120-27... 470 ers2 g3c1740-120-27... 235 ers2 g3c1740-120-27... 0 ers2 g3c1740-120-27... -235 ers2 g3c1740-120-27... -470 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 -6 35 90 0 0 U00 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q N 0 a (D N 0 U b a� -P 0 +C+ +C++C+ +C 0') L[ 7 C- Cr, o ] N C o- Ln �C, C-- O C C O crC� CDC C�' ] LS ] Lf'� �Q L5� C +C + +C +C +C + +C + Ln N C\I (\I d1 C (\I d LS C9 O� C +C + +C +C +C + +C N O Ln �I OD C C C9 C� C +C + +C +C +C + +C C9 N C9 OD O� N 0-)C�"� di �9 C +C + +C +C +C + +C O� CDC- d-' r-I r OD +C + +C +C +C + +C + O� OD CY ? 0) C r (\I C 0-) Ln L +C + +C +C +C + +C O� Ln LC C C� C +C + +C +C +C + +C ,--1 N C\I N N C +C + +C +C +C + +C C9 O 0)C� CDN r C\I N N C +C + +C +C +C + +C C9 O 0) C� OD 0) C +C + +C +C +C + +C + OD d L(- 0') o ) -C rI N N C\ N N N C LS ) n"] n":� N CD� C\1l C i i C C +C + +C +C +C + +C C 0 Ln LC Ln C- L 0-) +C + +C +C +C + +C + n (-\i Lf, Ln N C 0-) LC� Q9 [- C I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I m m d Ln N N o Q0 IT C7) � 0 0 0 co co co 0 ZD) � � (D x ZD) x x aFl�X �XX M In Q N 0 a (D N 0 0 HI -P 8 'a 0 Qa -P C In[ C L 0� C, �I an d c +� + +N + +N + O� C� o-) r' Ln C— r-I C +� + +� +�I +� + +� + C C— C 0) N � Q9 C� C 0-i C d 0-) Ln LC' Ln d r +� + +� +� +� + +� d O m N N 0-) n"i N N N C +C + +C +C +C + +C 0) Cam] 0-) CAI C OD Q9 �I N CAI N �I +C + +C +C +C + +C 1 1 -I c\1 r +C + +C +C +C + +C + [— O OD C— -:ri C C +C + +C +C +C + +C [— O OD C— -:ri C C +C + +C +C +C + +C [— cif cif 0', 1� dri N C +C + +C +C +C + +C + 0) n"] CAI CD Q9 r N C\I N �I r +C + +C +C +C + +C + OD r) r N o) n"i N N C +C + +C +C +C + +C + C� C 0-i C d m -:ri Ln L' Ln dri i r C d-' C— C 0)C9 N C C9 O� O� O O� C +C + +C +C +C + +C + O� o ] Ln r-I C Ln +C +� +Y-d +FI +Y-d + +Y-d + N Q9 LC� -:ri C C C 0) C �I d C +� + +� +�I +N + +N t t I...). co co m L{-j • (D • co m m U [I [I [I W [— 0 00 Q 0 0 0 0 �oNo4-J 4-J 4-J 0 co co co 0 ZD) � � co -H > co co H X XFl� X X In Q N 0 a (D N 0 W a I >I -I 8 ra 0 CD d' OD Cy) d' C` C') C') Lq �-o +I +I +I +I +I +I +I +I C- Cam] �C' (3') OD (` N OD 0-) -;�r' Qo OD CD C +I +I +I +I +I +I +I +I o) Ln c, oD o r C� Ln L( +I +I +I +I +I +I +I +I Ln r- CD I Qo E La Cr] (Y N 0') _Nr' -:ri Ln IS +I +I +I +I +I +I +I +I 0') Ln o5, C�] C- O: 0') OD CY', CD C7 r r N C d Ln IS +I +I +I +I +I +I +I +I [- C\I C9 OD r d-' o) C- Ln o) OD C CD • r C\I 0') -:ri IS +CD +I +I +I +I +I +I +I [- O- [- Cam] O: C� d i Ln N (Y • CD r-1 N d � +� + +I +I +I +I +I +I d-' O C- C 0) C9 cif CD CD LC • r- C'i CY +N +r-1 +CD +C, + 1 + I + 1 + 1 OD C C- C\] C\1 0') Q0 C 7--1 CD C- C, 0) +m + +N +C\I +C7 + I + 1 + 1 r 0) d r-1 7-1 [) 7-1 (Y r-I N �'' C� C� ) C +� + +� +� +N + +CD +I d-' CCQ9 U I - CD Ln C-C Cc +� + 0)+� +� +� + CD +N +r C9 OD LC� C9 CD C C\I Ln N N CY7 O n") C CD N o) Ln 7--1 C CD 2 O CD 0-, cif 0-) [' CD 0) N n") o) LC CD • r C\' N r C +p + +� +F1 +Y-' + +P +r N C- CC, N C- �S OD Ln r' OD O C7 [- O- C7 01) CY +Y-' + +Y-' +F1 +N + +N +� I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I v �co vLo a� >1co -� Ai -rl F-A > m r-I In Q N 0 a co r-) C— �-a Ln Ln Ln r-) +P +P +P +P +P +P +P r-I N N Ln Ln Ln co o-) d' Ln Ln Ln Ln Ln �9 Ld 0-) OD C� d-' r "'.. ,Q, O d, C� O C C � C rr 0-) o-) +C + 0-) C, r-I N LS ] �C, [- O +C +C +C + C C � C +C + O� N +C + O� O�� Q9 d Q9 +C +C +C + 0)C O� +C ni (\I +C + OD L' Ln o-) r L[ 7 +C +C +C + C- C +C + N N (\I +C + d C- o"] o- d' Ln +C +C +C + OD C �9 C +C + C N +C + r-I LC� LS ] O n r d +C +C +C + C� C Q9 C +C +C +C N C d +C +C +C +C QQ C Ln L +C C� +C + �9 C Ln N 0- r +C +C +C + Ln C d' +C C- r-I ,-1 +C + �9 0-) L-, OD C- N N N +C +C +C + d' C 0-)r +C Q0 +C + Q9 CDC\I N Cam] C\I N +C +C +C + 0) 0) LS ] L N C +C + +C + Q9 CG C\I +C +C +C + 0) CDC Cam] ( +C + O r-I +C + r-I �I Cam] C\I r-I +C +C +C + C C Cam] C +C + CD N +C + N C\I N +C +C +C + N C +C rd U UQ0 Q0 � b N Ln N N o Q0 IT C7) � 0 0 0 . . •H -H -H 0 0 0 4-) 4-) 4-) ra co co co D ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q N 0 a N N 0 0 a -P v 14 R� H I a -P 8 'a 0 P� � � � - ,.,V( 0 0 o c� o 0 o ( CD CD CG CD CD C +� + + +� Q9 d-' _Nr' C'") N C CD CD CG CD CD C r-I CD CG CD CD C +� + +� +C +� + +� C� (\] G C- Ln CD CD +� + + +� d 0') r-I LC' N 0) OD C N N -I r-I CDC +� + + +� d-' 0)LS'� CD C� ] r -: N C\I N r- r d 0-) G'l C\] C\] C d d 0-) Cal r N O r-I I CD 0-) Ln Ln �-o L', Ln d-' o-) C +� + + +� + [- OD N �I OD Q9 [- C L[ 7 [- [- �9 d C n"] N OD Q9 O C Q9 OD L C� O OD O C- C +O + +O +C +O + +O + C C- C\] C 0) CD N 0- N N r-I +� + + cif cif Cry �I �9 � C CD Ln �c �a r + +�' +FI +Y' + +Y' Q9 O [- OD 0) Ln C L5� Ln L-� Ln Q0 L +-'+FI+-'+ +-' 0-) I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I 'd �- 0 Ln r-I vw N Q0 . Ln r--� m U [I [I [I 9: N LO �I (d LO Q0 0 0 0 0 o � o 4-) 4-) 4-) co co co a 0 ZD) co co E-HXX In Q N 0 a N N 0 0 a C— OD O� � , + +1 m -:P Q0 OD OD 0) OD r C C C, C C c +C+ + +C C C C U C c +C+ j +C C C r-I C C +� + +� +C +� + +� Ln 0) C C OD C C C C -I r-I C C C +� + + +� Ln C- OD OD OD Q9 Q9 L C C C C C C +� + + +� Ln �9 LC� �9 d1 C C C C C C C C C C C C C C CDC C C C C N N N C\I N N N C C C C C C C C C C C C C r-I r-I r-I r-I r-I r C C C C C C +� + +� +C +� + +� + C C C C C C C C CDC C C C C C C C� C C C C C C C C C C C C C C C C C N d LC7 Q9 Q9 C C C C C C C U . . U-7 .� F �F � � UN 9: [I [I [I o b 7v � o �4 o� 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � Fl� > CO -rl (D x ZD) x x x�4 > Fl� N In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U I �4 �4 co I a �4 v� o W � W � m • 0 Q � N U H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U Q o r W H o co 0 co co 0 0 co 0 (D � co N 4-) � U � 0 r�,' 4-J -H 0 f:� fIQ rl 4-J 0 �n r�,' 4-J � � 0 0 -Ci m m 0 U 4-J U U �� 0 Fl � -� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 U 1 r-I CO � x Q u I I o o N -T r, r- U � �I m I� �4 o Ln m U N m Q0 o 0 o N r-I W Q m o X -TI� N x f]Q x LO E-I I LO m F�omQ0000N 0 I co F4 0 0rx�� o 1 0 0 1 0 � rxx r (2� U U I I co -H -H I ,Q �4 4-J � U 4-J 0r1-H � + N N o Q0 m m 7v 7v rn r--� Q0 Q0 r--� 000NLnN N co di o r--� [- 7vor--�or-U-) o1omr-N bi -- 000 .H -H -H aa�x xx �XX�XX [- o co Q0 -T o . o N o [- m co Ln 7v o . . . o r--� o In Q rA V r0 V) . rl 04 j o 0 CC) o CC) rn m • LO [- o 0 a o m co r--� >1 Ln N 0 0 0 F N IH NoQ0mm7v 7v rn r--� Q0 Q0 r--� 0 0 o co 1-0co ;coo-To�[- -To�oC-In 10 �oomr-cam U al pqI 000 NIA Fl� > 0 x p)xx ►--i l k � 0 N 1-0 r--� o [- Ln �-b o Ln r--� . . . Q0 . or--�o1nr--�m o u��oo�o 'a . . . � LO . Uo�oLn�m al v 14 ro HI 0 0 0 a 0 ZD) NIA �5 �H -H� > 0 x p) x x ►milk � 7vr--�o Ln�-om o n o F� F� N • . . . . . . . o N 1n1nr--�oo Q01-0 or--�oo • m •• 000U-)r--�mor--� H z H b, ra �4 U 0 0 0 0 -0 -0 -0 0 H -rl Co co I ►--� � � H In Q a U] W L) z a ,o o LL W Rt W a W w a z J R CC LL .c L m E W v C� C� v r clI LJJ a •— E W r v v v > G7 � r � _ LLI v v � G7 r v J � E J � N C.0 CY] 00 cv E —j Ln C.0 cv] r N r N J J >� LO v_ 'CF J C U � > U (1] W J .0 � U ' co � J U J v o •� `= Q I x x._ E to a co w •_ a W .. L .. t� v r W 0 J p oD m Q .. L .. v r v LO ) co � 0 .L cc U cc U v a) m FL 0) 'U CL (n a v v v E U Q v v L. Q U) [U z U) w W F- LU m a a a z 0 V W �f) N � N r CO r r v v 00 r N r N I� L J J � Cc CL 0 E E m v M v U J O� N E v 0 () .E J v v v 0 r (U 0 CY) U) U) � 0 0 w� J 0) CQ � J v cY) v v 0 o Z J J o v 0 v 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 44 ft Lanes In Direction Of Travel: 2 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 80BLEDE70 XXXXX R3 Description: ATB2 80BLEDE70 XXXXX R3 File Name: ATB2 80BLEDE70_XXXXX_R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 22126 Luminaire Watts: 180 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 195 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 80BLEDE70 XXXX... 780 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... 585 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... 390 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... 195 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... 0 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... -195 -6 35 90 0 0 ATB2 80BLEDE70 XXXX... -390 -6 35 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft Total Number of locations: 7 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q Ln (7) (7) c Cl d' a) (r) C) Q0 r Ln r- N r LnC71d' lS) Ln 7-1 f Ln l9 [- G1 N d' Ln [ C� N C Ili [- r- Ln r- 7--� Ln [ +7 a) d' Cl-) C) C) r- d' Q0 a) + +1 7--1 71, cl) d' G) (7) r d' d' Ln lS) a) C) 7--1 Ln N 7--'1 7--1 Ln iY) d' Lf) Q0 [- L t d' [- a) (r) �-■� C� Cl-) d' d' Ln ° G) d' d' N a I dy Ln LC) Ln d' 'a N N a) r-I l9 r-I N dv N ca 11 11 11 '11� N [- 7v rd r— Ln m o o o CD r--1 0 4-J 4-J 4-J N 11 11 11 co co co o ZD) � Fl� 0 x ZD) x x aFl�X �XX In Q 0 a N N 0 0 HI rl -P 8 'a 0 �6' (n --� 0 k (n � 0-) C C3 ............ ... C� � C3 iYj (D l9 d' lS3 CO LC) CO Cam] r LC) C) 03 C3 7--'1 7---1 7-1 7-1 C) r CO �O CO +7-1 Cl-) +r d' +71 d' + �O C) r-1 Ln Cam] Ln C Ili LC) Ln d' + + d' d' C") (Y) C") Ln d' 71, Cl-) (Y) Cl-) LC) [ + �� +C3 �� + �1 Ln Cal Ln C Ili LC) �1 Ln r d' CO l9 Cl-) [- d' [-- d' r- C) l9 +p +C3 0 +p + LC) (3) C3 CO C3 7--'1 7---1 7--1 7--1 C3 C) r CO �O + �� +71 C3 iYj C3 l9 d' lS3 CO LC) CO Cam] r + �� +71 �� + LC) C� Q0 C) (Y) C) 7--1 C3+71 r- C7 71 +71 kN m r- N U [I [I [I W r- m rn rn CD 0 0 0 CD N CD 4-) 4-) 4-) 0 co co co 0 ZD) � � co -H > co co H X XFl� X X v In Q 0 a (D N 0 W a I >I -I 8 ra 0 d' d' ()) C3 ()) r r o r p..............a Cn +I +I d' +I d' +I d' +I +I d' C'' +I +I o r- 5 (D Ln LC) [-- d' a) 1 o I- r- C +I Ln +I +I Ln +I d' +I +I I +I + [- . . . Nd' . . . C� +I +I d' +I d' +I Ln +I +I Ln L( +I +I Q0 d' k-D Q0 r Q0 LC) N +I +I Cr) +I d' +I Ln +I +I Ln L-( +I +I o Q0 Ln N LC) o CO C C3 +I r-1 +I N +I CY) +I d' +I + I Ln L( +I +I Ln r-1 N d' d' (N C�') l5 G) [ r-1 Q0 0 0 0 . • ++ +�+I C3 7-1 +I +I Cl-) Cy +I +I [� C C3 C \ ] (n Cllj a) • +�n+ +�+C� +C3+I +I +I d' d' k-D r-1 Q0 r C) d' C3 d' Q0 C +� + +� +LC) +n + +O +r C� cl) • r71 cl) iYi C~J C�.� G) iYi Ln I- r-1 L� +n +y Ln Ln rd r-� N C a) Q0 (D Ln G 0 +4 Q0 Q0 Q0 +� + +CO +a) +� + +`n C� C3 d' Ln Ln k-D LC) r- d' [- l5 Cl-) 0 +71 +� +71 i +r +71 +7 +71 +r ....................................................... ,--� a co Cs �..� CO -rl F-A > m LO In Q cn Q0 ao ao ao Q0 cn Lam} d' L n +O+O+O+O+O+O+O+C 7-1 Q0 N Q0 o Q0 ao L n (n a L n C Ln + +7+ Q0 +p+C3+7+' Q0 Q0 .....+C o L n +o+o+o+o+o+o+o+c d' r— C) (X) Q0 ao Cal C ao I- dy L n +o+ [— +o+C3+71+ N dy o C") a r-1 Q +71 L n L n Cal N CD [mil C71) r- C L n r CD L n L n Q0 Q0 LC) CO L n r-1 d' ['r7 L ( Ln 0 N Cy Q0 C) +O+ Q0 +O+C3+O+ I-- Cal [- (n C +O+C T d' cY) +O+ G) cl-) +O+C3+O+ LC) Cy Q) d' L n C L n C +O+C n a [� ['r7 +O+ r-1 d' +O+C3+O+ (Y) Cy L n d' L n Q d' r +O+C � • rl . ri al ,--i a N 'd 0 ro P*h rd U v �NO3 r— Ln m 0 0 0 CDr-�o��4-J rd co co D 0 big XXFl� b � -� co co alFl�X �XX In Q C) 'r 2 C3 + C,-)C,-)C'r) C3 C) M............_..( � C) + C3 C3 C3 C3 C) G) C3 C3 C3 C3 C) C�] + �� C3 +C3 G) �� r- + d' [ N C\] N rd r-1 r-1 r-1 r [- Q0 CO d' C� CO (r) CC C� CO l9 Q0 L + + N C\] N C�i N �1 G (7) Ln Cr) Q0 L C) k-D Cr) Q0 r-j L fY) r + �� +71 �� + d' CO C3 C3 (Y) C3 clr) C) [- d' L l9 +71 + �� + � C) k D G) C3 =d LC) C�J d' N C) C3 03 +71 03 Ln Ln G) Gl G) N G) [ L + �� +71 �� + [- Ln 5r� CO d' CC C� CO G) [ r ■ *h � m ra m } LO pl Li-) • N [- N �......................................................... CC) LOm ro CC N o 0 0 0 (D N C) 4 co co co a 0 Z3) v(0r,r,X F� (1) x Z3) x x HF� X XF� X X In Q 0 a cr7 Lv CX3 C) r 1 g)L .............. C) 0 . +0 + 7-1 7-1 . +0 (Y) 7--'1 . +C3 Ln 7-1 . +0 4. + d' r 7-1 r . +0 + Ln 0 +0 cn l9 + [— 0 +0 cn [-- 0 +C3 d' 03 0 +0 d' + 4 r- 0 +0 + d' 0 +0 0 + 0 +0 C3 +C3 0 +0 0 + 0 +0 + Cal 0 +0 + cn 0 +0 (Y) C3 +C3 cn 0 +0 + cn 0 +0 + C�] 0 +0 Cam] + N 0 +0 Cam] (Y) C3 +C3 C Il i cn 0 +0 cn cn +1 cn c 0 +0 + cn 0 . +0 0 + 0 . +0 C3 . +C3 0 . +0 0 . + 0 . +0 + N 0 +0 + N 0 +0 (Y) C3 +C3 cn 0 +0 + cn 0 +0 + d' 0 +0 [� + Q0 0 +0 C3 k-D C3 +C3 0 +0 cr7 + 0 +0 + Cam] C3 +0 C3 + r-1 +0 r'1 r'1 +C3 7-1 +0 7-1 + 7-1 r +0 + C) 0 +0 + d' r-1 +0 lS3 r'1 +C3 0 3 r-1 +0 + l9 7--1 r +0 + r-1 rH Q0 7--1 CX3 r 1 r 1 Cam] C C� r-1 r +P +© +P +�--' +P +© +P H H } L7 m . Q0 4-J o rn UN o N 0 0 0 0 0 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 >Fl� X F� X X X N 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 44 ft Lanes In Direction Of Travel: 2 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers4 p3cl540-120-277v tcm201- Description: ERS4_P3C1540-120-277V File Name: ers4 p3c1540-120-277v_tcm201-95629.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 20600 Luminaire Watts: 222 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 195 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers4 780 -6 35 90 0 0 _p3c1540-120-27... ers4 585 -6 35 90 0 0 _p3c1540-120-27... ers4 390 -6 35 90 0 0 _p3c1540-120-27... ers4 195 -6 35 90 0 0 _p3c1540-120-27... ers4 0 -6 35 90 0 0 _p3c1540-120-27... ers4_p3c1540-120-27... -195 -6 35 90 0 0 ers4 p3c1540-120-27... -390 -6 35 90 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft Total Number of locations: 7 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0-� l9 CO C3 C3 r 1.r, ('� x�.............f + �� +r �� + L-C-) C) .-d Co d' l9 G) C3 7-1 C- [ + + (r) CO CI-) L Lf-) Co G1 C3 C' r d' Ln + +7 ,-1 Co k-D N d' [ d' Ln lS3 CO C) + + +7 C) Q0 r-- N r- r- d' Cllj C3 Cr [ Cr) d' Ln lS3 [- [- CO [ + �� +C3 �� + Ln Q0 7--'1 iY) d' Lf) Ln l0 L Q0 r�1 d' k-D L n (N -P 0-) r7V r7V Ln K . . . . . . :j 0 +P + +P +C) +P + +P -� d' Q Ln C",j C3 N L d' Ln Ln LC) Ln Ln Ln ` a I Ln l9 lS3 l9 l9 [ N lS3 lS3 Lf) N r 1 L �� l9 G) G) C3 C) c r-1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I 'a V I I I I I I I I I I I I I I I I di m G) r-� co r- b' Nmr --� ilk 11 11 11 L o di Li-) ra o o o co co co o ZD) CO Fl� 0 x ZD) x x aFl�X �XX In Q (N 0 a N N 0 0 HI -P 8 'a 0 G) ( — CI-) C3 U } (a)Cam] O� ........... �� 4� + 4� L(-) O) CO G) G f 7--1 r'1 7---1 CO C3 7-1 d' L G [ �O +7-1 +r +71 + �O l9 d' C3 r— Q0 [ 7-1 d' C3 r— cn [ Cam] [ CO c n r-1 d' a) Cr3 cl-) c n r— Cr7 r Cal [ CO C, I a) cn cn c n d' r-1 d' Cr3 cn r Cal Cal [ + + 7--1 d' C3 r— [ Q0 L7 cY7 d' Q0 C3 k-D r— Ln Q0 [ d, + �� +C3 �� + r-1 G) C3 Q0 7--1 7---1 7---1 CO C3 d' C3 G [ �O + �� +71 d' Ln Q0 O) G) CO O) C) c G) r + �� +71 �� + d' C3 C") O) r-- C;) C") Cam] L7 L N i LSj O� ISM r-1 i] r► U [I [I [I W r— 00 �1 0 0 0 �1 m CD 4—) 4—) 4—) 0 co co co 0 ZD) � � co -H > co co H X XFl� X X In Q 0 a (D N 0 a I N >I -I 8 ra 0 r-1 Cam] Q0 G) d' co C3 C ] k..............C` C� KZZI +I +I I d' d' +I +I Ln +I +I Ln LC +I +I Ln 5 Cam] =- CtiJ Q0 C3 Q0 d' Ln LC Go l5 0 C� +I +I d' �) +I +I Ln +I +I Ln LC +I +I r-1 d' (Y) r-1 d' Lf N a Cam] +I +I d' d' +I +I Ln +I +I Q0 LC +I +I Go clr) Lf) d' o C Ln Go [-- Go [- C (3 +I +I No(Y) +I +I d' +I +I 0 Ln LC +I +I l9 C) C3 d' C) l5 . +71+ +I +I +I +I +I +I d' C� [-- lS3 � r'1 • • • (D Go C) G • (n Cr + + [— +71+C3+I 00 [-- [— +I +I +I Q0 Cy Go is Cam] [— oo C) l9 • +�+ ++C�+C3+I +I +I C3 Cal Lf) (7) Go C~ Ln 7--'1 r-1 r-1 LC +�n r-1 r-1 C3 d' Cam] 0 iY) cY) Ln r-1 k-D • o. 03 r-1 r- +� + +71 +9) +�o 03 r-1 C3 C3 Q0 0 [— Go (Y) Ln Q0 l5 . . . . +CO + ++9' . +9 + . . +CO +a (D C3 k-D (D tY) cY) [— Q0 Q0 l5 Q0 r- C:::...k........................................................ I I I I I I I I Wig � o LO I I I I I I I I I I I I I I I I • I I I I I I I I I I I I I I I I .ri E-A > m In Q N ao 7-1 ao ao CD o) (n Ln Lam) Q0 Ln Ln Q0 Ln Ln Cam] a3 a3 r— ao ()) co CD c)) d' c)) a3 C'' ao a Go c c c r + ++1 +r...+r Q0 C7) l9 C7) Cy C) r- --1 C7) a Cam] r +Q +C) -1 +7 -1 +7 +r-1 +r-1 +r �o Ln 03 �D Ql ao (D N a 0') r +O +O +C3 +71 + +71 +r r— Q0 [— (X) (X) Ln o N r N +O+ N (D 711 Ln co C71) i0 Cy (D +O+ +O+C3+O+ (D Ln [-' C�') co +71 L( 711 Ln ao G) 7-1 o a + +71 �o Cn Ln Cy [— r— ao Cy ao [- +O+ +O+C3+O+ +O+C L n Cn Go (n d' lS] LC) (D Q0 a3 Cam] C [— l5 R 1 V L C) d' (n d' +�+ +0+C3+0+ [�- Cy [— d' L n [- Ln C +0+C 0 C) 7--1 d' LC) r-1 LC) 00 d' N 7--1 Cy Ln C a +O+ +O+C3+O+ +O+C � al • rl . ri .--I a I I I I I I I I I I I I I I I I I I I I I I I I .k......................... I I I I I I I I N I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I P*h CZ] CY) r-I c� Ln r— C� m 0 0 0 co co co D 0 ZD) biCO r, r,XXFl� �4 -H -H b � co co In Q r 1 C3 C3 C) C3............ C3 d' C3 CO lS] C�] 7-1 7--'1 C3 C) C�] d' (C) C") 7-1 C) c CO Kzl, G) 7--'1 C") E- d' (7) C3 C Ili 7---1 (3) [ l9 l9 Lf) d' + + d' co Cr) G) co r'1 a) Q0 lQ [ ::Il ` + + C3 C3 [— C3 C3 c'j C3 r 1 G) E- is-7 Q0 G) d' Lf) C) l9 C C3 N 7--'1 7--1 CO f . +71 . . + +71 . 1 +7 . +71 + . . +O G) iY) r— Q0 [-- LC) cl) L n L n ` N r + �� 1 +7 �� + N C' ' r-1 C3 CO f �� [— CO C3 d' C) CO cl) (r) cl) C'') r CO C� [ ilk LO ra N L) [- U . . Q0 ... N p1 N LO N ...................................................... rn oo -T ro Co m C) 0 0 0 (D N C) 4 co co co (1) x x x HF� X XF� X X LO H In Q (N 0 a --1 Q0 Q0 ( C-) 74 7 -1 r'1 7 -1 �' i:..:: ............... r-1 r-1 r + + C3 d' 7 -1 L) 7---1 Cr) 7 -1 C) c 7 -1 G) C3 r-1 7 -1 7 -1 7---1 7---1 C3 7 -1 G) r C) + + 03 C3 C3 G) C3 a) C3 Q0 C3 L C3 C) Q0 C3 Q0 C3 IC) C3 d' C3 d' C) + + d' C3 d' d' C3 CY) C3 C� C3 C� C� C) N + C, I N C'j N +1 N [ C3 C3 C3 C3 C3 C3 C) + +N C3 N C3 CIli C3 N C3 N C) C3 Q0 C3 k-D C3 Q0 C3 C) + + C3 C3 C3 o 7 -1 7--'1 7 -1 =d r [� o N 7 -1 (Y) 7--'1 7 -1 =d r G) 0 1� V L7 N 4-J VCY} C11 N N [I [I [I o � 5 o �1 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 > Fl� N In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U I �4 �4 co 'Zil I a �4 v� o w � w aim • 0 Q � N U H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U Q o r W H o co 0 co co 0 0 co 0 (D � co N 4-) � U � 0 r�,' 4-J -H 0 f:� fIQ rl 4-J 0 �n r�,' 4-J �I di N N � � 0 0 -Ci m m 0 U 4-J U U �� 0 Fl � -� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 U 1 r-I CO � x Q u I I o o N -T r, Ln U � �I m �D4� I� 7v N m I �4 o Ln rn U N m Q0 o 0 0r--� W Q m o X CC) I� N x F-AF LO LO rn F�omQ0000� 0 I co F4 0 0rx�� o 1 0 0 1 0 � rx rx (2� U U I I co -H -H I ,Q �4 4-J � U 4-J 0r1-H � + N Ln7vLO7vmrn [-mmr--�co[- o 1 o N m N [— 7v N N cor--�Q0r--� o�oNdIN bi -- 000 .H -H -H aa�x xx �XX�XX r- m rn rn o N o N o CD Lam. In Q rA V r0 V) . rl 04 N LO • CC) [- . Ln a Lnr--�N m 0 a p 7vorn Ln >1moo co 0 0 0 F N IH ooNm� co big—nm��� o oNoco U al pqI 000 NIA Fl� > 0 x p)xx ►--i l k F� 1n o rn co 7v N1-0 r- oo m o • • Q0 N rn oc�oN1nc� bi m o co N o . . 1-0 'a . . . rn L-0 . 0CDNCD N[-cam al v 14 ro HI 0 0 0 a 0 ZD) NIA > 0 x p) x x rn r-Q0Noornr--�o o r--� o Un o N c� • m 000mooNor --� o 1n 00 r--� N o U-) m rn [- oNoo Q0N • 000r--�Nor --� H z H b, ra �4 U 0 0 0 0 -0 -0 -0 0 H -rl (0 I ►--� F� F� H In C v E U Q a U] W L) Z a ,o o LL W LO W a W w a Z J o v N o cc cc LJJ 0) J v v C� U Q v v 4- 0 0) cc f+ 'o L a E W v cv cce) > N cv3 m LJJ a v v E r r •— v W v v .� v LJ.J v J cY] v v v J (.0 r t� m 00 p LL7 J co J —j CD N N J J v p p v U v 0 v J C� U (1) W J U ' J .0 E co U J .. t� Q v N •— `= I E o X L) x �I X r- to W v •_ r v i W r U �3 W �3 L J L LO .i .. p .. ) ♦+ 0 co Q Q CL 04l w a 2 t) Q 2 t� v 0) .L cc U cc U a) _0 W 0 (n W a) a m F a 0 a 'U Z CL 0 (1) a p V� W v � v .E U Q v 0 Q U) z N IqT 0 0 U (1] J U) U) m x U U c E m _ c E �--� 0) m a--' Z) o � Q .L) C�. 0) v m 70 U) J U) U) 0 () .E J vv v v � v v I�t LO 0 o c4 Ln 0 r CY) U) 0 0 w LL J JiD v _0 � o CY) 0 � � v C L o 0 CL � o o v Cc v cc , cc v U J Q� Z J J 9 v IqT v 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r .............................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Roar, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 80BLEDE70 XXXXX R3 Description: ATB2 80BLEDE70 XXXXX R3 File Name: ATB2 80BLEDE70_XXXXX_R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 22126 Luminaire Watts: 180 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Roar 1: 250 Label X-Coord ATB2 80BLEDE70 XXXX... -500 ATB2 80BLEDE70 XXXX... -250 ATB2 80BLEDE70 XXXX... 0 ATB2 80BLEDE70 XXXX... 250 ATB2 80BLEDE70 XXXX... 500 ATB2 80BLEDE70 XXXX... 750 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0 a N N 0 N ] d Ln CDL-[ 7 L 7 L-[ 7 l] L- 7 +P+ +�+C'+P+ +P+ +�+ r-I L� C� d' L?� LQ ]� [� d ni d LC) Ln Q0 QQ L Qa r— �a �a �I o Ln i 0_) � LC) Qa o� o o� +P + +F +c +P + +P + +� Qa OD O-) o OD Qa L r� -:v LC) C— o 0') O +p +1 +p +] +p Q9 Ln N d �I C- r-) d+ d+ LC) Q9 OD O �I �d +p+ +�+c'+p+ +-'+ +F+ d" OD N o) Ln C- o-) C- o-) di di Ln r� +p+ +�+C'+p+ +p+ +�+ � �9 �i N O� � c N o-) d' Ln OD O +p+ +�+C'+p+ +p+ +�+ 0-) (r) +P+ +�+C'+P+ +P+ +�+ O 0-) C-- N �d d N N N C\7 o-) -:v Ln �,9 �o L +P+ +�+C'+P+ +P+ +�+ 0') O �I N Q9 0') N C- OD +P+ +P+ +�+ [- L +P+ +�+C'+P+ +'P+ +�+ �I N ('") 0-) Ln d +P+ +�+C'+P+ +P+ +�+ -P C� OJ 0') CDO I--L N N N C�7 N N cq N N +P+ +p+�'+P+ +P+ +�+ N n (Y- n r N +P+ +�+C'+P+ +P+ +�+ OD 0') C\7 N O Ln +P+ +�+C'+P+ +P+ +�+ C9 N OJ OD Ln +P+ +�++P+ +P+ +�+ I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I r- Q0 �r- r- rn 0 0 0 CD r--� o 4-) 4-J 4-J co co co 0 ZD) � � (D x ZD) x x aFl�X �XX (14 In Q 0 a N N 0 0 HI -P 8 'a 0 o� r� � LS ] LS ] LS d1 0-) (\I C) 0-) 0-) OD [— Q9 O� (\I ('') n') N O � L 7 --I L,D C) O� O 0 [� O 0, C) [— L_[ 7 O-) C) C) [— LC) Q9 Ln L +P+ +�+C'+P+ +P+ +�+ 0-) d1 d1 d1 d' d1 d1 d1 d1 C'"] [ +P+ +�+C'+P+ +P+ +�+ 0-) 0-) W d1 W d1 0-) C) [— L �3 �7 (Y) �7 �7 N +P+ +�+C'+P+ +P+ +�+ �9 Ln LC) Ln d [ N N +P+ +P+ +�+ N �I —1 �I C) O Q9 +P+ +�+C'+P+ +P+ +�+ N �I —1 �I C) O Q9 N (\I +P+ +�+C'+P+ +P+ +�+ �9 �9 Ln LC) Ln Ln d1 N o) [ N N C 7 N N �I +P+ +�+C'+P+ +P+ +�+ 0-) d 3, d1 0-) [� L 0-) 0-) (Y) 0-) 0-) N +P+ +�+C'+P+ +P+ +�+ OJ OD OD 0) L +O+ +O+C'+O+ +O+ +O+ [— Ln OJ C) C) [— LC) Q9 Q9 �,D [— [— [— Q9 Ln L +P+ +P+ +P+ +�+ LC) d1 r-I �,D C) O� O 0) [_ O 0) C) 0 O [� [ d1 N C) 0- OD LQ OD N n') n' N C) +p+ +'+r{+-'+ +-' +'+ t ti di N N Q0 �+ di �I CZ] .0-. 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C d d C' + +� + + + +1 + +� + +� Ln -:v �,o o-) �o Ln �[ 7 I �0) —i N 0_) 0-) N 7--I C 0-) 0-) d' d d d +1 +1 +1 +I +1 +1 +I +1 +1 +I �-o i— Ln —i o) �+ � � r- 71 O� �i N Ln C— 0-) C d' d d d 7--1 O OD ('') Cal O C) O: CD —i -:ri�I O: C 7 0-) d' d -:ri Ln +1 +I +I +I +I + +1 + +1 +I r— OD O-) 0-)Q0 0-)�s � Ln o- r-) (dD 7--1 -:ri N o"] n'] d1 Ln Ln LC +1 +� +1 +I +I +� +I +1 +1 +I Qo r+ o-) Ln o-)o oD i- N Ln 0) C''] OD d-' C) d-' Ln C' N (-\j C''; 0-) Ln Ln LC +� +� +I +I +I +� +I +1 +I +I Qo 0) r— o) Ln o j� 7--1 (y r— Qo CD ��o 1 C7 N -:ri Ln LC +1 +1 +1 +1 +1 +1 +1 +1 +1 +1 C3 0-) Ln C) . • O N d1 r' +' + +O +O +I +I +I +I +I +I Ln 7--1 CD C) C9 0-) N C 7--1 Ln 7--1 d' �9 C— +�+ +m +F+ +' +1 +1 d 0) C) d' C— 7--1 r-i C9 C) L CD CD (Y] 0-) —I 0-) LC 4 +0+C)+�+ +N+ -F 0') C-- 0) 0) C�] O� �S +� + +°� +° 4 + +� + +N +\ C9 C9 LC] N OD d —i C9 OD C CD 1 7--1 —i CD -P O CD �1 (Y] �1 O N [' • C-- Ln L �I N C�7 N �I r� �3 11 o o 7--1 (I, o� CD LC) OD r— 0-)�1 r— �s r� CD O: • �1 �i �1 � +�'+ +'+ri+y+ +-'+ OD r— 0) r-) r— r— �s Ln r-- oD o- r+ r- o Ln �-o o r— �s CD G +p +1 +p + +p + +' +C 1 1 1 1 1 1 1 1 1 1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I 1 1 1 1 1 1 1 1 1 1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I v �LO vLO a� -P o A [ .rl N > •rI C-A > m v In Q 00 M +O +O +O +O +O +O +O +O +O +O [- M QQ [- QQ LS j Co M +o +o +o +o +o +o +o +o +o + N (n d" LS j LS 7 + +o + +o +o +o +o +o 4p + i c'� d" LO Ln7 QQ LO +O+ +O+C+ )+OI +O+O+ Q0[� ff) (n QQ( i M d" d" LO Q7 [- [- [- r- +O+ + +O+ +O+ (r7 d" LO tq o� o� CT +O + +O + +O + Q0 Q7 �d C' (n cY7 d" LO Q7 O �d LS j d" O 00 LC) CY) cY7 d" d" LO QQ CY) +O+ + +O+ +�+ LS j 00 LO Q7 0� d" O d" Cri (n d" LS j � LO N [-- [� N N (n (Y) d" O +O +O +O +O +O +O +O +O +�I + +O+ + +O+ +O+ CY) O N d" 00 L[ 7 O CY) �I C' N C' N +O +O +C� +O + +O + +O + () C' 4J O �d c"I (n LO j QQ N C' N c"I N C' N C' N C' V N d" LO QQ[� � [�QQ -t >1 NC' N c"I N C' N C' N C' •+O+O+O+ •+p+ •+p+C) a +O+ N c' al (D N • ri .r 4 v a ra rd G� . . . . . . . . . . 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CD r— . l9 r-� N U [I [I [I o 0 0 0 CDr-�o��4-) co co co a 0 ZD) v (0 co co E-HXX In Q 0 a (D N 0 0 a C) 2 C) C C) O C) 0.......... +P+ +�+C'+P+ +P+ +�+ d" Ln Q9 I-- OD 0') C) C) 0') C) C) C) C) �I C) +P+ +�+C'+P+ +P+ +�+ Q9 O� i �I N C)CDC) +P++P+ +op+ +�+ [— O C) �i (] Ln 0-) +P+ +�+C'+P+ +P+ +�+ OD C) —i 0-) Q9 d C) C) �I —i �I � 7--1 +P+ +�+C'+P+ +P+ +�+ [— OD 07 C) r-i 0-) -31 -31 0-) C) C) —i �I +P+ +�+C'+P+ +P+ +�+ L[) Q9 [- OD 0')O� [ C)CDC) CDCDCD[ +P+ +�+C'+P+ +P+ +�+ 0-) d d' Ln Ln Ln C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ N N C7 0-) 0-) 0-) C) C) C) C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ N N N C7 C\] C\] C\] C\] C\] C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ �I C7 C\] C\] C\] C)CDC) CDCDCD[ +P+ +�+C'+P+ +P+ +�+ 7-I C\] C\] C\] C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ �I �I C\] N C) C) C) C) C) C) C) C) C) +P+ +P+ +P+ +�+ �I Cam] N C)CDC) CDCDCD[ +P+ +�+C'+P+ +P+ +�+ 7-I 7-I C\] N C) C) C) C C C) C) +P+ +�+c'+P+ +P+ +� CI C�] n') 0-) 0-) 0-) C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ m 0 r--� 'a 0 v► N U Ln�mm 9: 11 11 11 0 b Ln �-o �4 o� 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 Z � 0 •� � � > CO > Fl� N Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r .............................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Roar, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers4 p3cl540-120-277v tcm201- Description: ERS4_P3C1540-120-277V File Name: ers4 p3c1540-120-277v_tcm201-95629.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 20600 Luminaire Watts: 222 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Roar 1 : 250 Label X-Coord ers4 _p3c1540-120-27... 750 ers4 500 ers4 _p3c1540-120-27... 250 ers4 _p3c1540-120-27... 0 ers4_p3c1540-120-27... _p3c1540-120-27... -250 ers4 p3c1540-120-27... -500 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 U00 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q N 0 a N N 0 +P+ +�+c'+P+ +P+ +� LC) OD o-) LS ] C-- C— O cif +P+ +�+C'+P+ +P+ +�+ d1 r-I LC] OD d1 O 0')0-) LS ] L,o �9 +P+ +F+C +P+ +P+ +�+ O Q9 L,D Q9 Ln d 0-) d1 LC] Q9 OD 0') +P+ +�+C'+P+ +P+ +�+ Q0 OD LC] r-I 0-) 0-) [ N o-) o-) d' Ln Ln [— OD OD [ +P+ +�+C'+P+ +P+ +�+ d o-) Ln O d1 d1 Ln N C— CN 0-) di d1 �9 C� +P+ +�+C'+P+ +P+ +�+ 0-) O C o-)LS ] d N N n n ] d Q9 [— +P++P+ +P+ +�+ O �I L,D �I n N N n n] d Ln Q9 L +P+ +�+C'+P+ +P+ +�+ CN N N C") cq j, d1 d1 LS +P+ +p+C'+P+ +P+ +�+ O d1 C— OJ r-I 0-) d1 0-) 0-) N N C\7 +P+ +�+C'+P+ +P+ +�+ d LC] C— C� CD�I N C\7 N N C +P++P+ +P+ +�+ O d C-- C9 Ln C9 +P+ +�+C'+P+ +P+ +�+ 0-) 0') C\7 N O G� L CN N N (Y] 0-) cq cq cq N +P+ +p+�'+P+ +P+ +�+ CD d OD �l OD r— C— r— Q +P+ +�+c'+P+ +P+ +� cq r— cq 0, d1 d ni -:v Ln Ln Ln Ln L +P+ +�+c'+P+ +P+ +� LC) 0-) LC) CD 0')r— [ 0-) �a C-- C— C— C— +P+ +�++P+ +P+ +�+ co r-� N Ln N o N Ln N rn rn rn IT C7) r-� 0 0 0 co co co 0 ZD) � � 0 x ZD) x x aFl�X �XX M In Q 0 a N N 0 0 HI -P 8 'a 0 C) 2 o) (Y-) N � Ln � Ln +�+ i+N+ +N+ +N+ Q9 Q9 C) LC) 0-) Q9 c� 0-) Ln L ci) I_[ ] C-- �9 �9 Q9 l +C+ +'+r +�+ +Y-'+ +F+ �I 0 OD C) d1 �I ('\1 C� O C) C) +CD+ +p+ri+y-I+ +y-I+ +�+ Q9 N Q9 �I 7--j -P Q9 LC Q9 Q9 I_[ ] +P+ +�+C)+P+ +P+ +�+ C) -i 0') Ln O� 0-) 0-) C d' C 0-) 0-) 0-) N +�+ +�+C)+P+ +P+ +�+ �-Q Ln 0-) C) OD [ N N N N N �I +P+ +P+ +�+ N Ln Ln o-) o) d +C)+P+ +P+ +�+ �I d1 d' N �9 N N N C7 C\] �I +P+ +�+C)+P+ +P+ +�+ �d d1 d' N Q9 N N N N C7 C\] �l �l � � + -+ +�+C)+ .+ +.+ +�+ N 3, Ln Ln rr) (-\i o) �-o -P N N C7 N �I +P+ +�+C)+P+ +P+ +�+ -P i� 0) QQ 0-) OD [ N N C 7 N N �I +P+ +�+C)+P+ +P+ +�+ C) -i � Ln O� 0-) 0-) d' C 0-) N +P +1 +p+C)+P+ +P +1 +p+ Q9 N Q9 �I 7--j -P Ln �9 L,o �9 �9 �9 Ln Ln �I OD C) d1 d --IN C- O 0') �i C) C) +P+ +p+ri+�+ +�+ +p+ Q9 C) LC) rr 0') Ln L 0')Ln C-- �9 �9 Q9 L +Y-'+ +'+�\i+N+ +N+ +N+ N (5) 03 l9 CD M �► U [I [I [I w CO N -- �— 0 0 0 CD N o 4-) 4-) 4-) 0 co co co 0 ZD) co -H > co co H X XFl� X X In Q 0 a N N 0 Qa 7--] m r— C) C) �d r) d d1 d d Ln +I +I +I +I +I +I +I +I +I +I C) 0) 0) Qa OD � o: r-I OD N I-- [— C) r-I ni ni r i d d1 d LS ] LS ] L( +I +I +I +I +I +I +I +I +I +I 7--1 o-) -3, Ln �-a 0) r— C) G Ln C) I-- OD d r— (Y N d -31 d Ln Ln Lc +I +I +I +I +I +I +I +I +I +I C) 7--1 o-) Ln o- d (` O� d C) -:v N Ln (y �I N 0-) d' -:v Ln Ln LC +I +I +I +I +I +I +I +I +I +I LQ Ln C) OD O C— OD r C` N L57 d1 O N C7 0-) d Ln E +I +I +I +I +I +I +I +I +I +I ,� LC) ,� o� o Ln c3 C) � 0) Qa d Qa 0) �s L{) • �I �i N d1 d1 � +� +I +I +I +I +I +I +I +I +I —i - OD d1 OD 0 d �9 d1 O) d N C3 Ln 0-) . . 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C) +P+ +�+C'+P+ +P+ +� [- Lf) Lf) d, o-) o-) o-) N N C) C) C) C) O C) +P+ +�+C'+P+ +P+ +�+ r O� C�- LS ] d+ C �I C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ C- -1 0') Q0 LS �I � -1 C) C) C) +P+ +�+C'+P+ +P+ +�+ -P r OJ d' OD O C- N N N -1 � C) C) C) +P+ +�+C'+P+ +P+ +�+ dV N C) I-- N [- d 0-) �I 3 7 N N �I +P+ +�+C'+P+ +P+ +�+ 0-) N � j, O 0- C- L -P d n') n' N 7-1 � +P+ +�+C'+P+ +P+ +�+ N OD Lf) C) -:v Q9 LC) LS ] Lf] LS ] 0-) N +P+ +�+C'+P+ +P+ +�+ OD N C7 OD C) C- Ln �9 C- C-- �9 �9 Lf) d' ['i +P+ +�+C'+P+ +P+ +�+ Q9 C- N C7 C) Q9 Q9 C- C) L C9 OD OJ OD C9 Lf) +P+ +�+C'+P+ +P+ +�+ N N ('') C- OD 0-) C- O 0') 0) OD O C- C9 L +�++P+ +P+ +�+ d" O N OJ OD �I -1 �I C) OD d 0-) Lf) d' -:PC) C) N d-' Lf) Lf) Lf) -J' 0j) N � Qa Qa N r— r— c 7--1 Q0 O-) r— r— Lf) 0) Lf) C-- C9 C— C9 L OD —1 r— 0') OD 0-) - �a O-) r— o - OD - OD +P+ +�+C'+P+ +P+ +� 'a U ._. CD 0 l9 r-� m U [I [I [I b Q0 co 0 0 0 0 CDr-�o��4-) co co co a 0 ZD) v (0 co co E-HXX In Q N 0 a (D N 0 0 a Ln Ln C) 2 C) C C) O C) LO.......... +P+ +�+C'+P+ +P+ +�+ o-) d' Ln �,o C— OD OD OD C— [ C) C) C) C) O C) +P+ +�+C'+P+ +P+ +�+ 0-) Q9 C- OD O 0')O O� [ C)CDC) CDCDCD[ +P+ +�+C'+P+ +P+ +�+ d" Q9 OJ 0') CD OD [ C) C) C) C) �I C) +P+ +�+C'+P+ +P+ +�+ d" OD C) �I r-1 C) C) C) —i �I 7--1 C) +P+ +�+C'+P+ +P+ +�+ LC) C— 0') —i N (\1 C) 0') OD [ C) C) —i �I C) +P+ +�+C'+P+ +P+ +�+ Q9 0')C) C) OD O C— O C) �i �I C) C) +P+ +�+C'+P+ +P+ +�+ Q9 OJ OD Q9 Ln L C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ LC) Q9 C-- Q9 -:v C) C) C) C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ Ln Ln Ln Ln d1 d1 o-) o-) o-) [ C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ -P n n') 0-) n N C)C) C) C) C) C) +P++P+ +C+ +�+ 0-) N C7 N N N CCD) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ N N C7 �I 7--1 7--1 C) C) C) C) C) C) C) C) C) +P+ +P+ +P+ +�+ O CDC) CDCDCD[ +P+ +�+C'+P+ +P+ +�+ 7-1 7-1 7-1 r C) C) C) C C C) C) +P+ +�+c'+P+ +P+ +� CI C�] C7 N 0-) 0-) C) C) C) C) C) C) +P+ +�+C'+P+ +P+ +�+ 0 co {1r} 1� 'a 0 v► U Ln � N N 9: 11 11 11 0 b Ln N � �4 o� 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 Z � 0 •� � � > CO > Fl� N In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U I �4 �4 co 'Zil I a �4 v� o W � W � m • 0 Q � N U H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U Q o r W H o co 0 co co 0 0 co 0 (D � co N 4-) � U � 0 r�,' 4-J -H 0 r--� LnmNrzrIQ rl 4-J 0 �n r�,' 4-J 0 0 -Ci m m 0 U 4-J U U �� 0 Fl � -� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 U 1 r-I CO � x Q u I I o o N -T r, Ln U � �I m �D4� I� 7v N m I o �4 o o 1n U N 7v l9 0 0 o N W Q m o X CC) I� N x f]Q LO F-Ao rho'TQ0000N 0 I co F4 0 0rx�� o 1 0 0 1 0 � rx rx (2� U U I I co -H -H I ,Q �4 4-J � U 4-J 0r1-H � + N rn rn rn cor--� N 7vrnr--� UnNo 000NLnN r- r- rn r- Q0 rn 7v r--� r--� 7v r--� 7v o 1 o N � N bi -- 000 .H -H -H aa�x xx �XX�XX coN� o N o Lnr-7v o r--� o In Q rA V r0 V) . rl 04 N 0 rn CC) �-o o m [- a 0 a o co >1 o 0 0 0 c Fl� X N IH rnornooQ07v o r--� 1n N o o1ocoL-0co co rn rn m� co �-T����� 1 o o U al pqI 000 NIA Fl� rl > 0 x p)xx ►--i l k � 0 Q0 � o . . . o CO . o � o Q0 � m o u� r--� r--� o 1n [- o • r--� CO 'a . . . o r- . UoT--�o�T--�c� al v 14 ro HI 0 0 0 a 0 ZD) NIA �5 �H -Hrl > 0 x p) x x ►milk � 0 �n c� r--� o o 7+ co 000U-)r--� or--� o m 1nQ0r--�oo o or--�oo •cam • . . . . 000U-)r--�mor--� H z H b, ra �4 U 0 0 0 0 -0 -0 -0 0 H -rl Co co I ►--� � � H In Q a U] W L) Z a ,o o LL W LO W a W w a Z J R CC LL .c L m E W v I` v L7 v N N LJJ a E W r v v v v � _ LJ v v v J CY] v v v J � E E J p a7 LO �C3 N G7 E LO JLocle) N N J > J � v 00 p cle) p v 0 U (v � C U � > U (1] W J .. o tom] ._ U) E� m c U) w .0 m �F •- ._ .� a Q E ° Q W U '� E Q L .. t� co X x X v r W 0 J m p °° °° Q J W C� L .. �* r L) v N o 1�t LO r co � 0 .L cc U cc U v a) m FL 0) 'U CL (n a v v v E U Q v v L. Q ai z U) w W F- LU m a a a Z 0 V W 0 ;t �LO N LO 0 0 U (1] U) m x U) -�ecc [� m � E (D � �I U) U) E v 0 () .E J v v v ao U) N 0 o r CY) U) U) � 0 0 w� J C7 CQ � J v (Y) L. v v 0 p Z J J o v 0 v 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r .............................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Roar, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 80BLEDE10 XXXXX R3 Description: ATB2 80BLEDE10 XXXXX R3 File Name: ATB2 80BLEDE10 XXXXX R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 30489 Luminaire Watts: 274 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Roar 1: 240 Label X-Coord ATB2 80BLEDE10 XXXX... -480 ATB2 80BLEDE10 XXXX... -240 ATB2 80BLEDE10 XXXX... 0 ATB2 80BLEDE10 XXXX... 240 ATB2 80BLEDE10 XXXX... 480 ATB2 80BLEDE10 XXXX... 720 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q T 0 a (D N 0 +� + C�) d" QQ d" QQ aJ m aJ [ O QQ a) , d d" O Ln QQ [-- o� C C � . q . +o+o Lr 7 QQ O M —I M d" c +� + + +� + +� O QQ N cI m O [— C, Ln t0 [-- O t9 C O O N d" Ln �K) aJ m QQ O O [-- —I C � C CY) L +O + +O +C' +O + +� + +� d" —I a) [— [— C� [ d" LS 7 � + +O + +� + O C d" C') L_[ 7 cY) cY) (Y) d" QQ O +O + +O +C' +O + +O + +O + � N d" O C' Q) C'� f m d" d" Ln Ln +O + +O +C' +O + +O + +O + O (Y) QQ O �I +O + CY) O N aJ l + +O + d" d" f +� + +P* +C' +P + +� + +� cy) [— m [-- O Ln C CY) L m Ln LO Ln Ln d" +O + [— CY) tK) [— tq d" [ cY) Ln �K) �-o QQ Q) L I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I di C7) co m Ln m N Ln N co N C7) Q0 Q0 N 0 0 0 o � o 4-) 4-J 4-J co co co 0 ZD) � � 0 x ZD) x x aFl�X �XX (14 In Q 0 a (D N 0 0 HI -P 8 'a 0 Ln V �-Q m QQ C� QQn d" 00 C) � � o LO N 1— M C A C � LO 0 LO lr -F' �� +Y-d �� + +F � +F N C'� m LC) m -Q -F' +H+d+H -Fd 00 00 M CY) CY) 00 + + + c m d" L7 LS7 d" L7 QQ �) �) QQ LO 7 +� + + +� + +� + L7 Q) �K) Q) L7 QQ c CD CD CD L9 L7 d" d" d" M [- + +� + +� LC-) tq tK) tq Ln tq c co CYi d" L7 LS7 d" [� C'� L7 QQ �) �) QQLr 7 +� + + +� + +� + +� + +� +C' +� + +� + +� + C C'� CY) L) m tq O �d N c•I m m m �d 0 Ln C �— CY) C C Ln Ln 00 -F' + d" cr7 �K) cr7 N LO c 00 0 �d �d 0 ED................ [� N N CC) (Y} IZII o) N U [I [I [I w- �N --rn � N 0 0 0 v o N o 4-J 4-J 4-J 0 co co co 0 ZD) � � co -H > co co H X XFl� X X In Q 0 a N N 0 a N >I -I 8 ra 0 m Ln Ln Ln d" Ln d" c L,. ................. +I +� +I +I +I +� +I +� +I + +�+l+�+�+�+l+�+l+�+ d" O �K) Ln d" d" CYi �K) 00 fri Ln Ln l +�+�+�+�+�+�+I+�+I+ Ln �d tK) �d d" M l N N tK) O QQ [— L c� 7 c� 7 d" d" Ln Ln Ln Ln Ln L +� +� +� +I +I +� +I +� +I + rn Ln m d" QQ Ln M rn QQ O� c� QQ M O[ Ln QQl +1 +1 +I +I +I +I +I +l +I + c n H [-- " HI L�) L �I (Idc c�7 cr7 Ln QQ L +�+�+�+�+I+�+,+�+1+ c M m 00 Lr7 (D m m �I . O O 1 c d" Ln Ln L +O+ +I +I +I +1 +1 +� +I + O O d" Ln [� [-- P- 'Q f Ln m tK) oo +I +I +I + c Ln c Ln Ln [-- [— +1 +�+d"+cY7+c�+�I+I +I + (' 7 d" O m Q [ [� Ln co O co d" m d" Ln +�Il + +�o +a) ++ +m m Ln O M CO O (y) Ln QQ c� 7 Q) L c o o� o Lr7 � c�'7 mm d" Lcc) O Ln Ln c cn L +, +i +H +Y-1 +H +� +, +� +�o + d" d" �d �d N co Ln d c � d" Q) L +H +i + QQ d" [� l Ln 00 �d CDLn - +�o +� +' +9 + +moo 4- d" N [-- cn m O c• c� +o+ +o+F'+H +H +H+ v �C7) am >1Ln -m Ai -rl F-A > m v In Q +O +O +O +O +O +O +O +O +O +O [� L7 [- -'r L7 -'r m �I Ln Cri d" Ln Q7 Q7 Q7 Q7 Q7 Ln +O +O +O +O +O +O +O +O +O + QQ on on on 00 N -Ir ff � QQ QQ QQ QQ r- + ++o+ +o+ - 0 00 QQ [-- co co co +O+ +O+C)+O+ +O+ +O+ L- 7 Q7 [-- O O O LO a) C'� LO tq E-- cy) N (n C' +O+ +O+C)+O+ +�+ +�+ �O 1� Ln V 1 0� M CD �[ 7 (7) +O+ +O+C)+O+ +�+ +�+ co �d O L7 L7 d -Ir QQ 0 d" d" Ln CY) C'� L7 Ln +O+ +O+C)+O+ -r +�+ L7 � (7) L7 (' 7 d" LO QQO 1 C' (' 7 (Y) M 1 1 Ln 00 O C'� C�'i C�'i C�') -'r L[ 7 �7 �7 +O+ +O+C)+O+ +O+ +O+ O N ff) QQ �I L 7 ff)�lr T +O +O +O +C) +O +O +O +O . . +O + -r L) F- O0) V cY7 � +O+ +O+C)+O+ +O+ +O+ ) I l V V I +O+ +O+C)+O+ +O+ +O+ al � • ri .r 4 v N a N � IIIIIIIIII I I I I LD � � IIIIIIIIII I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I b LO N 03 :T C7) c� 0 0 0 o � o 4-) 4-) 4-) co D ZD) bi(0 r, r,XXFl� �4 -H -H b co -H > ZD) co � al�XXFl�XX LO In Q ►"I 0 a (D N 0 0 a -P 14 R� H N a -P 8 'a 0 P� C' i C'� C'� C'� C'� C'� �........._( O U O O O U O U O +O + +O +C) +O + +O + +O + d" CYi CYi C�`i CYi CYi CYi CYi CYi f O 0 0 O O O ( +O + +O +C) +O + +O + +O + LO d" d" d" d" m f O 0 0 O O O co �-o �K) Ln Ln Ln L O O O O O O +� + + +� + +� Ln d" d" (Y) C'� O M d O QQ O L CD 0 t9 C' O O c Ln Ln LO Ln Lc-) d" d" c +O + +O +C) +O + +O + +O + c� 7 C'� O M O [� O m m a) O O �— L �— �— tK) tq d" C' O tq Q0 �K) a) L(� L(� L t9 N �d Q0 Lo [— M C' MMM O O[ C'� 1 Ln [-- �I cY7 cY7 ( a)m O LO d" Q) 'd 7v U co [- ._. U [I [I [I b co m o 0 0 0 oNo��4-) co co co a ZD) v (0 co co E-HXX In Q 0 a N N 0 �-Q W m O �I C'� y.................. O U O O �I +O + + +O + +O + +O + + +O + +O 0 +o O C'� M d" Q7 00 CD CD 0 +O + + +O + +O + O +o +o +o +c' +o +o +o +o +o Ln QQ 1-- 00 �- O O O O O O +o + +o +c' +o + +o + +o C�`i CYi CYi d" d" L7 �7 �7 ' CD 0 O O O + +O + O 0 0 O O O +O + +O +C) +O + +O + +O+ O O O O O O O O O +O + +O +C� +O + +O + +O + C' C'� c"I C'� C' C� CD 0 O O O +O + + +O + +O + O 0 0 O O O +O + +O +C� +O + +O + +O + 0 0 0 0 0 0 0 0 0 + +o + +o o O O O O O + +o m L7 L7 QQ CD0 0 O O O .........r.... rn ilk rd } Ln �► 4-J UN m 9: 11 11 11 0 b co N � �4 o N 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 � � 0 •� � � > CO > Fl� N Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yyqyqul�dBAI� X<!rn1Hy��i,,.y�^J��iliivn4ii.:vkWrs.��.r,��,vF"'• i199�N� 9� 1 11" fir, �'¢�;�fJr✓ «"ir:�hiym� � A � , �i y,� �V,.� 'u "✓ m:i,+iW re, 'rl i.. 'riJ�iv rr. uf� q� y. Siyii r ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers4 t3cl540-120-277v tcm201- Description: ERS4_T3C1540-120-277V File Name: ers4 t3c1540-120-277v_tcm201-95633.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 25400 Luminaire Watts: 274 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 240 Label X-Coord ers4 720 _t3c1540-120-27... ers4 480 _t3c1540-120-27... ers4 240 _t3c1540-120-27... ers4 0 _t3c1540-120-27... ers4_t3c1540-120-27... -240 ers4 t3c1540-120-27... -480 Total Number of locations: 6 Y-Coord Z-Coord Orient Tilt Spin -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 -6 40 90 0 0 U00 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q N 0 a N N 0 m W O Ln d" �I [- d" �-6 O m m U �I +�++P+ +'+ +F+ d" M M N N I c O O c N +F+ m e d" QQ O O O c N �— QQ M O c LO LO M �r 7 �K7 O O �I 7I +�+ + +�+ +�+ c� 7 d" LO Q7 O O + +O +0 QQ +� + cl� d" LO Ln O M co N O m O d" d" LS 7 1� O +� + Q0 cY7 O d" �7 d" d" LS 7 QQ 1� +� + + +� + +� + Q0 Q7 �d L_[ 7 O O c M d" d" Ln l +� + +� +C' +� + +� + +� + �9 m M Lo �-Q �-Q O C' m +� + +� +C' +� + + +� + m m O c C'� CYi d" d" CYi CYi f co c I O 1� LO c M d" d" LO d" d" d" d" d" +O + +O +C' +O + +O + +O + O O LO QQ [� + +O + +O + d" C' O (Y) 1� C' O is.........r.... N N Ln Ln rn rn m m LO Q0 N N 0 0 0 o � o 4-J 4-J 4-J co co co 0 ZD) � � 0 x ZD) x x aFl�X �XX M In Q 0 a N N 0 0 HI -P 8 'a 0 �-Q O L7 [— i +' + a7 d" cY7 �d O d" (7) O �I O �d � O O +' + Q9 c' O cY7 Lr 7 O L co +� + + +� + +� O CY) tq QQ M [ O O m cY7 cY7 cY7 cY7 c'� c' c'� [ CD CD CD co O [ c'� cY7 cY7 cY7 c' c'� �I co O [ + +� + +� (Y) O 6) QQ c' �d cY7 [ +� + +� +C' +� + +� + +� L 7 M CY) O CY) c t9 c' O cY7 L 7 O L co O �d cY7 N N N �d �d a7 cY7 �d O d" CD ,d O �d cy) O O Ln O O Ln w LO -- c� 0 0 0 ��Mo��4-J 0 co co co 0 ZD) co -H > co co H X XFl� X X In Q 0 a N N 0 co QQ I— m m� m[ �I O m T-1 C d" i•........._c c� r �r 7 ,+++++�+1+++ ���� co Lr) �d m , M c� d" Lr) Ln Lf) Lf) L +I +l +I +I +I +I +I +I +I + �I I M [-- M 00 tq m m �d 00 �d LO LO Q) L +I +� +I +I +I +� +I +� +I + Ln 00 tK) N N m d O Ln L<7 0� [ m d" d" L�7 LnL�7 Lf) L +I +I +I +I +I +� +I + +I + N m a) N m d" [ O C cY7 d" L -) L +I + +I +I +I +I +I +I +I + m o O 0 LO +�+0+� +� +I +� +I +� +I + N LON [ a7 M LO m �d m C'� Lc) • O CY) CYi d" f +C�+ +�+0+� +I +I +� +I + O M L Lc) a) C'� �d C'� aJ L C�) a) �d d" +,+ +c�+c�+�+ +� +� +� + L [ [� C' 00 d" aJ m N c O M LO tq +� +1 + o� M c •I d" LO I O O O Q[ +�n + +� + +C + +0 + tq 00 tK) c m QQ [� C •] O m C O LO O L[ 7 m m d" f • O O O +�o +� +H +F' +H +� +0 +� +� + C M I-- r— C m J QQ LO Ln �) m C Q7 O a) co C M • Ln 00 Lr 7 L . 0 +moo+ + -F'-P+ +9'+ +9+ C'� m tK) LO tq C O co d" �K) Q O v �co a o >� 4-) CO � m A [ .N > •rI C-A > m r-I In Q m to m Ln Ln [— [— [— � Ln Ln Ln Ln Ln Ln Ln Ln -V C) �I � L7 QQ M M � L7 [� C) C) C) C) C) +O +O +O +O +O +O +O +O +O + C' O m �d � m m 00 C' + I + +Fi+H+ +H+ u--1{ QQ -11 Ln C � C' /C' Ln Q7 �i QQ CY) d N QQ C) O Cl.N CY) CY) IS) C'� I_[ 7 1-- C) O C' N +O + +O +C) +O + �� + M 1 O C) Ln [— QQ Ln [— (r7 Ln Lo tq (7) O CA [— () d" LO L7 C) CY) +O +O +O +C) +O +O +O +O +O + (7) cY-7i C) QQ , d c' N C V V -11 Ln QV W +O+ +O+C)+O+ +O+ +O+ Q7 C' [� Ln �yI �0 I�I C V ' I -11 u F- W +O+ +O+C)+O+ +O+ +O+ C V 1' I -11 -'r LO QV +O+ +O+C)+O+ +O+ +O+ Q0 Ln I-- �I LO C'� d" LO 1 Q0 N C � C ) i d" . . . . . . . +O +O +O +O +O +O +O +O +O + :j C- d" I-- r- r- [- C' C'� (' i (') (' i (' i (' i •+O+C)+O+ •+O+ •+O+ +O+ a- (�7i c-y Ln -'r C,' t'I V V1 V V V I +O+ +O+C)+O+ +O+ +O+ al � • ri .r 4 v v a I I I I IF j rd rd U v NMLO 7 rn m m Q0 Q0 N N 0 0 0 o � o 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q 0 a N N 0 0 a -P 14 R� H N a -P 8 'a 0 P� tq d" d" m m m I .c c O U 0 C) O U O d) +O + +O +C) +O + +O + +O + O O QQ Ln d" d" d" f �I 0 0 O O O +O + +O +C) +O + +O + +O + d" c"I m QQ L[ 7 l O O O CD CD �— M m Ln 4 m O c� c� N �d �d �d O O +� + + +� + +� co QQ d" O Ln M Ln d" N O C' O d" O Ln C' M [ m O (Y) O O 1 L9 Q) �K) Ln d" m m �— O O O LO d" c tg co m ma �d O O m O �— tq N E-- LO m N I O O —F' —Fjd +H —Fd +H —Fd [� m M Ln O �I c d" [� O C•] �I O M QQ (Y) O N O L Ln O O m , d +P+ +P+Fd+P +�H +H+ 'd Ln 0 • � a� ..0 O� ,� • U [I [I [I r- rn N ro r- N 0 0 0 0 oNo��4-) co co co a 0 ZD) v (0 co co E-HXX In Q 0 a (D N 0 d" [— 00 M M M O C� o 0 o C� o C� o +o + +o +c' +o + +o + +o d" Ln [- a) O O � O M 0 0 0 ,� ,� o [ +o + +o + +o d" 00 M O o [ O O O Ln cr7 m c �d [ O O +o + + +o + +o t9 00 �d (Y) d" �[ 7 o c� 7 C O [ +o + +o + +o [— c I m , d M CD O +o +o +o +c' +o +o +o +o +o CD d O O +o + +o +c' +o + +o + +o O O O O O O tq QQ tK) QQ O O O O O O +o + +o +c' +o + +o + +o O O O O O O O O O C�'i C�'i C'`i C�'i C' C�'i CD 0 0 O O O +O + + +O + +O + O 0 0 O O O + +O + +O + 0 0 0 0 0 0 0 0 0 +o + +o +c' +o + +o + +o CD O O o o O d" L7 Lc-7 Q7 Q7 L O 0 0 O O O ilk ra U �► Ln 4-J Ln Fl U rl 9: 11 11 11 0 b �,o Ln � �4 o� 0 0 0 0 11 0 0 0 0��4-J 0 H co co co -H a 11 11 11 rx rx rx 4-J bi 0 � � 0 •� � � > CO > Fl� N In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U I �4 �4 co 'Zil I a �4 v� o W � W � m • 0 Q � N U H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U Q o r W H o co 0 co co 0 0 co 0 (D � co N 4-) � U � 0 r�,' 4-J -H 0 r--� LnmNrzrIQ rl 4-J 0 �n r�,' 4-J �LnmN�� 0 0 -Ci m m 0 U 4-J U U �� 0 Fl � -� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 U 1 r-I CO � x Q u I I o o N -T r, Ln U � �I m 4-JC- CD �4 o o 7v U N 7v l9 0 0 o N r-I W Q m o X CC) I� N x rzl x o E-I I o 7v rho'TQ0000N 0 I co F4 0 0rx�� o 1 0 0 1 0 � rx rx (2� U (D I I co -H -H I ,Q �4 4-J � U 4-J 0r1-H � + N m m LO N N Li Q0NNU-)rnrn o 1� o N IZII coNrn7vrnco NmLnm o�oNLnN bi -- 000 .H -H -H aa�x xx �XX�XX N Ln N � m o 7v l9 N C7) r--� N o N o In Q rA V r0 V) . rl 04 4j r- p o �- �- a Q0 N m m 0 a o Ln >INcom m a -+amN 7v 0 0 0 F N IH m m Q0 N m1-0 Q N 7v r- rn ooco�� co -T rn -T � o o co 1-0co U al pqI 000 NIA Fl� > 0 x p)xx ►--i l k � 0 r- rn N 1-0 r- r- N o • Ln rn CO � o u� Q0 Q0 N o 7v co m o co [- 'a . . . m � . al v 14 ro HI 0 0 0 a 0 ZD) NIA �5 �H -H� > 0 x p) x x ►milk � o r--� Q01nr--�oo 7vr--� LO 0 . 000�r--�Nor--� o r- oo N r--� o o Un N oNoo r-m • . . . . . . 0000oNNor--� H z H b, ra �4 U 0 0 0 0 -0 -0 -0 0 H -rl Co co I ►--� � � H In Q a U] W L) z a ,o o LL W LO W a W w a z J R CC LL .c L m E W v 00 p LO N r N LJJ a •— E W r v v N v � _ LJ v v v Jcle) cle) N v v v J � J N 0 tY3 E LO r (3) tY3 J N N J > J C.0 v p p v_ 'F J U � > U (1] J W .. o tom] ._ E� m c w .0 m �F •- ._ .� a � E ° Q W U ' Q L .. co X x X v r W 0 J m p °° Q � J W C� L .. �* t� r L) v N o 1�t Lo r co .L cc U cc U v a) m FL 0) 'U CL (n a v v v E U Q v v L. Q ai z U) w W F- LU m a a a z 0 V W v ;t �LO N Cc) 0 0 N U) m x U)cc m � E (D � �I U) U) E v 0 () .E J v v v M o v o r U) U) � 0 0 w� J C7 CQ � J v cY) L. v v 0 p z J J o v 0 v 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 80BLEDE10 XXXXX R3 Description: ATB2 80BLEDE10 XXXXX R3 File Name: ATB2 80BLEDE10 XXXXX R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 30489 Luminaire Watts: 274 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 80BLEDE10 XXXX... 900 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... 675 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... 450 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... 225 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... 0 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... -225 -6 40 90 0 0 ATB2 80BLEDE10 XXXX... -450 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft Total Number of locations: 7 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q ►"I 0 a (D N 0 QY v O -Ir QY QQ 4 Q')...........� CYi d" Q7 I-- [- [- [- a) [- +o+ +o+o+o+ +o+M LCP QQ LO m j +o+ E-- � � � +o + +o +c' +o +o + +o LO c c � �I [- O [- Q7 a) (3) O L n tq a) m LOc 1 1 +o+ +o+c'+o+ +H+ +H+ cf) O LO QQ [- G) d QQ +Q+ + +�+ +�+ O O d" QQ d" C QQ 00 QQ +O + + �� + +� LO Ln Ln N C Ln N LO +o+o+o+o+O+o4H +H+ o� c QQ cf) N , d LO m dr dr LO Q7 a) O �d N +o+ +o+c'+o+ +H+ +H+ Lc) (3) 11 O C �I C �7 CYi CY) d1 L O [- a) � + +1 00 J) - tq r c� 7 M ff) LO LO +o + + +o + +o Ln 1 a) [- � �i d-� [- C Ln 00 d" 1 +o+ +o+c'+o+ +o+ +o00 +o+ +o+ +o+ O -'r a) (3) QQ O -IL-r7 LO L-r7 Lr7 L-r7 LO m L-[ 7 Q7 Q7 Q7 L +o +o LO N LO r--� co N b' N7vN Va 11 11 11 0Y) di di ra o o o CD � o 4-J 4-J 4-J co co co o ZD) � � 0 x ZD) x x aFl�X �XX In Q QQ m QY N QY 40............E �d d" C] O �d �d �d �d O C �7 C' [� 6} N C' I_[ 7 I_[ 7 QQ 00 C} 00 m C] C"i dd " " 1 QQ C [� C] 6'} � � [� C +O+ +O+C)+O+ +O+ +O+ O L[ 7 C— j Ln d m C Q7 QQ Q7 Q7 L[ 7 +O+ +O+C)+O+ +O+ +O+ O O O O CY) O L7 L7 �) L7 d' d' d' +O+ +O+C)+O+ +O+ +O+ V V V1 V V m 1 +p +jp +p +p 1 4p +p u 1 Ln 11 -'r m L I C +O+ +O+C)+O+ +O+ +O+ O O O O � O � L7 L7 L) Ln d d +O+ +O+C)+O+ +O+ +O+ O L[ 7 [� Ln d m C Q7 QQ Q7 Q7 L[ 7 +O+ +O+C)+O+ +O+ +O+ 00 m C] C"i dd " " QQ C [� C] 6'} � � [� C +O+ +O+C)+O+ +O+ +O+ N C'� CS} —'r N tg O C'� C',j m m O QQ N [- CS} N N Ln o Ln c �d C] O �d �d O C m [— N rU Q0 o [I [I [I -- r� 0 0 0 4i � N o +J +J +J 0 co co co 0 ZD) � � co -H > co co H X XFl� X X v In Q ►"I 0 a (D N 0 a N >I -I 8 ra 0 LS j O m N [— � m I1 zj , �r +I +I +I +I +I +I +I +I +I + a) QQ d1 QQ a) �I d" M L a) �7 ` +I +I +I +I +I +I +I +I +I + m cf) LS j C � { Lf �— CDC m C CYi CY) d" d1 d" d" LC) LC) L +I +I +I +I +I +I +I +I +I + �— C �— C,j QQ CD � QQ QQ LS j LC) L +I +I +I +I +I +I +I +I +I + M LS j LC) L +I +I +I +I +I +I +I +I +I + N C,J � � � N C � t�) C N cr7 • O �i C d" LC) L +O +I +I +I +I +I +I +I +I + N C' QQ C a) O ff) m O [� C' Q7 O N +I +I +I + �y�� .y. /l �Vl �1 �1 �}I �y� QQ l V 1' I W l V �1 u I 1' I �d +�+ +�+f)+c�+ +O+I +I + to (7) t�) LS j a) zl, (7) O C"j N N +�+ +�+�,)+L�+ +C�+ +� ff ) L n Ln j O O cY7 O [-- �I � O [� � C Lf 40 + 40 �I QQ O (7) a) +H+ +H+Fi+H+ +H+ 4- 00 LS j a) /mil 0 00 o 4� l l V �1 l V u I O +�+ +moo +PO+ 4 + +�+ d" O (7) C' M Q) L CY7 (7) O O O O v aoo >1� 4-) rn Ai -rl F-A > m LO In Q C\] l0 7-1 C\] m m 7-1 0� l0 C\] • • • • • • • • • • +Cl +Cl +Cl +p +p +p +p +p +p +p r-�-o co Ln Ln 7vc\j r- m 7v Ln Ln L Qo cD� o (D� o� dv Ln L o Ln Lf) 7-1 t C]� cn S� Ln Lf) C)� 03 4�9 Ln �o 1-- 03 o S� o E +p + +p ++p + o Qa a) rn Ln cv (n c +� + +� ++� + +7_1 + +7- 7-1 La Lf) o 4 7-1 o Ln S� Can cll ] [— [— Ln [� [— LC) OZ) cc C� d� Ln tip t— r� Ln � o (n OZ) LC) [— [— N CC) d-' d-' LC) LQ S� CY) S La 7-1 1-- d� Ln 7v (n 7v Cr Ln 03 0 4 +71 Ln (D� S-d Ln N LQ N 7v 4J d, oz) G� (n 0-� o rn (n (Y) 7v 7v Ln 0 •••• +� + +p +�) +p + +p + +P 03 cv Cr Ln Qo (n E al � • rl .r 4 v rl rd rd U v LOLOQ0 � co N mLo7v r— Q0 m 0 0 0 o � o 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H 0 � co co In Q ►"I 0 a N N 0 0 a -P b� 14 R� H N a -P 8 'a 0 P� I.cn. c� 7 c� 7 c� 7 c� ............c O+ 0 0 0+ O o O C +o+ Ls 7 �1 c� 7 1 O O O O O O C +O+ + +O+ +O+ a) QQ LS j LS j LS j L O O O O O O C +O+ +O+ +O+ d" d" m C"j C'� O m m C �I O C 1 +O+ +O+C'+O+ +O+ +O+ O a) L_[ 7 N a) L L_[ 7 O a) m C Ln +O+ o� 00 a) 00 00 QQ L +o+o+o +o +o+ QQ QQ L n m O r N N N C"i N N N, l O C �-Q O O C� C m M C LS 7 �7 �) Q7 LS 7 N + + Q7 M Lf-) a) L[ 7 j CY) L [� CY) 6l CY) CY) LS j Q7 �l N Q7 CY) L_[ j C a) N c a) C a) M L O LS 7 QQ c� 7 QQ a) N �l � o� N r— a) CY) 00 Lr7 ` d1 L +o+o e,............r.... � m 'a m U Q0 ._. pl • U [I [I [I b rn m o 0 0 0 oNo��4-) co co co a 0 ZD) v (0 co co E-HXX In Q N N 0 0 a o� c � � QY ,�............' o + �i +o+ +o+o+o+ +o+ +o+ O N C �d +O+ +O+C'+O+ +O+ +O+ �I C' d" 00 N C' O C +O+ +O+ +O+ O C M LC-) [� M CD 00 r C' �I +O+ +O+C'+O+ +O+ +O+ O O O O O O O C +O+ +O+C'+O+ +O+ +O+ m d" d1 d" LC7 I LC) L O O O O O O C +o+o+o++o+o+o +o +o+ O O O O O O O O O C +O+ +O+C'+O+ +O+ +O+ C'� C' C'� C',j M I m m O O O O O O C C"i N m d m O O O O O O C +O+ +O+C'+O+ +O+ +O+ O O O O O O C +O+ +O+C'+O+ +O+ +O+ N c N cam) m m e O O O O O O C +O+ +p +p +1 +O+ +O+ O O O O O O C +O+ +O+C'+O+ +O+ +O+ LO 00 cy} O N c , d O O O �d +o +o e,............r.... co r-I 00-► V- il� rd } Ln [� 4-J r-� o Um 9: [I [I [I o b co N N �4 o N 0 0 0 0 0 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 > Fl� N 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: One Row, Near Side; 1RNS Roadway Width: 54 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers4 t3cl540-120-277v tcm201- Description: ERS4_T3C1540-120-277V File Name: ers4 t3c1540-120-277v_tcm201-95633.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 25400 Luminaire Watts: 274 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers4 900 -6 40 90 0 0 _t3c1540-120-27... ers4 675 -6 40 90 0 0 _t3c1540-120-27... ers4 450 -6 40 90 0 0 _t3c1540-120-27... ers4 225 -6 40 90 0 0 _t3c1540-120-27... ers4 0 -6 40 90 0 0 _t3c1540-120-27... ers4_t3c1540-120-27... -225 -6 40 90 0 0 ers4 t3c1540-120-27... -450 -6 40 90 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft Total Number of locations: 7 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0 a N N 0 t� O cy} (7) + + -0 O �d q cY7 ` " +1 d" Ln C", Ln Ln d" QQ a) O O c c a) QQ [� O �d � [� QQC m L 7 C-- a) O �I C +O +O + +H +H (' 7 d" LC) QQa) O �d QQ C"i a) m [� cr7 cr7 � LO Ln o� o� C +O + + +O + +O N d" LC-) Q7 a) a) C Ol y { (3-y} �C— O C ( C V V 11 Ln I QQ QQ +O+ +O+C'+O+ +O+ +O+ a) (7) ff) �-Q C' ('� C'� ` N M d1 d" LO Q7 r c O C� L[7 d O N �dL -) tq Lntq C m �1 +P+ +P++P+ +P+ +P+ O O LC-) N O (7) r d Ln �) LnLO d" +O+ +O+C'+O+ +O+ +O+ d" N C"i a) a) �d O QQ (7) (7) C) a) [� J) O O C7 t/ i m L m di co .0-. tr [— di co c� c� 0 0 0 o r--� o 4-) 4-J 4-J co co co 0 ZD) � � (D x ZD) x x aFl�X �XX r-I In Q N N 0 0 HI -P 8 'a 0 woo LO �- 1� C'Y � C O C �I C) �i m O O C +C +C�+ +C�+ [� M ff) L[7 O L C) �I ff) N q N �I ( Q7 d" O C) QQ C'� QQ ( LC) +o+ +o+P+o+ +o+ +o+ m O �i C) N d" m L7 Lf-J d" d" (Yi +O+ +O+O+O+ +O+ +O+ ('ri (�'i +O+ 00 +o+o+o +o +o+ �I 00 C) 0 -I +o+ +o+c'+o+ +o+ +o+ O �i C) N d" (Yi L7 Lf-J d" d" (Yi +O+ + +O+ +O+ QQ d" O C) N � { 1 +o++o+ +o+ +o+ [� o� ff) Lr7 �I O L C) �I ff) C', C' N �I ( O C �d C) �i (7) O O C QQ o C) Lr7 CM L7 03 C7) di Ln • o . 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QO -rl F-A In Q 7v 7-1 co Cv 0� t— 0� 7-1 C) 7v 7v Ln Ln�D Ln Ln Ln Ln . . . . . . . . . . +C) +C) +C) l0 0-� m l0 7v [— co 7-1 l0 c dv Ln L— co co co co Q� o 4 7-1 Ln cn Ln 7v 7-1 o ` �o C) C) C\j C\j C\ E + + + r- co Ln r- zzi cn zzir-I d" L— G� 0� 1—I C\] S r— co clla r— C) cn ` Q0 a) co 1-1 C\] C\] S +P + +P +C� +P + C) cM 7-1 Q0 7 r- j cn E +� + +� +C� +� + +7_1 + �� 7-1 am �-o �-o 4 oz) M Ln Ln �-o (M C) E +� + +� +C� +� + +� + +� cv c� Qo r) 03 cn cn 0 t M 7v Ln Ln 03 (M 4 +� + + + r-I Ln rd Cm M M S M 7v Ln Ln 03 (M 4 + �� +C� �� + + [— 7v C- ] C) [— [— cn r-I C\] S C\] d" LC7 Ln [— oz) [ r— C) Ln o 03 C) E C\j 7v 7r Ln Ln r— + �� +C� �� + + Clq C� Ci C' cr 7v 7v C7 03 rd C'i Ci M cr ` 0 .•. +P + +P LQ LQ rd (M a7vLn7v 7v 7` al � • rl .r 4 v rl v N rn N U Ln Ln co 03 :Tr— c� c� 0 0 0 o � o 4-) 4-) 4-) co D ZD) bi(0 r, r,XXFl� ,�4 -H -H 0 � -rl D' In Q (N (D N 0 0 a -P v 14 R� H I a -P 8 'a 0 P� c o�OVI- tg ....c + O 0 O O o O C +o+ +o+c'+o+ +o+ +o+ C) d-� �i � �7 �[ 7 � �I �i O O O C +O+ C Y) I_r 7 CY) [� C O O C +P I +O+ +O+ C) Q7 M 6} d" C) L[ 7 N C� i C"i N �I +O+ +O+C'+O+ +O+ +O+ L 1 V V1 1' % C V C 4 d [� C"i QQ [� C) � C �7 QQ�) I_[ j d" NC +O+ + +O+ +O+ �I [� Lc-) O [- 00 CC) 00 � +o+o+o +o +o+ CY) CY) O [- C) C) [� CY) CY) O CY) CY) [- Q7 L[ j L +O+ +O i+O+ +O+ +O+ �7 I +O+ O m d1 CY) C N CY) C +�+ + +�+ +O+ c� [- C) 00 [- C) d" O QQ �I C +C +�I+ QQ d" C"i 00�d L 7 C) O C V 00 11 (7) L[ 7 C) O (7) +o+o ED .......... 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A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 40BLEDE10 XXXXX R2 Description: ATB2 40BLEDE10 XXXXX R2 File Name: ATB2 40BLEDE10 XXXXX R2.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 15685 Luminaire Watts: 138 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 290 Spacing - Row 2 : 290 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 40BLEDE10 XXXX... -290 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 0 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 290 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 580 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 870 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... -290 70 40 270 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft ATB2 40BLEDE10 XXXX... 0 70 40 270 0 0 ATB2 40BLEDE10 XXXX... 290 70 40 270 0 0 ATB2 40BLEDE10 XXXX... 580 70 40 270 0 0 ATB2 40BLEDE10 XXXX... 870 70 40 270 0 0 Total Number of locations: 10 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0 a N N 0 M o o M o d+ , ,.....I +o+.+o+o+o+.+o+.+off CD +o + +o +o +o + +o + +o +o + +o +o +o + +o + +o Ln G) CO o CO I L o G) CO GID I GID+ +o+o+o++o+ +d+ r o C7) CO "- C7) ("'Ir +�+ +d+o+o+ +o+ +d+ d Ln o r� r o s r� o C7)o r\j r +�+ +�+�+o+ +�+ +�+ o Lc-) cr Lc-) d r r [31 GID I"- [31 r ] r +-'+d+-'+o+o+o+o+�+�+ �Y) o r31 o C7) C LC) r 0 0 03 OD G�: OD c� r +�+ +-'+o+o+o+o+ +�+ r o -] (n r\j C7) C7) 03 [- OD o C +o+.+o+o+o+.+o+.+� �- (D�D r- r- �D �D r- r- �D r +o + +o +o +o + +o + +o o (7) �D r\j o r\j C7) r +o + +o +o +o + +o + +o +o + +o +o +o + +o + +o r• LC) LC) OD � Lc)� r +o + +o +o +o + +o + +o CA Q0 c31 o r\j r\l o 01 �D r +o + +o +o +o + +o + +o +P + +p +p +P + +P + +P o +o +o +o +o +o +o +o +o +o +o +j +o +o +o + +o + +o d Lc-) GID Lc-) L[ } L[ 7 L[ 7 Lc-) L[ 7 L rn r- ra o o o CD � o 4-) 4-J 4-J co co co o ZD) � � (D x ZD) x x > ro - H ro ro aFl�XX�XX In Q 0 a (D N 0 0 HI -P 8 'a 0 +F+ +'+'+n'+n +Y--' I +�+ 0) +F + m +' +' +F + +F + +F L[) LD C) +O + C7) [� � O O O + [� CSl O +� + � L O C +� + +O + +O +O +O + +O + +O l4 d' +O + LO +O + O n] C31 n] l9 l9 [� +O +O +O +n LC LO LC7 +O +O +O + r• C31 l9 +O +n LO +O + C'7 l LC7 s +O M C +O + l9 C +O +O �- LC7 +O +O +O +O Ln Cr O LF) +O +O rs +O + r +o +o +o +o +o +o +o +o +o CSl L[) +O + L[) +O +O +O + m �D [-- +O + �D L +O + CSl L nl nl +O + m m m m +O +O +O + m m +O + nl C +O + �- n] r� +o + Ln Cr O d+ +o +o +o + rs r� +o + r r� r +o (D �D +o + � L-) d+ -T d +o +o +o + L-) -T +o + C r +o LC) C'"? +O + O LC CiD [ -. LC7 LC7 LC7 +O +O +O + L-) LC7 +O + C'7 L d' C +O + l4 +O + L[) n] C) n] n +O +O +O + CSl LC] CO Ci--. C) n +O + LC] m l Lc-)s +O + C'7 L +O + L[) +O +O +O + CSl [-- �D +O + [-- +O + �D L C) O O O O O C +-' + -F'-F' ' +n +-' + +-' + di r-I c� o LO m cc) N w � LO co o 0 0 0 �oNo��4-J 0 co co co 0 ZD) co -H > co co H X XFl� X X v In Q 0 a (D N 0 �+ d+ d+ d+ d+ d+ d+ d+ d+ c d' [� OD C) LO C) OD OD c +I +I +I +I +I +I +I +I +I +I C �D Ln rs LO �D r GI, OD LC) d d d d LC) OD r +I +I +I +I +I +I +I +I +I +I CY) C31 CDd C) C31 d O C) CI CC) C) c +I +I +I +I +I +I +I +I +I +I O I- L-) m m �n I- O Q LC)c +I +I +I +I +I +I +I +I +I +I lD �n (n I--(nC Q �n LO ,� LO l9 i r +I +I +I +I +I +I +I +I +I +I �D �D d+ C7) 1 + LC) Q, C) (n L[7 C]l L[7 O c ? (n C\j CN] d C +I +I +I +I +I +I +I +I +I +I (D C rY) j CN] 1--i o j 1--i C\l (n (I +I +I +I +I +I +I +I +I +I +I m �D r +I +I +I +O +O + +O +I +I +I �I CN] C) lD C) C\, O r • C31 [- C'7 C'7 [- CCl O C)C + I +] +O +� ++� +� + + I + I [- L[ 7 lD O l9 lD r 1 O c l4 d' C) d' C) d L -1 LC) [- C\J C� I-- CD r �I C'') O C31 O CD r d lD d O O O O . -F-+7- + +7- + +n +P LO C) �D m C) Lf o rs a m a c �n C�� o ,� o C�• � �r [- [- LO O LO d+ C rs O CNI C O r IIIIIIIIII I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I v v� a o >� 4-) CO � m A [ .N > •rI C-A > m LO In Q 0-) 0-) Ln Ln +C +C C Q9 N d1 0) cif Ln Ln Ln Ln +C +C +C +C O cq C C �9 C� C� d1 N Ln Ln +C +C cq OD �9 Ln 0-) cy-, Ln L' +C +C C C\\ �9 LC -------------- --------- + + d + + + + C� Cy^, C� Q9 Q9 Q9 + + C Q9 Q9 + + 0-) � C� C� +� + LC +C +C +C + +C + +C +C OD N C C d -:P C C O N O +C + +C +C ,--I C Cal C d1 O7 O C� C OD Q9 C C +� + C +C +C +C + i- 7 o , �I +C + 0-) +' +F C— C V-I d �I C U OD O 0-) C C 7--1 C 07 07 C C 7-1 +' +F L[ 7 t (\1 +F + +' +F +C + +F + +' +F 0-) �d C\] +' + d L(, C �d cS 0) 0) +a + L[ 7 0) r d +a + Q9 n" Cam] +� +F E9 cif C d1 � N C 0' OD O �I d1 07 cif �C 7-1C +� + + E9 d1 Ln �9 O [� Ln OD C� �C C O' +C + d' +C +C +C + Ln O N +C + OD Ln t OD +C +C E9 OD C— C— +C +C +C +C C L , N C— O +C +C Ln O +C +C Q9 �C E9 +C + C— QC Q9 +C +C +C + Q9 +C + C— �C +C +C N Ln LQ -FP+ C C� C� LQ Ln Ln Ln -FP +C +C + C� Ln LQ +C + C C� LQ L' +C +C 4-) C I OD C— 0) C— I C� C + +C +C 0 Cr O r-I C\ dri 0- + +C +C +C + +C + +C +C V--1 r— 0' C 0) Ln Ln O 0) C C C L'a) 'r . ri .--I 4 a I N-------------- rl -------OD rd P*h rd U N rn l9 [- U c� o [- 0 0 0 o o 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXF� A4 �4 -H -H b > co -H > co co alF�XXFl�XX In Q 0 a N N 0 0 a -P 14 I a -P 8 'a 0 P� O o 0 0 0 o O o O C 0 0 0 0 0 0 0 0 o C +o + +o +o +o + +o + +o O O O CDCD CDC +o + +o +o +o + +o + +o CA n n� r +o + +o +o +o + +o + +o [', [o c'D c'D r c'D r +o + +o +o +o + +o + +o +o + +o +o +o + +o + +o OD n �D rs nI n G) N C d d Ln d d r +o +o +o +o +o +o +o +o +o L[) L[ 7 L +o +o +o +o +o +o +o +o +o O O GID nI n [ID O C +o+.+o+o+�+.+o+.+off G) n Ln Ln O Ln nI c [ID O nI m m nI -d o C +o + +� +� +F + +F + +F d, G) nI CO nI m s O n � Ln Ln Ln 11 C LC) -] nI GID LC) LC) [ID nI L LF) r-I r C)r- LO L n] [ID C) C) L[ 7 C +F+ +F+n]+n]+n +n]+ +F+ O C)r'7 �I r'7 d' C d G) n] I +F+ +++++n]+ +F+ G, (n �D LCj G) O O [� L +l + +-' +n] +n] +n +n] + +-1 l4 LQ LCj l a �D a n �D r LF) LF) LF) LF) Lc-) s +o+o+.+o+.+off ilk Ln Ln 'd m N L7 N U [I [I [I b rn N o 0 0 0 o N o 4-) 4-) 4-) co co co a 0 ZD) v (0 co co E-HXX In Q 0 a N N 0 0 0 0 0 0 0 0 0 +o + +o +o +o + +o + +o 0 0 0 0 0 0 0 0 o C +o + +o +o +o + +o + +o 0 0 0 0 0 0 [ +o + +o +o +o + +o + +o 0 0 0 0 0 0 [ +o + +o +o +o + +o + +o +o + +o +o +o + +o + +o co +o + +o +o +o + +o + +o L[ } r-I C'7 m m CSl L r I r] r\] C\] C C\] C r r +o +o +o +o +o +o +o +o +o r• d+ Ln �D Ln � r -1 � CNI c"I c"I � c"I � c"I r +o +o +o +o +o +o +o +o +o Ln r- r- r- (�� C CNI CNI CNI CNI C� r +o+o+.+o+.+off I CNI CNI C\j C\j �j �j �j (N r +o + +o +o +o + +o + +o d, r• o CNI (n CNI �- s r�� r�� r�� r� r�� +o + +o +o +o + +o + +o +o + +o +o +o + +o + +o GID � CNI (n CNI C)C C)[ +o + +o +o +o + +o + +o CO �� C7GID I [- � 0 0 0 0 0 0 [ +o + +o +o +o + +o + +o L[) �D [� [� [� �D L 0 0 0 0 0 o C +P + +p +p +P + +P + +P + Ln �D �D �-a Ln s 0 0 0 0 0 0 [ +o +o +o +o +o +o +o +o +o LC) LC) LC) ' s 0 0 0 0 0 0 [ +o + +o +o +o + +o + +o 0 0 0 0 0 o C +o+.+o+o+o+.+o+.+off 03 0 ilk rd } L(-j N 4-J . c U7V rn N m [I [I [I o R� N [— m �4 � N o 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 > Fl� N 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers3 m3cl540-120-277v tcm201- Description: ERS3_M3C1540-120-277V File Name: ers3 m3c1540-120-277v_tcm201-95482.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 18100 Luminaire Watts: 196 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 12.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1 : 290 Spacing - Row 2: 290 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers3 870 -6 40 90 0 0 _m3c1540-120-27... ers3 580 -6 40 90 0 0 _m3c1540-120-27... ers3 290 -6 40 90 0 0 _m3c1540-120-27... ers3 0 -6 40 90 0 0 _m3c1540-120-27... ers3_m3c1540-120-27... -290 -6 40 90 0 0 ers3 m3c1540-120-27... 870 70 40 270 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft ers3_m3e1540-120-27... 580 70 40 270 0 0 ers3_m3e1540-120-27... 290 70 40 270 0 0 ers3_m3e1540-120-27... 0 70 40 270 0 0 ers3 m3c1540-120-27... -290 70 40 270 0 0 Total Number of locations: 10 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q 0 a N N 0 ............r +o +. +-1 +-1 +� +. +� +. +� +o + +' +' +F + +F + +F +o + +' +' +F + +F + +F Ln M M I M I M s +O + +O +O +O + +O + +O �I —] lD C"] I lD d' r +o + +o +o +o + +o + +o +o +o +o +o +o +o +o +o +o L[ } C'7 C'7 r-I (n LC) L Ln LQ LQ LQ LQ LQ L +o +o +o +o +o +o +o +o +o d ,] O O O (n s LF) LF) LF) LF) Lc-) s +o+.+o+.+off Ln C C] O O C C\] L +O + +O +O +O + +O + +O + C�1 C'7 C'7 +O + +O +O +O + +O + +O d' CO O C) C\] CN] C) O CO s C�] +O + +O +O +O + +O + +O d' C31 CSl [" [� C ] C� CCOO O C7] ( C ] C +O + +O +O +O + +O + +O + Ln (:. C) [ID L C ] C� C ] C7 C7 C7 C� C ] C +O + +O +O +O + +O + +O + +P + +p +p +P + +P + +P O d C7) (n C) C7)Ln Ln C � ' s +o +o +o +o +o +o +o +o +o m � m rn [: Ln �- (DO C5) [ �D L +o + +o +o +o + +o + +o �- C m I--LnI--C\J r �- O CNI C C7) r +p +� +7- + +7- + +p pl r- m r—Q0o N ���N � L 10 V Q0 m N 0 0 0 o r--� o 4-) 4-J 4-J co co co 0 ZD) � � (D x ZD) x x aFl�X �XX r-I In Q 0 a N N 0 0 HI -P 8 'a 0 C'71 O O 0........... 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Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 40BLEDE70 XXXXX R2 Description: ATB2 40BLEDE70 XXXXX R2 File Name: ATB2 40BLEDE70_XXXXX_R2.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 11266 Luminaire Watts: 91 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Spacing - Row 2: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 40BLEDE70 XXXX... 900 -6 40 90 0 0 ATB2 40BLEDE70 XXXX... 675 -6 40 90 0 0 ATB2 40BLEDE70 XXXX... 450 -6 40 90 0 0 ATB2 40BLEDE70 XXXX... 225 -6 40 90 0 0 ATB2 40BLEDE70 XXXX... 0 -6 40 90 0 0 ATB2 40BLEDE70 XXXX... -225 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft ATB2-40BLEDE70—XXXX... -450 ATB2_40BLEDE70_XXXX... 900 ATB2_40BLEDE70_XXXX... 675 ATB2_40BLEDE70_XXXX... 450 ATB2_40BLEDE70_XXXX... 225 ATB2 40BLEDE70 XXXX... 0 ATB2 40BLEDE70 XXXX... -225 ATB2 40BLEDE70 XXXX... -450 Total Number of locations: 14 -6 40 90 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q M -'r d m [�, ----------------- -----------�--3 L7 +O L17 + d" +O d " +O L7 +O L17 + d" +O d" + �d i-:i.......0 L-) L +O +C �7 +O + �7 Lc-) +O C'� Lc-)Lc-)LO +O �I +O + +O + �7 C +O +C [� +O + Ln Q7 +O [, Lc-) +O d" Lc-) +O + LO +O + Ln C [� C +O +� �I 00[� +O QQ + [- +O O [� +O L[ 7 QQ[� +O L[ 7 + CD +O + QQ 00 C +O +� 00 +O 00 + 00 +O O [� +O O [� +O d" + +O O + m C +O +C C 00 +O LO + M +O 00 00 +O [- +O m + 00 +O + M C +O +� Q7 L 00 +O I +O [- +O +O I [- +O I m C +O +� O +O + C' �d +O L[ 7 d" +O O 00 +O d" + d" +O O + �d C +O +� C'� C [� +O + [� +O [- +O QQ +O + [� +O + 00 C +O + T 0 Q7 +O + • O Q7 +O 00 Q7 +O QQ Q7 +O d" + d" Q7 +O QQ + • CX7 F- +O +C CDC a[_CC��� L7 +O + L-) +O Ln� L-) +O L-) +O � + L7 +O �CC�C � + QQL +O +C Ln5 $4 ij +P+]+P+P+P+1+P++P+C [_ d O 00 dr QQ dr 00 d 00 QQ -'r co I O C Ln -ri co [_ Co � Co Co C .ri U 4 +o+o+o+o+o+o+o+o+o+C � � Ln �5 rd mr--�r- 7vr--�7v Z r--�Nr --� Va 11 11 11 lS7 [� l9 ra�,o rn-T o o o co co co o ZD) � � 0 x ZD) x x a�X �XX In Q 0 a N tg � 0 � 0 c 0 0 0 0 0 0 1— 0 0 0 0 r +o+ +o+o+o+ +o+ +o+� N 0 m [— o O [— cr7 0 c Lc-)QQQQ [� �7 LC-) L +o+ +o+o+o+ +o+ +o+� o m (3) N c (3) QQ C Lc-) Lc-) QQ LO 5 0 m LO m 0 5 m d r Lc-) LO Lc-)d C +o+ +o+o+o+ m -Ir -Ir LO -Ir m c +o +o +o +o +o +o +o +o +o +� Lc-) Lc-) -Ir -V m c +o+ +o+o+o+ +o+ +o+� LO 0 c� 7 c� 7 �I 5 m d r LO LO LO d C p +P +j + o m (3) N c (3) QQ C Lc-) Lc-) QQ LO 5 +o+ +o+o+o+ +o+ +o+� c � 0 cY7 1— o 0 c LO �7 QQ [� �7 LC-) L +o+ +o+o+o+ +o+ +o+� [� 0 0 0 0 C +P+ +P+P+P+ +P+ +P+` N 0 QQ � 0 0 � 0 c 0 0 0 0 0 0 o N QQ N o3 cr7 c c � cr7 � cr7 c c � c +H + +d + +d +` �I l9 [— m Ln rn N 7v r--I U [I [I [I P4 o o 4-) 4-) 4-) 0 co co co 0 ZD) � � co -H > co co H X XFl� X X v In Q o m o o CY) O m L(7 CY) Gi o �l C ----------------- ----------- O i ;i....... +� 0 +� C'� +I C'� C�'i +� +� +� N C' C'� C' +� +� C�'i +� �— C'' +I a +I 0 +� +� 1- ,� N N C' +� +� +� cY7 ,� N C' +� �� T-I N +� 0 C' +� a +� +� +� +� + +� + +� + +� LO ,� 0 I— T-1 m o Ln C'� C' m Ln (3) 0 LC c'� + T-1 +� + T-1 LO o 0 +I +I +1 LO QQ 0 +1 +I Ln +I 0 c', +I . +� QQ +� C' CD +� N QQ +0 +0 + N +0 +� +� N +� t� • +� (3) LO C' � �I 0 QQ o 0 M N QQ 0 (3) C'� LC • o +I +� tq 1— Ln � L +O o +I c +I • + M + M 0 0 +m + P- M +c + m m +0 � + (y LC)C'� +0 1 + +c � � 0 j +m +� + � C' +m +c, -0 o) +0 LC +c ►"I +� + • 0 +m N m +� +� + 1 N +7 + • QQ +, d +1- 0 �- � P- LO �l LO Id 0 E- +c +c +m +7r +0 + +7r + +c +c 0 1— m 0 N C' � LO 0 �c- Lr 7 C $4 ij +y'+•+7q'+7r+7+•+7r N O [- 0 � 0 [- 4y' 0 � C', N d r -r M +�+�Il+�Il+ LC) QQLc) +1+ ++1 • ■ i 0 C'� C� i C'� C� i C'� C'� m 0 0 C', .ri 4 +o+o+o+o+o+o+o+o+o+C rd LO In Q Qa o 0-� r- r- r- r- 0-� o Qa dv Ln 7:T 7:T 7:T d, d, d, Ln d, . . . . . . . . . . co co t- t- cv cv t- t- co a dv dv dv 7:T Ln Ln 7:T 7:T 7:T d co o-� Ln Ln o-� �9 co j d� dv Ln Ln dv dv 7v d r- cam] C� (am] o r- I- Ln Lr Lr) Ln Lr Ln Lr L(-) LC 03 cv L(-) cv Ln a Lr) Ln Ln + + + 03 N d'' G] dv N a �f) L 03 1- 03 03 a +� + + +� + 03 t- 0� Cy cn n t- (x 03 03 cz) t- 03 G� a +� + + + I- o I-. (n 1- 03 1- 03 t-- t- t- G� a M M dv L(-) GJ� Ln dv m ff oz) � t-. t� t- G� a + + 03 (N cv [-. 0 + �� +C' �� + �� + 03 N Cz) dv 03 [— a + +0 a a +� �� +C' +� + +P + +P +�-- d' Ln Ln Ln L 7 Ln d + +� + $4 (D 0 al N -H -H 4 a� A A rd rd U v m m co U di � di � co Q0 rn IT 0 0 0 0 0 0 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q ----------------- ---------- +O + +O +O +O + +O + +O +C c' c +o+ +o+o+o+ +o+ ,� +o+� 00 +o+ � +o+o+o+ C9 00 C9 +o+ T-1 c +o+� 00 � cr7 00 � -IrLn c'� Ln Ln Ln c'� Ln cocr 1 m c c +o+ +o+o+o+ +o+ +o+� Ln +Q Ln + +Q d" +Q � +Q Ln + +Q + Ln L +Q +C d" L +O L[ 7 + +O +O O +O L[ 7 + +O O + +O + L [� +O +O �d O +H +H +H +j +H I 00 C +O +C d" 00 +O c, O + [— �d +H M N +H d" m +H m + m N +H �d + C'� 5 O c +� + C' C9 N C' C9 �I �I m d" Ln +j 00 d" O d" C� C T O +� + • m L[ 7 QQ + L[ 7 +� + • �I C +� + 0 C9 O �d O L[ 7 O O C �I � Ln Ln Ln (n +� + + +� + +� + O 00 [� 00 QQ C $4 aI b, + + + + + + + + + + N ri m c H Ln Ln Ln Ln Ln Ln Ln L .ri I ---------------- ------- r� r.::a..r...... rd P*h 'd m U C7) a) U [I [I [I 9: 7v o m (d c� 0 0 0 o � o 4-) 4-) 4-) co co co a 0 ZD) v (0 0 x ZD) x x co co E-HXX In Q Oi O Oi O ----------------- ---------- O +O T-I + T-1 +O T-I T-1 +O T-1 +O O T-1 + �I T-1 +O T-1 + 1 ;i.......5 T-1 C +O +C O +O +c cY7 +O � +O � +O + +O + +O +C +O + +O +O +O + +O +1 +O +C m +O m tq + 00 +O m m +O O m +O O m + m +O O co + tq c +O +C Q c +O c � + +O 00 +O m +O m + +O m + co +O +C LO C O LO m C +o +o +o [— +o [— +o +o [— +o +o +o +� +o+ +o+o+o+ +o+ +o+� O Ln O Q7 O QQ O Q7 O C Ln L O +O + • O +O Ln O +O Ln O +O QQ + O +O Ln + •0 O C +O +C Ln a� O +O O j + O +O LnLnLn O O +O O O +O O + O +O Ln O + O C +O +C j,5 O C +p+j+p+p+p+] +p+j +p+� $4 (D ri LO CDO +O �- �7 + Q7 +O Co Q7 O +O Co QQ O +O 1- �7 + QQ CD +O Co �7 + QQ C +O +C 00 r Er 4 O +o +o O +o O +o O +o +o O +o +o O C +o +C rd co r► V ilk rd L} LO N r- co 4-) • • o U N LO � m b � CD � [I [I [I CD� � N o 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx (x 4-J bi 0 Z3) 0� 0 •� Fl� > CO �4 -rl (D x ZD) x x x�4 >Fl� � F-I 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers2 e3bl740-120-277v tcm201- Description: ERS2 E3B1740-120-277V File Name: ers2 e3b1740-120-277v_tcm201-95325.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 11600 Luminaire Watts: 130 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.607 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Spacing - Row 2: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers2 e3b1740-120-27... 900 -6 40 90 0 0 ers2 e3b1740-120-27... 675 -6 40 90 0 0 ers2 e3b1740-120-27... 450 -6 40 90 0 0 ers2 e3b1740-120-27... 225 -6 40 90 0 0 ers2 e3b1740-120-27... 0 -6 40 90 0 0 ers2 e3b1740-120-27... -225 -6 40 90 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft ers2 e3b1740-120-27... -450 ers2 e3b1740-120-27... 900 ers2 e3b1740-120-27... 675 ers2 e3b1740-120-27... 450 ers2 e3b1740-120-27... 225 ers2 e3b1740-120-27... 0 ers2 e3b1740-120-27... -225 ers2 e3b1740-120-27... -450 Total Number of locations: 14 -6 40 90 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q o I 00 M, o ----------------- ----------- - QQ +O m 00 + 00 +O Ln 7 [� 00 +O [� + m m +O + c�'7 � 00 +O co + 00 +O +C mt QQ +O + 00 +O 00 +O m +O + 00 +O � 0 N QQ +O + T-1 1� +O T-1 1� +O O 00 +O + T-1 1� +O + tq c +O +� CD QQQQ +o+ [- +o+o+o+ tq m QQ QQ +o+ m +o+� -Ir r Q 00 QQ QQ T-1 QQ CD QQ QQ 0 00 00 +o+ +o+o+o+1 QQ QQ � QQ QQ QQ +o+ � 00 c +o+� 0 T-1 00QQ +o +o +o +o +o +o +o +o 00 c +o +� -Ir [- +O oo + 00 tq +O 00 P- Ln +O (,� �d Ln Ln +O + 1� P- Ln +O (,� �D + ol 5 03 r +O +� +O [- j + Ln +O O Ln +O QQ +O j + QQ Ln QQ O r LO +O d" + • LO +O [— d" +O Ln d" +O + QQ d" +O Ln + • QQL +O +C M 5 ■■� +O m 1 + +O m +O O Ln +O + Q7 Ln +O O Ln + +O +C [— c { +p+1+p+p+p+]+p+1+p+� Ln[—�LnQ�Ln�[—L QQ QQ Ln -ri ri V ---------------- L7 +O --------1 21 +O 1 [- +O 1 00 +O 1 M +O +O 1 1 00 +O +O 1 1rd [- L +O +C a..r...... G) r--� co Q0 LO IT Z � N � bi Va 11 11 11 Q0 co rn ra�,o rn m o o o co co co o ZD) � � 0 x ZD) x x a�X �XX In Q N C� O 5 QQ m Lc" 011 I— Lr 7 I— [- OC I— r- LCII M c +o + �� +� +c +c +,' + -F' +� tg L[ 7 +O + 00 Cb +O N O +H � N C +H N O � [- +O +C -Ir C' 7 1 QQL7 Lc-) QQ M c�7 [� L7 QQ Q7 Ln 5 d C +O [- + +O d" +O [- +O + m +O [- + +O +� [- C N +O QQ + d" +O d" +O L[ 7 +O + d" +O + m C +O +C N +O +O +O +O +O +O +O +O +O +� +O + +O +O +O + +O co + 00 C N C +O +� +O +O +O +O + +O + +O + N +O � + d" +O QQ d" +O Lc-)MLc-)�7 L[ 7 +O + d" +O + m C +O +� �r 7 5 +O QQ + Lc-) +O 00 QQ +O N [� +O + � QQ +O N + d" C +O +� -Ir L[ 7 +O QQ + Cb +O [- O +H [- N C +H + O O O +H [- + [- [- +O +C Lc-) +O + Lc-7 QQ r-� C- C7) 03 OD o m � m �► U [I [I [I w C7) 7V M -- co r— N 0 0 0 . 0 . .H -H -H �oNo��4-) 0 co co co 0 ZD) co -H > co co H X XFl� X X In Q m Lr7 O O Lr7 co m ----------------- --------- Q Ln o c Ln c� m c� Ln �n m c� c O �K c� LC +I m +� c +� O +� 00 +I +I —'r +� +� 00 +� +� c� +1 +� +1 +1 +1 +� +1 +1 +1 +1 M m O O M cY7 c � +1 T-1 +1 cr7 +1 m Ln c � +1 00 00 cr7 +1 +1 00 QQ c � +1 +1 00 00 cr7 c +1 +1 m M d 00 c Ln Ln Ln 00 a O CDc� c, +� O QQ +� +� m N +� 00 +O Ln +� �� 00 c +I +I QQ c tK +1 N +� O +1 00 +O m +� +� 0 +O +� +1 +1 M c', O • Lc 00 O �l -'r 1� 1� O �l c Ln c O +I c� +I c +O o +c� � +c� +c � +c� + � +I +I Nc, • o +� + M +� +m +� + +m + c� 7 c +O +1 O O N O N O c +o+•+`',+7r40+ +�'+•0 +�+c (,] c mO Lr 7 O c +� +c +7q, +�Q +- + +�Q + +c +F aLOI-1� 1� L� +c + • +�Q 4— +�Il + • 4— + • +� +c a) QQ r— QQ�r N +m + +� +r +PO + +r + 40• +� ri Ln O M O c� 7 LC O �K 'ri +o+ +H+H+Hrl + Ln c rd In Q dv Ln Ln Ln La La Ln Ln Ln 7:T . . . . . . . . . . o r— Ln co o o co Ln r— c Ln �D Lc c co c (n co c� co co co co co r (n 171 G) Cz) G� dv (Y Qo oc co co G� c + + + r-I CO Cz) l0 co C-D r La [- [-• 03 1- -1- co LS + + + o dr G] LC-i CO Ln C �lc) + �� +C' �� + �� + N La d'' 7-I 7v CN co [� [� LC i r� r� Ln [- [- CX Q0 co I- L9 CO CI-) CO co t— Ln + �� +C' �� + �o (n cz) Cv Cv c rn �s r- [— LC-i Ln Ln co [- + + �� + r-I (n LC-i Co Ln L9 r [- t9 LC-i dv Ln [- [- + �� +C' �� + �� + cv (n cz) t— co Ln c� �a Ln 7T+ 7v 7v �a o� co T+ Ln cn j d� dv d'' dv dv Ln d C) [- LC) � La [- C d� d� dv d'' Ln 7v d� dv d +� + + +� + $4 (D 0 al N -H -H 4 A A rd rd U v LO 00 U Q0 IT LO �D rn o Q0 rn IT 0 0 0 0 0 0 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H V 0 co -H > co co al�XXFl�XX In Q 01 c m m (9 m c' 0 ----------------- ----------- - +0+ +0+0+0+ +0+ j ,;;,.......c +0+� N tg o 0 0 � c +0+ +0+0+0+ +0+ +0+� +0+ +0+0+0+ +0+ +0+� N c � LO c M c � m cr7 tq QQ cr7 m cr7 M c Lc-)c c � c +0+ c� +0+0+0+ o� —'r m +0+ —Ir +0+� tq c +0 + o +0 —Ir o Ln o 0 ,� +0+ m � +0+0+0+ M 0 +0+ o 5 +0+� c +0 +0 +0 +0 +0 +0 0 +0 +0 QQ 5 +0 +� QQ +0+ cY7 M +0+H+H+ tq o o 0 0 Lr 7 0 +H+ 0 M �— +0+c o c �— CDN CD m N c QQ N m +1 o r CD +0 +. + +� +. 0 >1 0 [— +0+ ,d M 0 L7 0 QQ + 0 Lr 7 +�+ � c o r +�+c [� o� m Lr 7 [— [— L 7 �d [— [— 0 C m c aIm +P + . +� +� +c +c . +� + $4 b, o + + co QQ + m o + m c� c + + o + + � c + + 'r H Ln QQ o c� m � o c� m o r .r..i I +0+0+0+0+H+ +0+0+0+c Y►---------------- --------1 21 1 1 1 1 1 1 1 ..r...... AIR.rd P*h co 'd Q U Lf7 rn 0 N a) U [I [I [I m rn b r- N 0 0 0 0 oNo��4-) co co co a 0 ZD) v (0 0 x ZD) x x co co E-HXX LO H In Q 00 100 m 00 � ----------------- ----------- - CD +O + CD +O CD +O CDO +O + CDO +O + ,;;,.......� O C +O +C 00 CD CD CDCDCD[ CD�I +O + +O � +O � +O + +O � C +O +C +O + +O +O +O + +O + +O +C O c m m m m c � c mcY7 c � C N +O + +O +O +O + +O + +O +C +O m + +O o +O +O + +O + +O +C O c O +o+ o C 0 �-m 0 +o I 0 +o 0 +o +o +o CD +o +o r CD C +o +� QQ O +o+ Ln O 00 O +o+o+o+ 1-0[� 00 O 00 O O [� 00 O +o+ [� O O C +o+� �7 L CD +O 1 + CD +O CD +O CD +O + CD +O 1 + CDC +O +C d" Ln Ln Ln Ln Lo O +O + • O +O O +O O +O + O +O + • O C +O +[ [ j O d" d" O d" O d" d" O d" O d" d" C O C +O + +O +O +O + +O + +O +[ am O � O � O � O � O �[ O C +p+1+p+p+p+]+p+j+p+[ N O O +P O O O +P O C ■ Ji LO O QQ O O O [— O Q7 L O C ■ +O +O +O +O +O +O +O +O +O +C a I---------------- --------� 21 r R.rd ilk rd co H H } r— m m ''}} o Rd co�} �} �4 o� 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 >Fl�X F�XXX� In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 0 I �4 �4 co 'Zil I 0 a �4 v� o w� w0m • 0 Q � N 0 H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 I �4 U co U �-1 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- 0 0 �--) o �4 0 co �5 0 r-I � co > 0 4-J .H v� o 4-J 0 �D4 >1 0 � co U �5 m co F-I 4-) (D � a rl 04 4-J 0 I ZD)� rx -H 0 N L0 ('r} N (:� fIQ a rl 04 4-J 0 0 4-J N Q0 f:� rzl 0 0 0 � 0 0 �� 0 Fl � -� >i4-J-H (0 (0 Cf� N �4 �4 0 4 �4 �4 �4 F� 0 0 0 1 U r-I CO � x Q u I I o o N -T r, r- U � 4-JI m � 0� I� N N m I �7 �4 o o N O N 7v L0 o 0 o N W Q N o X -TI� N x f]QF-A o � rho'TQ0000N orx�� o rx 1 0 0 1 1 0 � (2� U 0 I I 0 I �4 4-J U ,Q 4-J 0�-H co � + H I I o o N -T r, r- U � 4-JI m � 0� I� N N m I L7 �4 o o N O N -T Lo o 0 o N W Q N o X -TI� N x f]Q x Ln o N rho-TQ0000N N N N N 0 � �ofZNN�o 0 N 1 rx 1 0 0 1 1 0 F ZD) (2� U 0 I I 0 I �4 4-J U co � + H �. mom CD Lam. In Q rAv rn rn r--� co m �-o Ln 7v . . . . o r-� N r-� l0 m r-� [- o r-I N r� 0 0 0 r-I rn7vmr-rnoo CO [- N CO o oc�omr�m 7vQ0Nr--�Q0r- r-7vmm1nrn o r� o N di r-� 0 0 0 U w H x x x co co r-iIFl� X X Fl� X rn N a N rl I F-A Q0 rn o 1n co Q0 rn IT Q0 IT1-0 . . . . . . 0 0 o r-� N r-� co �-o m m co burn-T -Tr-�-T o 0 o U a pql 0 0 0 Fl� > 0 x ZD)xx � IF� co m rn Q0 r- r- N o Ln rn ocoocoo NN u�7vomQ0m co l9 r-� di • al 'a . . . . N U o r-� o l9 r- r� a� mp bi 14 R� HI 0 0 0 a 0 ZD) > 0 x p)x x rmiIF� co m m r- or-�oQ0 000N r-� o di Ln r-� N o [- 000co pol i!! v 0 -1 CO v �4 ---� ---� r-I F� X X In Q 0 r0 V) . rl 04 4j CC) 0 0 �l �r--�or--� 0 a N N 0 -P m 0 o N r--� >1CDcom - . . . co �l Lnr--�or --� E-I 0 0 0 .H -H -0 -0 0 H � rx 0 Fl� > M x x x �4 N • L� In Q a U] W L) Z a ,o o LL ;t W w W a W w a z J R CC LL .c L m E W v L(7 u7 N N LJJ a w> v v m LO (3) Ln LO Ln LLI v v 0) v v J t� m J LO C.0 N 00 N J r r J � G7 G7 v � Cv C U � > U (1] W J .. o tom] .— E� a E� ° U) _ .0 �F - ._ .� L a 4i E ° Q W U ' E Q .. �$ Q t� N X x x v r L LI 0 m Q Q J UJ C� .. �$ Q t� r L) v o Lo r o C co L 0 0) .L cc U cc U 0 a) m FL 0) 'U CL (n a v v 0 E U Q v 0 L. Q z U) w W F- LU m a a a Z 0 V W J U) U m � [U � '(v (v _ 0) 0 C CY) v U) J 2 0 v 0 r 00 LO r I;t N E v 0 �I () .E J v v °D v � Ln C)- v r Q U Q -� 0 0 w� J C7 CQ � J v cY) L. v v 0 0 Z J J 0 v 0 0 ry n .. Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ATB2 40BLEDE10 XXXXX R2 Description: ATB2 40BLEDE10 XXXXX R2 File Name: ATB2 40BLEDE10 XXXXX R2.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 15685 Luminaire Watts: 138 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Spacing - Row 2: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 40BLEDE10 XXXX... -450 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... -225 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 0 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 225 -6 40 90 0 0 ATB2 40BLEDE10 XXXX... 450 -6 40 90 0 0 ATB2-40BLEDE10-XXXX ... 675 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft ATB2 40BLEDE10 XXXX... 900 ATB2 40BLEDE10 XXXX... -450 ATB2 40BLEDE10 XXXX... -225 ATB2 40BLEDE10 XXXX... 0 ATB2 40BLEDE10 XXXX... 225 ATB2 40BLEDE10 XXXX... 450 ATB2 40BLEDE10 XXXX... 675 ATB2 40BLEDE10 XXXX... 900 Total Number of locations: 14 -6 40 90 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q In m C9 �-Qj m I- �d ----------------- ---------- +o+ � +o+o+o+ +o+ 1;l.......C. +o+c C9 0 0� F— cY7 F— F— cr7 F— 1 0 C 0 c +o+ +o+o+o+ +o+ +o�� o CD o M o 0 Ln o 0 -,r c o c � o m o o m +H+ 0 +H+o+o+ 0 1� 1� +o+ �— +�+` c Nc c� C9 o N o N c N 0 N cY7 �I [— o 7I [— c m c -Ir c N o 0 o c rn c � +�+ o cr7 d cr7 0 Ln + cr7 +�+ 0 C9 c +�+ Ln C 0 0 0 m M 0 Ln j m m c c 0 +o+1+o+o+o+ m 0 0 0 +o+1+�+c o c 0 �— +o+ �d 0 +o+o+o+ 0 1— C9 1— 0 1— +o+ 5 0 r +o+c Ln QQ m �— 0 tq 0 tq o QQ C� 7 L �— C +p++p+p+p++p++p+� Ln C9 [— C9 m C9 1� C9 [� m C9 [� M L QQ• C ■ J � [� C9 Ln C9 o C9 QQ [� 0 C9 r C9 C • ri �] T U �yrd +O +O +O +O +O +O +O +O +O +C Q co 7v r-I di Z � N � bi Va 11 11 11 � N l9 m ra rn m�-o o o o CD � o 4-J 4-J 4-J co co co o ZD) � � 0 x ZD) x x a�X �XX In Q 0 a OI d" d" d d" i� it O 00 00 00 CD 00 :I.......r 00 c c'� -Ir Ln -Ir ,� LO Ln -Ir o c LC 5 m +O + Ln +H M +H m +H �— 00 m m m r +O L[ 7 + +O d" +O N +O Q7 + +O N + +O +� dr L LO a] a] a] Q7 L L[ 7 N Cb 00 C' Ln 7 L d" +p +� QQ +p �7 +p �d [� +p +� Q7 +p +� LC) 5 +p +� L[ 7 -Ir +p Ln + N Q7 +p Cb Q7 +p �d [- +p + 00 QQ +p C' �D + LC) L Ln 5 +p +� QQ LC) LC) LO +O N + d" +O 00d" C'� a] +O QQ a] +O + a] +O d" + CX7 dV L Q7 L +O +C C +p + 00 +p m +p [� +p [� + +p + �I +p +� +p+ +H+H+H+ +H+ +�+� N O [— LO r �d Ln � Ln � O C Ln 7 5 --F, + m -F + --F, +` O �d 00 + +� 00 +� O +�� +� 00 +H + 7 00 C � +` r--�mQ0 mLnc7) N7vr--� U [I [I [I W �-TLO 0 0 0 0 0 0 co co co 0 ZD) co -H > co co H X XFl� X X v In Q m Lni o m QQ QQ Ln Lq o o m r, m L7 a Lf ----------------- ---------- --- +� +1 +� +I +I +I +1 +1 +I a +I �— N � o o 1— ,� �n tq tg �n ,� o Ln o E- c , cr7 �� �� c +� c +� c c +� �1 c c + I +� cr7 +� (Y +� LO o c N m T-1 LO N c -Ir T-1 c LO c � QQ LC a c� +1 c + +I +1 +1 +1 +1 +� c� +1 c, +1 c� c CD c�'7 0 tq c�'7 CD � d c, +� QQ m +� + m LO + M + +� QQ + +� m + m QQ +� tK G +1 m +� o +1 N +Q +Q + +Q +1 +1 Ln +1 a cY7 c c o a +1 o QQ c o o �� o +1 � N +1 a t� • o +I +� �— +O o +�I � +c� +c� o +�I +O o +I c +I o • o + + QQ -r QQ +c 4y, + QQ Q +c + ,d +o c c + o � � M � o c QQ +� + LO +c m +m +� + m +m +c +, � +c ►"I QQ c QQ m o m N tK QQ +, + • � +m o +7r F— 40 + o +� m +, tK 0 -'r LO � � E- ,� +m 0 + +� 0 +0 M +0 + � +0 + o� +m cY7 +a a N � +� + • 0 +� o +�n c', c +�n + • o +�n + • cY7 +� c +d QQ c � , d m Ln o o o N c Ln , d o c � co6 tK a) • r m Ln o Ln o d cY7 o c cY7 c a .ri +o+o+o+o+o+o+o+o+o+c 4 rd LO In Q Ln C co Ln �-o �-o Ln co C Ln . . . . . . . . . . Q0 r- Q0 Q0 m m o-� Ln r- j Qo Qo Qo (s o co (n t- G', (n tc) r- 0-� �D t- C a +o +o +o +C +o +C +o +C +o +C C]� co N [-• r- r--� [— r- 0� 0-� d j +� + + +� + +� +C co C dr r� C Cz) N Cz) co cod� cor-I a C . +71 + . +71 n +C' +� + +� + +71 +r co r-I d� r-I (Y") C� 0-� (n C) Qa N a r +7 + +71 +7- +� + +71+ +71 +r N cv dv cv r i N r 1 C r-I dv to m c, cl . +71 + . +71 II . +7-1 +71 + . +71 + . +71 +r C cv Ln cv r-• cv C� C r- C Qa rn C C\ +71 + +71 +7-1 +71 + +71 + +71 +r Ln r-I C �-a r-I 7T, �-o C� C� 7 C7 C (n Lf r +� + + +71 + +71 +r �a C co C cv C� 0-� r--i C C cv � C . +71 + . +71 II . +7-1 +p + . +71 + . +71 +r 7v c� C C Lr) 0-� ol, co L-n 0-� co o d a t- Ln 03 cz) t- 03 G� j t- +C +C +c' +C + +C + +C +C 0 c\j cv t- a $4 (D 0 al N -H -H 4 a� A A rd rd U v o, o, U C LO rn m Q0 0 0 0 C � C 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H V 0 co -H > co co al�XXFl�XX In Q CO, m m (3� (3) G) 00C ----------------- ------------- +O + +O +O +O + +O + +O +C �— CDc'� cY7 c'� o) r +o c' + +o +o +o + +o � m +o+ dr +o+o+o+ LO LO LO +o+ dc +o+� M LC7 O [— QQ[— M QQ QQ [— C�7 [— [— O C QQL +O +O +O +O + +O + +O +C �I C' N O m O C' N [� O (5) QQ O O N C' O [— 00 C d" C +O L[ 7 + �I N m m + O N +� m + CDC LC-) L O C' d" LC 7 Q7 LC 7 N C �d +� d" + Q7 [- oo 00 + [- +� �D + -v +� + QQ C�'i C�'i C� � C C'� 00 O �I �d O LO C N LC 7 M LC 7 C' QQ C d" +� + (5) + • +� + 0 C Q7 (5) C� 1 C QQ(3) O �I O 00 —r + +r +C +C +C +C + +�I + O [— LO (3) C'� (3) O (3) C'� (3) (5) C 00 C +�+ + + + aI C�7 ('� co QQ QQ co N c LC7 LC7 LC7 �d �d Q7 LC7 Q7 L N + + + + + r • ■ i Lr7 Lr7 S .ri +o+o+o+o+o+o+o+o+o+C 4 rd Gl 'd m U a) U [I [I [I m co b c� 0 0 0 � N o 4-) 4-) 4-) co co co a 0 ZD) v (0 0 x ZD) x x co co E-HXX In Q �i LO LO Lq Lo LS d ----------------- ----------- 3 +O + +O +O +O + +O I + ;i.......0 +O +C d" +O + � +O CD +O CDCD[� +O C' + +O + C' 5 +O +C O +O 00 CX7 + C' +O L[ 7 Ln +O +O + +O + L{7 +O +C C'� C N +O 00 C' + +O Q7 [� 1 +O 00 [� +O 00 [� + [� +O 00 + c +O +C m C +O [� + +O LO +O +O + +O + +O +C +O L[ 7 +O +O M +O d" + IM +O + +O +C 00 L +O +O +O +O +O +O +O +O +O +C +O Cm + Q7 +O 00 +O C� i m +O d" + 00 +O CYi + C' d" C +O +C C CD�I +O + +OC'� +O +O + +O + �I C +O +C T O +O QQ + • �7 O +O [� O +O [� O +O 00[� + O +O + • [� O C +O +C -0C aQQ O +O O + O +O QQ O O +O I-� O O +O O + O +O O + O C +O +C �� O ( $4 +P+1+P+P+P+1+P+1+P+C �— O C0 00 O 00 O 00 O C0 00 O Co 00 C O C N 'ri o o C .r. 4 +o+o+o+o+o+o+o+o+o+C rd Q0 G) U [— [— '' L7 Q0 4-1 . o m U �o 0o Rd l9 [I [I [I CD�4 � N 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx (x 4-J bi 0 Z3) 0� 0 •� Fl� > CO �4 -rl (D x ZD) x x x�4 >Fl� � F-I 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS3 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 64 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 2 Driver's Side Of Roadway: Right Luminaire Information: ers3 j3al540-120-277v tcm201- Description: ERS3_J3A1540-120-277V File Name: ers3 j3a1540-120-277v_tcm201-95469.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 14000 Luminaire Watts: 151 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.98225 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 225 Spacing - Row 2: 225 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers3_j3a1540-120-27... -450 -6 40 90 0 0 ers3_j3a1540-120-27... -225 -6 40 90 0 0 ers3 0 -6 40 90 0 0 _j3a1540-120-27... ers3 225 -6 40 90 0 0 _j3a1540-120-27... ers3 _j3a1540-120-27... 450 -6 40 90 0 0 ers3 j3a1540-120-27... 675 -6 40 90 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft ers3_j3al540-120-27... 900 ers3_j3a1540-120-27... -450 ers3_j3a1540-120-27... -225 ers3_j3a1540-120-27... 0 ers3_j3a1540-120-27... 225 ers3_j3a1540-120-27... 450 ers3_j3a1540-120-27... 675 ers3 j3a1540-120-27... 900 Total Number of locations: 14 -6 40 90 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 70 40 270 0 0 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. 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'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 1 General: American Electric ATB2 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 76 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 3 Driver's Side Of Roadway: Right Luminaire Information: ATB2 60BLEDE70 XXXXX R3 Description: ATB2 60BLEDE70 XXXXX R3 File Name: ATB2 60BLEDE70_XXXXX_R3.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 17127 Luminaire Watts: 133 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.76175 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1: 260 Spacing - Row 2: 260 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ATB2 60BLEDE70 XXXX... 780 -6 40 90 0 0 ATB2 60BLEDE70 XXXX... 520 -6 40 90 0 0 ATB2 60BLEDE70 XXXX... 260 -6 40 90 0 0 ATB2 60BLEDE70 XXXX... 0 -6 40 90 0 0 ATB2 60BLEDE70 XXXX... -260 -6 40 90 0 0 ATB2 60BLEDE70 XXXX... -520 -6 40 90 0 0 1 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 1 - Cont. Luminaire Location Summary: Coordinates in ft ATB2_60BLEDE70_XXXX... 780 ATB2_60BLEDE70_XXXX... 520 ATB2_60BLEDE70_XXXX... 260 ATB2_60BLEDE70_XXXX... 0 ATB2_60BLEDE70_XXXX... -260 ATB2 60BLEDE70 XXXX... -520 Total Number of locations: 12 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 z AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q o OD OD CD CD,: -------------- --------- =- LS ] � q LS ] �9 Q �9 LC, Q9 �9 Q9 LS ] ,.......r Q9 L +O + +O + +O +C +O + +O + +O +` C C- Q9 0-) d' C- 7--1 -;�r' d 7--1 C- C- C- d' 0-) C- C- C QQ C +� + +� + + +� + r C� O O� Lrl LS ] O o ] O �9 O� C + C + N �C, Q9 I +� + C N +C + CDO� +' + C- C� +C +C +C + +C + C +� +` C C C +� + 7--1 C OD +' + Q9 -1 r C- C- C- C- +C +C +C + C- OD C +C + C- C C C +� + C d' C +� + Q9 OD t7� +C + OD _Nr' -:v OD C9 LC, Q9 +C +C +C + OD Q9 C� +C + d' ( C C +� + O� +C + C O� +C + Q9 LS ] Lr' LS ] +C +C +C + Q9 O +C + 0')C Q C C� +C + Q9 +C + d' _Nr' -:v +C +C +C + LS ] +C + C� C +C +` C� d' LS ] +C + Q9 d' d' +C + d' CAI N o-) o-, o-) cq +C +C +C + C d d' +C + N C LS +C +` o-) LS ] �'"] d' 7--1 0-)N o) O--, OD o) CAI N r-1 d' 0-)0-)r LS ] C +C + +C + +C +C +C + +C + +C +` C O O� N C N CDCDN C +C + +C + N n n rr n n n c d O� CDC CD 0')O C9 ILS] O 0-)$4 o-) C9 OD O C9 OD L +C + +C + +C +C +C + +C + +C +` w OD 0-) C� d-' Lr, LS ] G'� LS ] Lr LS ] Lc C[-Cam]( LS ] d-' ( ��•ri L{ ] d N LS ] 0) Lf'� Ln LS ] �C �9 d-' LS ] r-1 L LS rt�-------------- ---------El I I 1 1 I I I I I I 1 1 I I I I I I I I 1 1 1 1 I I I I I I I I I I 1 1 I I I I I I 1 1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I n V rd I I I I I I I I I I I I I I I I I I I I I I I I r- N 7v 0 0o co b, Nm� ca 11 11 11 � co r— co ra Lo o N o o o CD � o 4-J 4-J 4-J N 11 11 11 co co co o ZD) � � 0 x ZD) x x aFl�X �XX In Q 0 a N N 0 0 HI [11 I 8 'a 0 y q -�7 I_q 1 1 1 +� + +� + +N + +� + +� + C +� + d +' + C� OD OD +' +�1 +� + LS ] +Y-1 + N C +Y-1 + OD +C + C +F + Q9 0-) 0- 0-) +' +F1 +� + Cam] 1 +� + CD CDC +Y +C Q9 C +C + +C + +C +C +C + +C + +C +C C LS ] LS ] +C + 7--1 Q9 Q9 +C + C� O-_' OD Q9 LC' Q9 Q9 +C +C +C + LS ] Q9 Q9 +C + d C LS ] L +C +C Q9 C'`i +C + C� d Q0 di +C + 0-)d-' C� C� C� di �� di +C +C +C + �� d-' di +C + d-' +C +C CDC +C + +C + +C +C +C + +C + OD +C +C LS ] C N +C + N +C + N C\I N +C +C +C + N +C + N C +C +C N N N +C + C� O N N +C + C� C- C� N C\I N N +C +C +C + OD N N +C + LS ] C N C +C +C C- C N +C + �9 0-) d' n"] +C + d1 d' _Nr' d d' n"] rr� n"] +C +C +C + C- � C- d' 0-) n"] +C + C C n"] C +C +C � C 0-) +C + C d +C + d �' d +C +C +C + C- O--' OD d +C + LS ] C C +C +C d C LS ] +C + r-1 Q9 +C + Q9 LC' Q9 +C +C +C + Q9 +C + LS ] L +C +C C C- C- Q9 OD d C` C- O OD Q9 C C- C OD +C + C- �I +F + 0-) 0- 0-) +' +F1 +� + LC' Q9 Cam] +� + Q9 CDC +Y +C NI CDd +� + O� 7--1 +' + d' 7--1 C- O-' OD +' +F1 +Y-' + C- Lf,� LS ] Ln +Y-' + Q9 Cam] C +Y + C C 0-) +Y-' + Q9 +' + OD C C O +' +N + C- +Y-' + Q9 r +Y + n t t l9 N �I 03 m 7v m (5) N U [I [I [I wLOLON co o 0 0 0 �oNo��4-) 0 co co co 0 ZD) co -H > co co H X XFl� X X v In Q L[ 7 0-) - o-) o-) �9 o-) N L[ 7 C\ C- Lq d1 01 Nis i.......0 d1 d1 +I +I +I +I 0-) L-[ 7 d1 d-' d1 d1 d1 d +I +I +I +I +I +I +I +I C- d' d1 N L-[ 7 (y r o-) Ln �9 d1 d1 +I +I +I +I �9 O--, OD �9 �9 Ln Cr] r d1 d1 d1 d1 d +I +I +I +I +I +I +I +I Q9 C C- Ln C- d1 d1 +I +I +I +I N C- O� cif OD LC, Q9 O�) C- C Ln �K Q9 [- C- Q9 C- LC d1 d-' d1 d1 d1 d +I +I +I +I +I +I +I +I 7-I c5! cif cif Ln C\ C� LCLQ [� cif O: d1 d1 1 I +I +I +I � O� Q9 C O d1 d-' d1 d1 d1 d +I +I +I � +I � +I +I OD C\1 N O 0') N O: Ln d-' d1 OD r 5 d1 Ln +I � +I � r-1 r-1 d1 d' d1 d1 LS ] d +I +I +I �1 +I +I +I +I OD �1 r-I O 7--1 7--1 r C 7--1 0) d1 Ln d1 +I +� +I +1 C G, c) C d1 c) 7--1 C 0') d1 LS ] LC +I +I +I +I +I +I +I +I C\1 d1 OD O d1 C +I +I +I +I C- C- Ln ] d1 �1 r-I d1 OD O d1 C C- L', Ln Cam] 01) (Y N C N C d1 d +I +I +I +I +I +I +I +I 7--1 Q9 7--1 I- N Gil 0) OD Ln LC N �I +I +I +I +I O d1 0') Ln d1 d1 C C C C N C +I +C,+C +I +I +I +I +I LQ L' Ln LQ 0 C d' d1 C d1 d1 Ln c, +C + +' + +m + +m + +N + +C +C OD C- C C9 r-I OD C- CC, C9 C- C9 C C- O: C LS'� Ln C O d1 r i� d1 C n'] O C �C� Q9 �1 Lr Ln N N 0 OD Ln C +�o + +O� + C9 +' +F1 +Y-' + +p +O +�o +� C- L'� Ln Cam] 7--1 0') �9 C LCi C9 7--1 O 7--1 C �S 0C r ni d1 d1 d' d1 d1 ni C Ln C- C� C Cam] 0 C O • d1 7--1 LCi C9 d1 OD C r- o-) +� + +F + C 7--1 Ln LS ] Lf -� LS ] -P r- r +' -F +� + +� + +Y-1 +r C -1 7--1 Ln Cr] C OD O Cam] C I�I C N +Y-1 + +F + -1 7--1 0') d' d1 0') C +' +F1 +Y-' + +Y-1 + +Y +r w d1 LS ] C Ln cc C C- C� 7--1LC0 d c) L(7 Ln cq LC QQ C ��•ri +C9 + + +C- +C9 +CS Ln N [� OD C9 O--� OD d1 7--1 LC 0)C C 0)O c) C- ■ rl +C + • +C + +C +F1 +Y + +C + +C +C YI -------------- a I N ---------El 1 1 1 1 I I I I I I I I ;:i............. 1 1 1 1 1 1 1 1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I cq I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I rd n V I I I I I I I I I I I I I I I I I I I I I I I I W �o a� >1C7) -PLn Ai .N > >m LO In Q to o Ln m c� Ln Ln c� m Ln o to N QQ �d m 00 � � 00 M �d tq c1 +o +o +o +o +o +o +o +o +o +o +o +c QQ QQ 00 00 �d �,D -v �D Lr 7 �r 7 tD tq tq �r 7 �r 7 �r 7 �-r --------------- --------- --. + +CP + +CP + . Q M Ln QQ Q7 LC +O + +O + +O +C +O + +O + +O +C m C' 00 INV d" C'� 00 C', [� [� 00 00 [- [-- [- [- co 00 E- +O + +O + +O +C +O + +O + +O +C +O + +O + +O +C +O + +O + +O +C Q7 Cy") M co C' QQ C' O O 1� co O C m 00 C' M Q7 ff O m �,O QQ co 0 O C +�I + +O + +O +C +O + +O + m 00 m oo O N QQ N O m 00 ff +O + +O + +O +C +O + +O + +O +C 00 ff) M m m I- +O +O +O +O +O +O +O +O +O +O +O +C L7 L7 m c" a m Q7 Lf +O + +O + +O +C +O + +O + +O +C �7 M d" 6 s �d d" [- M � C�'i C'�] C'� m C�' +O + +O + +O +C +O + +O + +O +C O O C' ] C m M J ■ +O +O +O +O +O +O +O +O +O +O +O +C co O m C c � c cr7 cr7 cra cr7 sr7 c � c ^ +O + +O + +O +C +O + +O + +O +C C'� d" �7 �7 [� [� [� [� Q0 r� C� C� i (Y) +O + +O + +O +C +O + +O + +O +C L7 C', Ln -o (y, C' oo LS +O +O +O +O +O +O +O +O +O +O +O +C al (D N • ri .r 4 v a --------------- ......... . . . . . . . . > . .rl � cv v Ln m m ti � rn co 03 Ln o 0 0 0 CD � o 4-) 4-) 4-) co co co D ZD) biCO r, r,XXFl� �4 -H -H b co -H > co co al�XXFl�XX In Q f: N N C� N C� N is i.......0 -------------- --------- C C C C C C C C C C C C +� + +� + + +� + +� +C C C C C C C C C +C + +C + +C +C +C + +C + +C +C d-' C d-' C Cr] Cr'� Cr] C C C d-' C d-' C C +C + LS ] +C + LS ] +C +C +C + LS ] L' LS ] +C + LS ] +C +C LS ] L C +C + C +C + C C C +C +C +C + C +C + C C +C +C CDCDCDCDCD +C + +C + C C C +C +C +C + C C +C + C ( +C +C N] N] +C + N] 0-) +C + 0-) Cr' 0-) 0-) +C +C +C + 0-) N] +C + N] C +C +C d-' [- O cif c5� cif Q9 N] +C + C- N] +C + Q9 N] C\I N] +C +C +C + �9 L,� LS ] N] +C + C- N] C +C +C C d +C + LS ] +C + LS ] Lf, , LS ] +C +C +C + LS ] +C + r LS +C +C OD C- OD +C + LS ] +C + C- C- C- +C +C +C + C- +C + C- C C +C +C r-I C d' OD 0-) OD OD OD OD r ] n 0-) OD d' 0-) r-I C N] C +� + +� + + +� + +� +r r ] 0-) LS ] �9 [- rr �9 C +� + +F + +' +FI +� + +� + +Y-1 +r C- LS ] 7--1 C d 0-) C C C C- L 0 +r + +r + +Nl +N 4\1 + 4\1 + +r +r N O C- OD C r-I Nl 0-) O' OD 0-) 0- 0-) 0-) d Nl r� OD C OD C +N +�I 4\1+ 4\1+ +� + I OD C� LS ] OD C LS] C' C 0-) �� d1 0-) N] C- L I +� + +N + 4\1+ +N + a) r L-{ 7 c r-I +Y-' + 7--1 Ln +' + Cam] O--' OD OD of 0) O +' +FI +Y-' + C- Q9 LC +Y-' + C L 0-) +Y-' +r H ILS r-I O ] C Q9 OD -;�r' -:ri O Q9 C` C- -:ri j Q9 OD LS ] L ri El----------------------- [yra rd LO rn U • CD co .-w r--� N . di r--I N U [I [I [I 9:moN (d co IT 0 0 0 0 o N o 4-) 4-) 4-) co co co a 0 ZD) v (0 0 x ZD) x x b ---� co co E-HXX In Q -------------- -------- 0 0 0 0 d CDC, CD0 d 0 0 ;; ,.......r o C + + + + Qa r- 0 OD OD 0 OD OD OD OD o c, o OD OD 0 r- � o C O N 7--I 7--1 7--1 O C 0-) Q9 �9 Lr7 I_[ ] �I �9 I_[ ] C N d �9 �9 L[ 7 L[ 7 L[ 7 L[ 7 �9 �9 d C CD +� + Q9 7--I +� + C- 7--1 -I 7--1 +� +C +� + C- C- C- 7--1 +� + C- 7--1 C Q9 C CD CD CD CG CD CD CD C CD CD CD CD CD CG CD CD CD CD CD C CD CD CD CG CD CD CD C +� + +� + + +� + N CD N CD N C\I N CD CG CD N CD N C CD C +� + +� + + +� + N CD N CD N C\I N CDG CDCD N N C CD C N CD CD N CD CD N C\I N CD CG CD CD N CD CD N C CD C C\I C I N CD +P + N CD +p + N N CD CG CD +p +C +P + N CD +P + N CD C +P +C a) N cl, CDC N CDC N C\I N cl, CDC�CDC N cl, CDC N C CD( ■ri �■ N CD N CD N C\I N CD CG CD N CD N C CD C ri I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I cq I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I n V ra I I I I I I I I I I I I I I I I I I I I I I I I co 0 1� H H V r- v► ' c Um 00 N N o� 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � � > CO -rl (D x ZD) x x x�4 >Fl� � � 6�6 Attachment B y■■■■■�� ��ghfing '■�y,s�adyiA1991yqul�dBAI� X<!rn1Hy��i,x*eivJ��iliivn4ii.:vkW.rs.��.r,��,vFw. i199�N� 9i I 11" �f, ryy';�fJr✓ n'^it:�hirm� . A , , �i y,�i�V,.� 'u ^✓ m;,�rjW re, .r. i.. 'ii+�iv ................................................................................................................................................................................................................. Roadway Optimizer - Layout 2 General: GE ERS4 LED Luminaire Roadway Standard: IES RP-8-14-IDOT (entire roadway) R-Table: R3 (Slightly Specular), Q0=0.07 Actual QO Value: 0.07 Roadway Layout: Layout Type: Two Rows, Opposite; 2R OPP Roadway Width: 76 ft Lanes In Direction Of Travel: 3 In Opposite Direction: 3 Driver's Side Of Roadway: Right Luminaire Information: ers2 f3bl740-120-277v tcm201- Description: ERS2 F3B1740-120-277V File Name: ers2 f3b1740-120-277v_tcm201-95326.ies Lumens Per Lamp: N.A. Number Of Lamps: 1 Total Lamp Lumens: N.A. Luminaire Lumens: 13100 Luminaire Watts: 148 Efficiency ( a) : N.A. Total Light Loss Factor: 0.700 Luminaire Arrangement: SINGLE Arm Length: 10.607 ft Offset: 0 ft Luminaire Location Summary: Coordinates in ft Spacing - Row 1 : 260 Spacing - Row 2: 260 Label X-Coord Y-Coord Z-Coord Orient Tilt Spin ers2 f3b1740-120-27... 780 -6 40 90 0 0 ers2 f3b1740-120-27... 520 -6 40 90 0 0 ers2 f3b1740-120-27... 260 -6 40 90 0 0 ers2 f3b1740-120-27... 0 -6 40 90 0 0 ers2 f3b1740-120-27... -260 -6 40 90 0 0 ers2 f3b1740-120-27... -520 -6 40 90 0 0 9 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. Attachment B Roadway Optimizer - Layout 2 - Cont. Luminaire Location Summary: Coordinates in ft ers2 f3b1740-120-27... 780 ers2 f3b1740-120-27... 520 ers2 f3b1740-120-27... 260 ers2 f3b1740-120-27... 0 ers2 f3b1740-120-27... -260 ers2 f3b1740-120-27... -520 Total Number of locations: 12 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 82 40 270 0 0 AGi321Roadway Optimizer - Copyright 1999-2616 by Lighting Analysts, Inc. In Q - —� O d1 Lq d1 O� 7--1 -------------- --------- r•:e......r +� + +� + + +� + +� +` OD C Q0 Q0 �-o L', LS ] Q0 C— C +� + N +� + OD O + LS] C o-) +� + 0-) C Q0 Q0 LS ] Lr LS ] LS ] C— C r O C— OD LS ] O C— LS ] (\I LS ] r, -:v LS ] LS ] C— OD C (\I OD +� + C— C C-- +� + 0) LC, Q0 0) di �, di + C C— �9 +� + N 0) ( LS ] d1 LS ] d1 L OD OD LS ] —1 7--1 d' _Nr' -:v m L'� LS ] LS ] C 7--1 0-) C C� O +� + Q0 +� + 0-) C 0-) +� +C +� + LS] +� + C +� +` O� �-o C— +C + d LS ] d' +C + LS ] —I 7--1 o-) o-, o-) o-) +C +C +C + d d' LS ] +C + C C C— C +C +` [— C— LS ] LS ] C— d1 o-) —I � o-) ni C�' ::� ni C— LS ] ni C— C LS ] L +O + +O + +O +C +O + +O + +O +` w■ n" C �I C C d Ln r +C + +C + +C +C +C + +C + ...i 0-) Q9 �I C C �I C— C C rr rr d N O C C m Qa �a m �� � � � �a �a m LS ] c Ln $4 +P + +p + +p +P + +P + +P +` m � r— C C Ln�� C 0 c -:v� .ri C�"] LS ] cif Q0 �I CAI N C� Q0 cif r Q0 L -------------- � --------- I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I cq I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I n V rd I I I I I I I I I I I I I I I I I I I I I I I I 1' ! c— c— oo o Q0 z � m � bi ca 11 11 11 �LONCD ra Lo rn m o o o co co co o ZD) � � 0 x ZD) x x aFl�X �XX In Q 0 a (D N 0 0 HI [11 I 8 'a 0 +� + +N + +N +C\I +N + +N + +N + 0-) OD C +� + C Q9 d +' + OD C- [- OD Q9 I--C� +' +�1 +� + Q9 C d+� 1 + OD C 0-) C +Y-1 + Q9 LS ] +C + d OD C� +C +O C� CD[- [- CDC CD +' +F1 +� + C �C� Q9 0-)1 +C + N 0-)C C- L +C +C N n +C + d +C I Q9 LC Q9 +C +C +C + I_[ ] +C + d r +C +C d N 0-) +C + Q9 0-) 0-) +C + o-) L' LS] d1 d1 d1 +C +C +C + OD cq cq +C + N cq C +C +C 7--1 -:v N +C + C� OD 7--1 N +C + o-)C- o-) L', LS ] o-) C'"7 �'"� C�"7 +C +C +C + c5� cif �I OD +C + LS ] d N C +C +C CDC +C + Q9 O +C + +C +C +C + -:v L'� S ] L +C + N +C +C O� C +C + 7--1 +C + C\I +C +C +C + +C + +C +C Q9 O �I � +C + rl Cam] N +C + -:v L' LS] N C\ N N +C +C +C + N N N +C + O� C 7--1 7 +C +C C- C �I +C + 0-) LS ] N +C + O� C- G , 0') [- N C\I N +C +C +C + o-) LS'� LS ] LS ] 0-) N +C + O C C N +C +C d1 r-I N +C + d N +C + Q9 O 0-) 0- 0-) +C +C +C + o-) L,� LS ] r-I 0-) +C + O� r N C +C +C N N +C + 0-) +C + +C +C +C + +C + +C +C d n d +� + Qa C� -:v LS ] +� + o� C �C� Q9 �9 LC �9 �9 + o r— r— N LS ] d +� + 0-)o N d r 0-)� LS ] +C + 0-) O C� +C +O C CDC CD +' +F1 +� + OD C� [- O +C + Q9 C- L +C +C OD C CDd +� + o-) +' + LS ] Q9 C- C- +' +F1 +Y-' + C- [- O d +Y-' + C d 0-) C +Y-' + LQ C Q9 -----fi +N +�1 +N + t +N + t +N + I:i'......... {1r} m L{-j Q0 rn di �I N �► U [I [I [I w 00 Q0 -- �- 0 0 0 �oNo��4-) 0 co co co 0 ZD) co -H > co co HF� x xFl� x x In Q OD d1 d Cy V Ln Ln C d1 Cam] OD 0 d1 d1 d N C d1 -------------- ---------- I:•:e......s7 +I +� +I � N OD +I +I +I �� +I +1 +I +I Q9 C CD d1 O --1 C 7--1 [� Ln d1 d1 d1 +I +I +I +I d1 Ln LS ] d1 d1 LC7 [� r d1 d-' d1 d1 d1 d +I +I +I +I +I +I +I +I d1 �1 C- N 0-) d1 d1 +I +I +I +I C� cif 0') C LS ] C C C- Cr] d 0) OD OD 0)Q9 C ni C'"ni ni d1 d +I +I +I I+I �� +I +I d1 Lf,� LS ] o-) N C` i- ] r d1 Q9 d1 0 ni d1 I +I +I +I +I OD LS ] [- Q9 ni C ni ni d1 +I +I +I +I +I +I +I +I N S ] d Lf,' L1 Q9 a [- n r N C 0-) +I +I +I +I Q9 Q9 N C\1 N N d1 (Y +I +I +I +I +I +I +I +I C d1 CD N �K C- OD CD N +I +I +I OD r-I CDQ9 Q9 C\I N N C OD C` N +I +I +I +I +I +I +I +I OD O LS ] LS ] a Cr) C` C- Cam] 0') C Cr N +I +I +I +I Ln r-I C� Ln C C C �I n") n` +I +C +C +I +I +I +I +I 0) LQ LC LC� Q9 C Q9 C` N �I +I +� +I +� N CD Ln ] • C N C C\� C +C +F1+Y-' + +I +� +I +I 0) C N C` C- Ln Ln C N O--, OD N N C N +I +I +C + 1-1C +N +C\1 +N + +� + +I +I OD Ln C C\] 0) • o ] CDC d1 O: C� C\I N C� 0) Cam] C LC OD LQ C +I +I +' + +7�3, + +N + +I +I ^' C� C OD I---LS [� C- r-1 d1 C` ] Lr, LS ] 0') N O: +C + +N + +n +� +� + +� + +y +C Ln C d1 d1 OD Lf'� Ln O Q9 d1 LC C O- OD d1 C- d +y-, + • +�v + • +� +� +� + +�n + +N +r d1 Cr] 0) CD Ln ] OD +N + +n + d1 O Q9 01 0) n CDd d1 �C! Q9 d1 Ln C 0 +O� +5 +i� +O +� + +d1 +� Q9 C\I N OD d I r-I ni • +� + + +O ni d1 r CD CD +' +� +Y-' + +OD + +�o +�f 7 -1 O� O� d1 Cr] L (- Ln 0) O CDr OD C\ N O C o) a +LS ] +OD +C- +C- +LC ri ri OD OD Q9 C\1 N d1 O C O: �-Q LrLn (y ■ r +Y-' + • +' + • +' +F1 +Y-' + +Y-' + +Y-' +r -------------- a I N ---------n 1 1 1 1 I I I I I I I I I:i'............. 1 1 1 1 1 1 1 1 I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I CN I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I In Q 00 O Ln Ln 00 O r— 03 -1 . + �� + �� + +C +O +q +O +q +O �� LO �d QQ �,O QQ -Ir QQ LC QQ 00 1� E� 00 t� +O + +O + +O +C +O + +O + +O +C QQ +O + +O QQ + +O +C QQ +O QQ + Q0 +O + +O +C C'� L-[7 " dO CYO CYi d" Q0d" C', QQ I QQ Ln LF) Ln LO [— +O + +O + + +C +O + +O + +O +C LO Q7 C'� (75 M C' a) M Lr tg �— LO -�T' � LO 00 +O +O +O +O +O +O +O +O +O +O +O +C d" C [— O 1-- [— O -1 00 L_n -�T' -'r Q0 [— m a +O + +O + +O +C +O + +O + +O +C O -'r QQ QQ Q0 Q C m � �' � Ls7 m6 +O + +O + +O +C +O + +O + +O +C O O �,O Q QQ C 00 tq cra M LO 00 a +O +O +O +O +O +O +O +O +O +O +O +C [� 1� L O m (Y ) m [� [� +O + +O + +O +C +O + +O + +O +C M M a) O d" d" O a) M ff +O + +O + +O +C +O + +O + +O +C as N O O C' L o O a m (Y) LO -1 L V +O +O +O +O +O +O +O +O +O +O +O +C �] QQ [� �I O O CY7 O mCYi CYi m +� + +� + + +� + +� +c 0 O d" d" �I C'� C' ] C'� C'� �d d" d" C m C� CYi (Y) CYi CY +O + +O + +O +C +O + +O + +O +C I C'� CYi CYi CYO CYi SYi CYi C', al (D N •rl .r 4 v a --------------- - -n . . . . . . . . ,. cv� ,d b rd U U rn �— b Ln :T C7) LO rn N 0 0 0 0 0 0 4-) 4-) 4-) ra co co co D 0 ZD) bi(0 r, r,XXFl� A4 �4 -H -H b co -H > co co al�XXFl�XX In Q - C C- C- C C- �Q -------------- --------- w C C C C C C, C o w C o I:•:§......I.. C c +C + +C + +C +C +C + +C + +C +` C— OD 0 OD 0') 0 C C, C C � -I � 0') OD C OD C C c +C + +C + +C +C +C + +C + +C +` LS ] 0-) r-I r-I r-I r-I r-I r-I r-I r r-I r d r� rl C Cam] Cam] d �C Q9 Cam] C\ N N cq N (I [- rl r C d N +� + C- C N +� + N L (-, LS ] C\] 0-) � 0-) + C C- 0-) +� + d C N C C Q9 d1 LC� Q C C -:P9 d1 C i� C �' r LS 0-) LS ] LS ] L r LS ] LS ] d1 C O7 O d' LS ] Q9 �9 C- C- C- C- C- C- �9 LS r r Q9 r C- OD O LS ] C, C LS ] 0) C, C C- r-I OD O r-I r C- C +� + +� + + +� + +� +` C- O d1 0) N c5� cif r r-1 r-I C OD C r C- O� C O7 C 0-) (\I C 0-) N O 7--1 LS � C 0 +C + • + • +� +�I +� + • +� + • +C +C a rl OD C +� + LS] �l Cam] +F + d C C d �C Q9 d1 +� +�� +� + LS] N � +� + rl C C +� + C I C_ I 0-) Qa r-i C_ C-O-_OD Q0 C_ d ODC N'at I +� ++' + +' +FI +� + +� + +� +r-I -ri Yi ro O r-I +Y-' + r-I LS 7 Lr +' + C C� C OD of 0) O +' +FI +Y-' + C- LS 7 Lc +Y-' + OD r -:v r +Y-' + H I r-I Qa O C O OD r-I r-1 r-I OD C ri -------------- a I N --------- I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I cq I I I I I I I I I I I I I I I I I I I I I I I I I +f I I I I I I I I I I I I I I I I I I I I I I I I n V ra I I I I I I I I I I I I I I I I I I I I I I I I P*h 'd U [I [I [I 9:LOoLO b Q0 rn o 0 0 0 o � o 4-) 4-) 4-) co co co a 0 ZD) 0 x ZD) x x b ---� co co E-HXX LO H In Q -------------- ---------- � C C C C C C, C C C C L•:e......r C c +C + +C + +C +C +C + +C + +C +c LS ] Q9 C Q9 Q9 C Q9 L-, LS ] Q9 C C C Q9 Q9 C Q9 L C C Q9 C OD C C— LC� Q9 C C C C— O C C— C C C O� C C— [— O 0') C C C �I C C C C �I C �I �I C\] �l C O'! 0') �l C C �I �l �l �l Cam] 7--1 7 �I Cr] �I +� + 0-) C\] +� + C 0', 0') C C C + Cam] 0-) +� + 0-) C O'! 0') �I C N C O--� OD �I C N � C +� + �I +� + +� +C +� + +� + �I +� +C O� C C C C OD O-_� OD O C C C C C C C C C Q9 C C C C C C C C +� + +� + + +� + A ' LC7 C Q9 C Q9 �C' Q9 C C C Q9 C Q9 L C C +� + +� + + +� + d1 C LS ] C LS ] Lf ,� LS ] C C C LS ] C LS C C C C C C C C C C C C C C rr] rr] C $4 C +P + C +p + C C C +p +C +P + C +P + C C +P +C N C C N C C N 0-, 0- C C C C N C C N C C C ri �I C C\] C N C\I N C C C N C N C C ri � I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I cq I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I I n V ra I I I I I I I I I I I I I I I I I I I I I I I I m {Y} 1� H H V Q0 v► co UN o� 0 0 0 00 0 0 0��4-J 0 H co co co -H a i i i rx rx rx 4-J bi 0 � � 0 •� � Fl� > CO -rl (D x ZD) x x x�4 >Fl� � � In Q rAv 0 b a C- ^ 0 Q � H � I � Q � � w � o F4 U 1 �4 �4 co 'Zil I a �4 v� o w� warm • 0 Q � N U H PQ �4 1 E-i -H T r� Fl� (0 7-A 0 1 �4 U - H co U �-1 �5 a �-1 -H 4-) F4 (2� -rd �4 U 4-) r- U 0 Q o �4 0 co �5 0 r-I � co > 0 4-J .H v� o 4-J 0 �D4 >1 0 � co U �5 m co F-I 4-) Q � � a rl 04 4-J 0 I ZD)� rx -H 0 f:� fIQ a rl 04 4-J 0 0 4-J rxQ0 -Ho N [- (Y} (Y} fZ rzl 0 0 0 � 0 0 �� 0 Fl � -� >i4-J-H (0 (0 Cf� N �4 �4 0 4-) F-I �4 �4 �4 F� co 0 0 0 1(10-0 U r-I CO � x Q u I I o o N -T r, r- U � 4-JI m � 4-4r- I� m I o �4 o o Q0 U N 7v l9 0 0 o N W Q m o X �I� N x f]QF-A o Q0 rho'TQ0000N orx�� o rx 1 0 0 1 1 0 � (2� U U I I U I �4 4-J U ,Q 4-J 0�-H co X � + H I I o o N -T r, r- U � 4-JI m � 4-4r- I� I o �4 o o Q0 U N -T l9 0 0 o N W Q m o X �I� N x f]Q x o Q0 rho-TQ0000N N N N N 0 � �ofZNN�o 0 N 1 rx 1 0 0 1 1 0 � F ZD) (2� U U I I Fl rI (o -H -H (D I ,Q �4 4-J U ,Q 4-J 0 =� -H co X � + H Li N U-) rn 0 0 cor- U-) o o 1� CD Lam. 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O N L4 L4 Gl �I O rq ol� di 03 oz 0) Q cn di d 03 " c Lo () Cfl E �QD0 m Ln P- LLo Ln cu d 03 L(7 N o t4 di Ln P- c N P- cam --' N d1 r � m 731 Ln o cc P P- Ln 12 .� .� C� co 0 0 c� P- Ln _ 0) N Lf CL ❑ OM Om cu O N a P- o 7v 7v 00 c\� _ _ .0 3._, Cfl o s zQ� o La)� c :2 � �cszww 0 Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Appendix D — VOMP Police Department Correspondence From: Joseph M. Vondra, PE, LC Sent: Monday, June 05, 2015 11:12 AM To: 'Eterno, Mike' Subject: RE: VOM P Street Lighting Mike, Thank you for the response. No worries in the delay, your tiring is perfect as I just received a request to meet with Public Works tomorrow. I will incorporate your response into the report and discuss tomorrow. Thanks again! Joe From: Eterno, Mike [ma i Ito: M Eterno@mou ntprospect.org] Sent: Monday, June 05, 2015 10:55 AM To: Joseph M. Vondra, PE, LC Subject: RE: VOM P Street Lighting apologize for the delay in responding to your email, but I was out of the office a good portion last week, due to meetings and other commitments. We did speak and while it would be great to install street lights in all of these locations we understand that's not a logistical possibility. And as such we believe the following locations, based on the volume of pedestrian and/or bicycle traffic, would benefit from the installation of street lights: • Busse Road o I-90 to Algonquin Road o Dempster Street to Golf Road • Dempster Street o Redwood Drive to Elmhurst Road • Golf Road (IL 58) o Goebbert Road to Mount Prospect Road • Main Street (IL 83) o Central Road to Camp McDonald Road • Rand Road o Central Road to Euclid Avenue Appendix D-1 6/20/201 G RECI IBA GROUP I Consulting Engineers Attachme p5;Y �hCA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation hope this helps and again, I apologize for the late response. Please let me know if you need any additional information or any other assistance. Mike Fill IF *; Field ODivision i1 r% Mount Prospect Ponce Department t 112 E. Northwest H g h wa y Mount Prospect, IL 60056 (847) 870-5679 (847) 392-1070 - fax meterno mountprospest.org From: Joseph M. Vondra, PE, LC [mailtojvondraftorba-corn] Sent: Wednesday, June 01, 2016 2:52 PM To: Eterno, Mike Subject: RE: VoM P Street Lighting Mike, Just checking in to see if you have had a chance to discuss this. I'd like to submit to Public Works next week and want to rake sure ray ducks are in a row. Thank you, From: Eterno, Mike [ma i Ito: M Eterno@mou ntprospect.org] Sent: Monday, May 23, 2016 5:51 PM To: Joseph M. Vondra, PE, LC Subject: RE: Vo M P Street Lighting Joseph, Appendix D-2 6/20/2016 Attachme p51"y CA Village of Mount Prospect ,. Street Lighting Capital Program Corridor Lighting Evaluation wanted to let you know I have received your email and I will be meeting with ray supervisory staff later this week. once we've had a chance to sit down and discuss, I'll let you know what we core up with. Mike Field ODivision r 'f Mount Prospect Ponce Department 112 E. Northwest Highway Mount Prospect, IL 60056 (847) 870-5679 (847) 392-1070 - fax meterno mountprospest.org From: Joseph M. Vondra, PE, LC [mailtojvondraftorbaxorn] Sent: Thursday, May 10, 2016 1:30 PM To: Eterno, Mike Subject: VOMP Street Lighting Deputy Chief Eterno, My company is working for the VOM P Public Works department, studying the potential installation of new street lighting along several key routes within the Village. At this time, there are no definite plans to install additional lights, but Public Works has asked us to identify the potential cost as well as recommend a plan for installation. This study will be included in the Village's 2016-21 strategic planning process. We recently completed a survey of the key routes and have identified the locations listed below for the installation of street lighting. As part of our recommendation, we would like to include input from the VOM P Police Department. Your input will be considered along with traffic volumes, adjacent land use and roadway configuration to prioritize these potential improvements. can you review the list below and identify locations that, in your opinion, will benefit the most from the installation of street lighting? Feel free to add other comments such as high accident locations or other concerns that you may be aware of. ■ Algonquin Road o Busse Road to Elmhurst Road Appendix D-3 6/20/2016 Attachme ,,�:: p5;Y �hCA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation • Busse Road o I-90 to Algonquin Road o Dempster Street to Central Road • Central Road o Emerson Street to Edward Street • Dempster Street (IL 59) o Redwood Drive to Elmhurst Road • Euclid Avenue o Rand Road to Des Plaines River Road • Golf Road (IL 58) o Goebbert Road to Mount Prospect Road • Main Street (IL 83) o Oakton Street to Sunset Road o Central Road to Camp McDonald Road • Rand Road o Central Road to Euclid Avenue o Euclid Avenue to Camp McDonald Road Please contact me with any questions of if you prefer to discuss this over the phone. Thank you for your assistance with this study. Joe Joseph M. Vondra, PE, LC 1... ii htiin 7 '..r`raffic & naI & I'T' Project En iineer ConsW-Hng En iineer 8807 North Cumberland Avenue, Suite 402 Chicago, Illinois 60886 (773) 388-2964 - Direct (630) 606-8894 - Mobile (773) 778-4009 - Main (773) 778-4014 - Fax ivondraciorba.com www.ciorba.com Follow us on Linked I n Appendix D-4 6/20/2016 MECIORBA GROUP I Consulting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Appendix E — Electricity Charges Calculations A veraae Monthiv Electricity Charaes (2015 Month Amount January $ 8,998.82 February $ 6,694.76 March $ 6,598.78 April $ 5,028.99 May $ 4,693.42 jHRe $ 3 I 253.26 $ 1 1 B23.o;z August $ 4,692.25 September $ 5,015.68 October $ 5,866.08 November $ 6,354.91 December $ 7,216.99 Average: $ 6,200.00 Year (Avg. x 12): $ 75,000.00 Note that the months of June and July were not included in the average because they were abnormally low when compared to all other months. Appendix E-1 6/20/2016 CIORBA GROUP I ConsUting Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Dollar per Watt Calculation Currently installed inventory: Type Wattage Quantity (1) Input Watts 2 (} Extended Watts HP5 50 44 64 21816 70 21 87 11827 100 7 120 840 150 232 183 421456 175 1 208 208 200 52 240 121480 250 191 305 581255 400 244 478 1161632 MV 150 88 175 151400 175 2 208 416 200 2 244 488 250 24 291 61984 400 1 456 456 LED 100 equiv. 5 100 500 200 equiv. 2 150 300 250 equiv. 65 200 13 000 Halogen 50 20 70 11400 250 1 305 305 MH 50 11 70 770 250 7 291 21037 Totals: 11013 275,533 Installed Load 275,533 (watts): Yearly Electric Cost: $ 75,000.00 $/W $ 0.28 Note 1 — lamps of an unknown wattage were assigned to the most common wattage for that light source type. Note 2 — input watts are based on GE ballast data at 240 volts. Appendix E-2 6/20/2016 Village of Mount Prospect Attachme ,,�:: p5;Y �hCA Street Lighting Capital Program Corridor Lighting Evaluation Proposed Street Lighting Annual Electricity Charges Calculation Corridor # of luminaires Input ExtendedWatts Watts Algonquin Road 65 130 81450 Busse Road 34 151 51134 38 148 51624 14 222 31108 55 88 41840 Central Road 22 189 41158 Dempster Street 48 196 91408 Euclid Avenue 7 7 196 151092 79 274 211646 Golf Road 91 274 241934 Main Street 123 130 151990 36 222 71992 66 151 91966 19 274 51206 Rand Road 77 151 111627 12 274 31288 48 130 61240 Totals: 904 Extended Watts: Number of New Luminaires: Watts/Luminaire: 1621703 1621703 904 180 Luminaires Quantity Watts per Luminaire $/W Annual Cost New 904 180 0.28 $ 45,600.00 Retrofit 11013 180 0.28 $ 51,100.00 $ 96,700.00 Appendix E-3 6/20/2016 MECIORBA GROUP I ConsUbng Engineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Appendix F - Maintenance Expense Calculations Year Work Order # # of Electrician Hours with No Cost Electrican Labor ($36.52/hr) other Labor (from Work Order)Materials Total Labor Benefits Vehicle & Total 2014 859899 24.0 $ 875.48 $ 31283.44 $ 41159.92 $ 41159.92 $ 11733.68 $ 10,053.52 2014 859900 $ - $ 11025.60 $ 11025.60 $ 11025.60 $ 505.25 $ 21559.45 2014 859913 4.0 $ 145.08 $ 170.95 $ 317.04 $ 317.04 $ 335.81 $ 970.89 2014 859914 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 158.40 $ 485.44 2014 877293 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 277.53 $ 515.31 2014 877295 0.5 $ 18.25 $ 21.37 $ 39.53 $ 39.53 $ 51.99 $ 141.25 2014 901395 $ - $ 21257.68 $ 21257.68 $ 21257.68 $ 11896.64 $ 51412.00 2014 901397 $ - $ - $ - 2C14 901398 $ - $ - $ - 2014 901399 $ - $ - $ - 2C14 901400 $ - $ 21154.60 $ 21154.60 $ 21154.60 $ 51879.72 $ 10,188.92 2014 907477 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 58.25 $ 225.78 2014 907478 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 124.45 $ 282.97 2014 907479 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 78.07 $ 235.59 2014 907480 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 134.25 $ 292.78 2014 907585 0.5 $ 18.25 $ 21.37 $ 39.53 $ 39.53 $ 39.05 $ 118.31 2014 907587 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 331.59 $ 490.21 2014 907595 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 331.59 $ 490.21 2014 907815 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 83.08 $ 241.50 2014 907904 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 83.08 $ 241.50 2014 907910 0.5 $ 18.25 $ 21.37 $ 39.53 $ 39.53 $ 41.29 $ 120.55 2014 907915 0.5 $ 18.25 $ 21.37 $ 39.53 $ 39.53 $ 41.29 $ 120.55 2014 907992 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 555.94 $ 804.72 2014 907994 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 359.25 $ 575.29 2014 907995 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 359.25 $ 575.29 2014 908002 1.0 $ 35.52 $ 51.34 $ 87.85 $ 87.85 $ 125.54 $ 302.36 2014 908003 1.0 $ 35.52 $ 51.34 $ 87.85 $ 87.85 $ 125.54 $ 302.36 2014 908005 1.5 $ 54.78 $ - $ 54.78 $ 54.78 $ 328.94 $ 438.50 2014 908005 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 174.45 $ 491.50 2014 908192 0.75 $ 27.39 $ 32.05 $ 59.45 $ 59.45 $ 56.30 $ 175.20 2014 908194 0.75 $ 27.39 $ 32.05 $ 59.45 $ 59.45 $ 56.30 $ 175.20 2014 908195 0.75 $ 27.39 $ 32.05 $ 59.45 $ 59.45 $ 56.30 $ 175.20 2014 908195 0.75 $ 27.39 $ 32.05 $ 59.45 $ 59.45 $ 56.30 $ 175.20 Appendix F-1 6/20/201 G MECI IBA GROUP I ConsultingEngineers Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Year Work Order # # of Electrician Hours with No Cost Electrican Labor ($36.52/hr) other Labor (from Work Order)Materials Total Labor Benefits Vehicle & Total 2014 908257 0.75 $ 27.39 $ 32.05 $ 59.45 $ 59.45 $ 87.23 $ 205.13 2014 908250 1.5 $ 54.78 $ 54.12 $ 118.90 $ 118.90 $ 232.80 $ 470.50 2014 908252 1.5 $ 54.78 $ 54.12 $ 118.90 $ 118.90 $ 245.54 $ 484.44 2015 909851 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.23 $ 229.75 2015 909852 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.23 $ 229.75 2015 909853 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.23 $ 229.75 2015 909854 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.23 $ 229.75 2015 909855 2.5 $ 91.30 $ 105.85 $ 198.15 $ 198.15 $ 307.25 $ 703.58 2015 909855 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 275.95 $ 594.00 2015 910335 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 275.95 $ 594.00 2015 910337 1.0 $ 35.52 $ 51.33 $ 87.85 $ 87.85 $ 71.23 $ 245.93 2015 910339 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 275.95 $ 594.00 2015 910341 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 337.58 $ 813.14 2015 910342 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 337.58 $ 813.14 2015 910585 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 187.28 $ 504.32 2015 910597 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 172.55 $ 489.50 2015 910598 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 172.55 $ 489.50 2015 910700 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 172.55 $ 489.50 2015 910701 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 172.55 $ 489.50 2015 910704 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 449.49 $ 925.05 2015 910931 $ - $ 54.11 $ 54.11 $ 54.11 $ 48.45 $ 175.57 2015 911035 $ - $ 255.44 $ 255.44 $ 255.44 $ 449.49 $ 952.37 2015 913520 2.5 $ 91.30 $ 105.85 $ 198.15 $ 198.15 $ 217.58 $ 513.90 2015 913521 3.75 $ 135.95 $ 150.29 $ 297.24 $ 297.24 $ 494.94 $ 11089.42 2015 913522 42.0 $ 11533.84 $ 11795.08 $ 31328.92 $ 31328.92 $ 11384.04 $ 81041.88 2015 914432 6.0 $ 219.12 $ 255.44 $ 475.55 $ 475.55 $ 11208.61 $ 21159.73 2015 914433 6.0 $ 219.12 $ 255.44 $ 475.55 $ 475.55 $ 11236.78 $ 21187.90 2015 914435 5.0 $ 182.50 $ 85.48 $ 258.08 $ 258.08 $ 187.28 $ 723.44 2015 914448 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 184.14 $ 501.18 2015 914449 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 50.53 $ 219.15 2015 914542 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 78.82 $ 237.34 2015 917908 4.0 $ 145.08 $ 205.32 $ 351.40 $ 351.40 $ 21561.77 $ 31264.57 2015 917909 4.0 $ 145.08 $ 205.32 $ 351.40 $ 351.40 $ 475.93 $ 11179.73 2015 918291 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 159.42 $ 485.46 2015 918292 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.71 $ 231.23 Appendix F-2 6/20/201 G Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Year Work Order # # of Electrician Hours with No Cost Electrican Labor ($36.52/hr) other Labor (from Work Order)Materials Total Labor Benefits Vehicle & Total 2015 918293 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.71 $ 231.23 2015 918304 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.71 $ 231.23 2015 918305 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.71 $ 231.23 2015 925572 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.71 $ 231.23 2015 925573 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 74.11 $ 232.53 2015 925574 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.45 $ 229.98 2015 925738 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 50.53 $ 219.15 2015 925739 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925740 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 72.40 $ 230.92 2015 925741 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925742 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 76.01 $ 234.53 2015 925743 1.0 $ 35.52 $ 21.37 $ 57.89 $ 57.89 $ 41.14 $ 155.92 2015 925745 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925747 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925748 0.5 $ 18.25 $ 21.37 $ 39.53 $ 39.53 $ 40.43 $ 119.59 2015 925951 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925958 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925959 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 159.42 $ 485.46 2015 925950 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 71.23 $ 229.75 2015 925953 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 184.14 $ 501.18 2015 923273 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 142.45 $ 459.49 2015 925310 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 153.05 $ 470.09 2015 925311 4.0 $ 145.08 $ 170.95 $ 317.04 $ 317.04 $ 398.20 $ 11032.28 2015 925312 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 229.58 $ 705.14 2015 927395 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 425.78 $ 902.34 2015 927397 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.75 $ 229.27 2015 925598 4.0 $ 145.08 $ 170.95 $ 317.04 $ 317.04 $ 293.52 $ 927.50 2015 925599 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 59.95 $ 228.47 2015 928500 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 59.95 $ 228.47 2015 928501 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 73.77 $ 232.29 2015 928504 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.95 $ 229.48 2015 928520 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.95 $ 229.48 2015 934481 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.10 $ 338.88 2015 934482 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.10 $ 338.88 2015 934483 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.10 $ 338.88 Appendix F-3 6/20/201 G Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Year Work Order # # of Electrician Hours with No Cost Electrican Labor ($36.52/hr) other Labor (from Work Order)Materials Total Labor Benefits Vehicle & Total 2015 934484 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.10 $ 338.88 2015 934500 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.27 $ 339.05 2015 934501 4.0 $ 145.08 $ 170.95 $ 317.04 $ 317.04 $ 418.82 $ 11052.90 2015 934502 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.10 $ 338.88 2015 934503 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.27 $ 339.05 2015 934504 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.27 $ 339.05 2015 934505 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 270.04 $ 745.50 2015 934505 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.27 $ 339.05 2015 934507 1.5 $ 54.78 $ 54.11 $ 118.89 $ 118.89 $ 101.27 $ 339.05 2015 934513 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 59.95 $ 228.47 2015 934515 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 59.95 $ 228.47 2015 934515 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 170.50 $ 487.54 2015 935197 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 231.22 $ 705.78 2015 935198 $ - $ - $ - $ 711.24 $ 711.24 2015 935199 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 358.20 $ 833.76 2015 935201 4.0 $ 145.08 $ 170.95 $ 317.04 $ 317.04 $ 715.55 $ 11350.74 2015 937419 2.5 $ 91.30 $ 235.18 $ 325.48 $ 325.48 $ 21438.47 $ 31091.43 2015 937420 $ - $ 353.50 $ 353.50 $ 353.50 $ 21537.64 $ 31364.64 2015 937447 $ - $ 583.84 $ 583.84 $ 583.84 $ 185.74 $ 11553.42 2015 937448 $ - $ 583.84 $ 583.84 $ 583.84 $ 185.74 $ 11553.42 2015 937449 $ - $ 583.84 $ 583.84 $ 583.84 $ 185.74 $ 11553.42 2015 942315 20.0 $ 730.40 $ 11881.40 $ 21511.80 $ 21511.80 $ 11528.80 $ 51852.40 2015 942537 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 151.95 $ 459.00 2015 942539 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 175.50 $ 492.54 2015 942543 1.0 $ 35.52 $ 42.74 $ 79.25 $ 79.25 $ 70.95 $ 229.48 2015 942544 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 297.58 $ 514.52 2015 942545 8.0 $ 292.15 $ 292.15 $ 292.15 $ 98.84 $ 583.16 2015 942547 108.0 $ 31944.16 $ 31944.16 $ 31944.16 $ 11253.88 $ 91142.20 2015 942548 108.0 $ 31944.16 $ 31944.16 $ 31944.16 $ 11253.88 $ 91142.20 2015 942502 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 202.54 $ 578.10 2015 942503 40.5 $ 11479.06 $ 11730.97 $ 31210.03 $ 31210.03 $ 21734.29 $ 91154.35 2015 942504 40.5 $ 11479.06 $ 11730.97 $ 31210.03 $ 31210.03 $ 41835.70 $ 11,255.76 2015 942505 40.5 $ 11479.06 $ 11730.97 $ 31210.03 $ 31210.03 $ 41556.79 $ 101976.85 2015 942505 3.0 $ 109.55 $ 128.22 $ 237.78 $ 237.78 $ 202.54 $ 578.10 2015 942507 40.5 $ 11479.06 $ 11730.97 j $ 31210.03 j $ 31210.03 $ 21455.38 j $ 81875.44 Appendix F-4 6/20/201 G Attachme ,,�:: p51"y CA Village of Mount Prospect Street Lighting Capital Program Corridor Lighting Evaluation Year Work Order # # of Electrician Hours with No Cost Electrican Labor ($36.52/hr) other Labor (from Work Order)Materials Total Labor Benefits Vehicle & Total 2015 948982 8.0 $ 292.16 $ 683.84 $ 976.00 $ 976.00 $ 485.01 $ 21437.01 2015 948986 8.0 $ 292.16 $ 11094.48 $ 11386.64 $ 11386.64 $ 780.19 $ 31553.47 2015 957175 1.0 $ 36.52 $ 42.74 $ 79.26 $ 79.26 $ 109.96 $ 268.48 2015 958162 $ - $ 51.33 $ 51.33 $ 51.33 $ 11.61 $ 114.27 2015 959004 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 262.58 $ 579.62 2015 959142 2.0 $ 73.04 $ 85.48 $ 158.52 $ 158.52 $ 85.63 $ 402.67 2015 959438 0.5 $ 18.26 $ 25.67 $ 43.93 $ 43.93 $ 42.84 $ 130.70 2015 959439 2.0 $ 73.04 $ 102.66 $ 175.70 $ 175.70 $ 627.96 $ 979.36 2015 959440 2.0 $ 73.04 $ 102.66 $ 175.70 $ 175.70 $ 11492.74 $ 11844.14 2015 959441 1.0 $ 36.52 $ 51.33 $ 87.85 $ 87.85 $ 63.61 $ 239.31 2015 959442 2.0 $ 73.04 $ 102.66 $ 175.70 $ 175.70 $ 172.28 $ 523.68 2015 959443 3.0 $ 109.56 $ 153.99 $ 263.55 $ 263.55 $ 1,284.48 $ 1,811.58 Appendix F-5 2014-2015 Total: $ 184,379.67 $/yr: $ 92,189.84 Say: $ 95,000.00 6/20/201 G 1� e 0, P,H kjoj�v FostO S 4-J (A 4 CL 0 0 cl. 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E -T ui u P" ppp ° / %, % / ii /// / ff I,iris /11 MOMMI, 'M "IN E cu m /N 3/111, w co LA lmseT) :A9 Wd SOA7 9ZOZ/9Z/S :POA2S .41112W WeJDOAd OU14LIDII jel.4UDP!Sa-d,, Map-DUlaclewlelauag C Project LE K ComfortVieWTIIIVIII Neighborhood LED Streetlight CV Luminaire Data 00 E Weight 81 bs [3.61<g]--_--_---------_--_-- --- --- ---- EPA 0.39 ft2 - ---- - 9.55 in [243 mm] \ Ordering Information Sample Catalog No. CV1-H-MV-40K-2R-GY-045-FOC Type Catalog No. - 00 00 ............................................................................................................................................................. ...................................................................................................................................... ..................................................................................................................................................................... ............................................................................................................................................................. Color ................................................................................................................................................................................................................ ............................................................................................................................... ............................................................................................................................................................................. ............................................................................................................................................................................................................................................................................................................................................................................ Product LED Code Voltage g Distribution Finish' Output Code' p Options p Temperature CV1 H MV 120-277V 22K 2200K 2R Type 2 GY Gray 025 FOCI Fixed Output Code HV 347-480V 27K 2700K 3R Type 3 DB Dark 030 LPCR Less Photocontrol 30K 3000K Bronze 035 Receptacle 40K 4000K BK Black 040 PCR74 ANSI 7-wire Photo- 045 control Receptacle Mii block 050 PCR7-CR1 Control Ready 7-wire PC 055 Receptacle 060 WL Utility Wattage Label Intersection 070 4113 4-Bolt Mounting Bracket 075 RWG Rubber Wildlife Guard 080 SWTB Straight Wire Terminal Block BBL Bubble Level CF6 Coastal Paint Finish Notes: 1 Gray, Black, and Dark Bronze standard. Consult factory for other finishes. 2 Specified output code is the factory set lumen performance. Field adjustable is standard via an eight -position output selector. Refer to output data table on this spec sheet. An illustration of the output selector and its label is shown on page 2. Consult factory if special output setting is required. 3 Non -field adjustable, fixed lumen output. Specify required output code. Not available with PCR7-CR option. 4 Includes output selector that enables field adjustability of light levels. Includes connectors to allow easy upgrade of wireless dimming via PCR7. Wireless node by others. 5 Control -ready wired at factory for wireless node dimming (node by others). Output selector not included in the fixture. Not able to adjust above specified drive current. 6 Specify the CF Option for coastal installation. See warranty for details. 7 Flush mounted Cul-de-Sac Shield cuts light off at 1 times the mounting height behind the luminaire, 1% in front, and 2Y times the mounting height laterally. 8 Flush mounted Front Side Shield cuts light off at approximately 1%2 times the mounting height in front of the luminaire (street side) and 2% times the mounting height laterally. 9 Flush mounted House Side Shield cuts light off at 1 times the mounting height behind the luminaire and 2% times the mounting height laterally. 10 80 Degree Cutoff Shield mitigates high angle glare above 80 degrees from nadir and cuts light off at 1Y2 times the mounting height behind and 2Y3 times the mounting height laterally. 11 Specify Color (GY, DB, BK) 12 Specify MV (120-277V) or HV (347-480V). Accessories* CSSCV' Cul-De-Sac Side Shield, Snap-On* FSSCV8 Front Side Shield, Snap-On* HSSCV9 House Side Shield, Snap-On* VHCS10 80 Degree Cutoff Shield, Grey* PT11311 Pole Top Tenon Horizontal Arm Bracket PT113211 Pole Top Tenon Horizontal Arm Bracket (2@180°) RPB11 Round Pole Horizontal Arm Bracket SPB11 Square Pole Horizontal Arm Bracket W11311 Wall Horizontal Arm Bracket LLPC12 Long -Life Twist Lock Photocontrol SC Twist Lock Shorting Cap BSK Bird Deterrent Spider Kit *Accessories are ordered separately and not to be included in the catalog number. For factory installed HSSCV, CSSCV, FSSCV and VHCS specify as option in luminaire catalog number. HSSCV, CSSCV, FSSCV can be installed without a tool, but a tool is required for removal. 80 Degree Cutoff Shield (VHCS) requires a Phillips head screwdriver for installation. Il�NNTwER�NyAMNAL A5 firSCICIATICIN .. v dad ukyacg ©2024 LEOTEK Electronics USA. Specifications subject to change without notice. ComfortViewtView fixtures are certified as Community Friendly _Series_Specific*3 iN 0 y�cnf Lighting Equipment by the Smart Outdoor Lighting Alliance (SOLA). ComfortVieWTM Luminaire Specifications Housing Die cast aluminum housing with universal two -bolt slip fitter mounts to 1-1/4" to 2" (1-5/8" to 2-3/8" O.D.) diameter mast arm. One-piece aluminum housing provides passive heat -sinking of the LEDs and has upper surfaces that shed precipitation. Four -bolt mounting bracket (413 option) is available. Mounting provisions meet 3G vibration per ANSI C136.31- 2010 Normal Application, Bridge & Overpass by independent lab. Mounting has leveling adjustment from ± 5° in 2.5° steps. All hardware is stainless steel. Electrical components are accessed without tools via die cast aluminum door with stainless steel quick release latches. Provided standard with removable polycarbonate wild life guard. For additional protection, optional rubber wildlife guard (RWG) which conforms snugly to the mast arm is offered. Light Emitting Diodes Hi-flux/Hi-power white LEDs produce a minimum of90%of initial intensity at100,000 hours of life based on IES TM-21 (L90 >_ 100k hours). LEDs are tested in accordance with IES LM-80 testing procedures. LEDS have correlated color temperature of 2200K (22K), 2700 (27K), 3000 (30K), 4000 (40K), and 70 CRI minimum. LEDs are 100% mercury and lead free. Field Adjustability LED lumen output can be changed in the field to adjust light output for local conditions (not available with PCR7-CR option). The specified output code will be the factory set output. Field adjustments can be made with the output selector included in the fixture. Field adjustable range shown in performance data table. Neighborhood LED Streetlight (CV) Quality Control Every luminaire is performance tested before and after a 2-hour burn -in period. Assembled in the USA. Optical Systems Two -stage reflective optics produce IESNA Type 2 or Type 3 distributions and are fully sealed to maintain an IP66 rating. Luminaire produces 0% total lumens above 900 (BUG Rating, U=0). Optional house side shield cuts light off at 1/2 mounting height behind luminaire. Cul-de-sac shield provides back and side light control for end of cul-de-sac applications. Front side shield cuts light off at approximately one mounting height in front of luminaire (street side). 80 degreee cutoff shield eliminates very high angle glare above 80 degrees from nadir. All shields are field installable without tools. Electrical Rated life of electrical components is 100,000 hours. Uses isolated power supply that is 1-10V dimmable. Power supply is wired with quick -disconnect terminals. Power supply features a minimum power factor of .90 and <20% Total Harmonic Distortion (THD). EMC meets or exceeds FCC CFR Part 15. Terminal block accommodates 6 to 14 gauge wire. Surge protection complies with IEEE/ANSI C62.41 Category C High, 20kV/10kA and ANSI C136.2- 2015, 20kV/10kA. Controls 3-Wire photocontrol receptacle is standard. ANSI C136.41 7-wire (PCR7) photocontrol receptacles is available. All photocontrol receptacles have a tool -less rotatable base. Wireless control module is provided by others Example of ComfortVieWTM Output Selector and Label: 0 00 lip �I Refer to the Performance Data Tables (below) for the lumen output corresponding to the p p g .0 output selector value. Finish Housing receives a durable, fade -resistant polyester powder coat finish with 3.0 mil nominal thickness. Standard finish tested to withstand 5000 hours in salt spray exposure per ASTM B117 and Coastal Finish per ASTM G85. Finish meets scribe creepage rating 8 per ASTM D1654. Finish tested 500 hours in UV exposure per ASTM G154 and meets ASTM D523 gloss retention. Listings/Ratings/Labels Luminaires are UL listed for use in wet locations in the United States and Canada. International Dark Sky Association listed. 2700 and 3000K ComfortView fixtures are certified as Community Friendly Lighting Equipment by the Smart Outdoor Lighting Alliance (SOLA). Luminaire is qualified to operate at ambient temperatures of -40°C to 40°C. Photometry Luminaires photometrics are tested by certified independent testing laboratories in accordance with IES LM-79 testing procedures. Warranty 10-year limited warranty is standard on luminaire and components. Vandal Resistance Housing and optics rated to IK10 Standards Luminaire complies with: ANSI: C136.2, C136.31 C136.101 C136.131 C136.151 C136.221 C136.311 C136.351 C136.371 C136.411 C62.411 C78.3771 C82.77 Other: FCC 47 CFR, I EC 60598, ROHS 11, U L 1449, U L 1598 ©2024 LEOTEK Electronics USA. Specifications subject to change without notice. ComfortView_Series_Specification Sheet_2-7-2024. ComfortVieWTM Neighborhood LED Streetlight (CV) Performance Data' All data nominal. IES files for all CCTs available at leotek.com. Color Dial System Delivered Efficacy Field Adjustable Product Temperature Output Code Selection Wattage (W) Lumens (Lm)' (Lm/W) Output Range (CCT) 020 1 19 2087 110 k 025 2 24 2693 112 030 3 29 3224 111 040 4 34 3876 114 2200 22K ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 043 5 38 4222 111 045 6 43 4653 108 050 7 48 5101 106 065 8 66 6722 102 025 1 19 2242 118` 030 2 24 2892 120 035 3 29 3463 119 040 4 34 4163 122 2700K27K ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 045 5 38 4535 119 Mid Block 050 6 43 4998 116 055 .................................. ............................. 7 ................................................................. 48 ............................................................................... 5479 ....................................................................... 114 ......................................................... Intersection 070 8 66 7220 110 CV1-H 025 1 19 2412 127 030 2 24 3073 128 035 3 29 3676 127 045 4 35 4423 128 3000K30K ......................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 050 5 38 4777 126 055 6 45 5561 124 060 7 49 5800 118 075 8 67 7722 115 \46' 025 1 19 2675 139 035 2 24 3294 137 040 3 29 3930 136 045 4 34 4561 134 4000K40K ................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................ 050 5 38 5059 133 055 6 43 5594 130 060 7 48 6147 128 080 8 67 8227 123 Notes: 1 Data shown above is for type 2 optic. For type 3 optic, consult IES files for specific data at Leotek.com 2 Nominal lumens. Normal tolerance ± 10% due to factors including LED bin variance, and ambient temperatures. ©2024 LEOTEK Electronics USA. Specifications subject to change without notice. ComfortView_Series_Specification Sheet_2-7-2024. ComfortVieWTM Neighborhood LED Streetlight (CV) BUG Ratings All data nominal. IES files for all CCTs available at leotek.com. Type 2R Type 3R Color Dial Product Temperature p Output Code p BUG RatingBUG Rating g Selection (CCT) 020 1 B1-U0-G1 B1-U0-G1 025 2 B1-UO-G1 B1-UO-G1 030 3 B1-UO-G1 B1-U0-G1 040 4 B1-U0-G1 B1-UO-G1 2200K22K ................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 043 5 B1-U0-G1 B1-U0-G1 045 6 B1-U0-G1 B2-UO-G1 050 7 B1-U0-G1 B2-U0-G1 065 8 B2-UO-G1 B2-UO-G2 025 1 B1-U0-G1 B1-U0-GI 030 2 B1-UO-G1 B1-UO-G1 035 3 B1-U0-G1 B1-U0-G1 040 4 B1-U0-G1 B1-U0-G1 2700K27K ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 045 5 B1-U0-G1 B2-UO-G1 050 6 B1-U0-G1 B2-UO-G1 055 7 B1-U0-G1 B2-UO-GI 070 8 B2-UO-G1 B2-UO-G2 CV1-H 025 1 B1-U0-G1 B1-U0-G1 030 ................ 2 ............................................................................... J B1-U0-G1 ................................................................................ B1-U0-G1 L .............................................................................. 035 3 B1-U0-G1 B1-U0-G1 045 4 B1-U0-G1 B1-UO-G1 3000K30K .................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................. 050 5 B1-U0-G1 B2-UO-G1 055 6 B1-U0-G1 B1-U0-G1 060 7 B1-U0-G1 B2-UO-G1 075 8 B2-UO-G1 B2-UO-G2 025 1 B1-U0-G1 B1-U0-G1 035 2 B1-UO-G1 B1-UO-G1 040 3 B1-UO-G1 B1-U0-G1 045 4 B1-U0-G1 B2-UO-G1 4000 K 40 K ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 050 5 B1-U0-G1 B2-UO-G1 055 6 B1-U0-G1 B2-UO-G1 060 7 B2-U0-G1 B2-U0-G1 080 8 B2-UO-G1 B3-UO-G2 ©2024 LEOTEK Electronics USA. Specifications subject to change without notice. ComfortView_Series_Specification Sheet_2-7-2024.