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Report (42) 404 Is the construction Type of material wood and does Yes the construction qualify If"Yes", qualifies for Construction as "conventional light 111 No the prescriptive path. frame" construction? Is the spacing 24 inches or less? Pre-engineered trusses. Yes If"Yes", qualifies for the prescriptive path. n No Roof framing members Is the spacing 24 inches or less? Nominal lumber. If"Yes", qualifies for ❑ Yes the prescriptive path. ❑ No Is the combined weight [y]/ Yes of the PV modules and If"Yes", qualifies for racking less than or ❑ No the prescriptive path. • Solar equal to 4.5 psf? installation Is the solar installation ,�,/ layout in accordance Lid Yes with Section 305.4(3) of If"Yes", qualifies for the 2010 Oregon Solar ❑ No the prescriptive path. Code? ❑ Metal Single layer If roofing material is Roofing Check the type of ❑ of wood Yp one of the three types material roofing material shingle/shake checked, qualifies for Max. two layers the prescriptive path. Q,of composition shingle. Is the roof mounted R2/Yes Connections of solar assembly the solar assembly connected to roof If"Yes", qualifies for ❑ No the prescriptive path. • to the roof framing or blocking directly? 2 I:BuiIding/Forms/Photovoltaic-CheckIist.docx ❑ Yes If"Yes", qualifies for Is the gauge 26 or less? ❑ No the prescriptive path. 115 lbs for 60 inch spacing or less? If"Yes", qualifies for ❑ Yes the prescriptive path. ❑ No Minimum Uplift rating of Clamps? 75 lbs for 48 inches spacing or less? If"Yes", qualifies for ❑ Yes the prescriptive path. ❑ No Attachment of roof mounted Minimum 24 inches If the spacing falls solar systems Spacing of clamps? within 24 inches and 60 directl to inches inches, qualifies for the Y Maximum 60 inches prescriptive path. standing seam metal panels Width of roofing If the width of the panel panels? 18 inches or less is less than 18 inches, inches qualifies for the prescriptive path. Minimum#10 at 24 inches o/c? Size and spacing of Yes If"Yes", qualifies for fastener? ❑ the prescriptive path. ❑ No Is the roof decking of WSP min. %2"thickness, ❑ Yes decking connected to If"Yes", qualifies for framing members ❑ No the prescriptive path. w/min. 8d nails @ 6"/12" o/c? Is the height less than or Maximum 18 inches equal to 18 inches? Height of the from the top of theYes If"Yes", qualifies for solar modules module to the roof the prescriptive path. surface. ❑ No 3 1:Building/Forms/Photovoltaic-Checklist.docx Submittal Documents required for Prescriptive Installations Show the location of the PV system in relation to buildings, structures, property lines, and, as applicable, flood hazard areas. Site Plan Details must be clear and easy to read. Minimum size of the plan is 8.5 x 11 inches. Attach a simple structural plan showing the roof framing (rafter size, type, and spacing) and PV module system racking attachment. System must be shown in sufficient detail and clarity to assess whether it Structural Plan meets the prescriptive construction requirements as listed earlier above in the matrix. Minimum size of the plan is 8.5 x 11 inches. PV Modules Manufacturer: � 46% 5 aZ.70 7i J Model Number: `5 70 Pr Q- Listing Agency: V L / 7 03 4 LBuilding/Forms/Photovoltaic-Checklist.docx e BROWN RESIDENCE NEC PV LABELING REQUIREMENTS EQUIPMENT SCHEDULE/NOTES: (1)PV ARRAY:8 SOLARWORLD PROTECT270W MODULES 2.16 kW SOLAR PV SYSTEM AC CIRCUIT BREAKER:NEC 705.12(0)(7)&690.54 2)EICHMODULERS CONNECTED UP ONEO BRANCHNE RCHASE MICRO-INVERTER 8 MICRO-INVERTERS MAKE UP ONE BRANCH CIRCUIT (3)10 AWG BARE COPPER EGC AND ENPHASE M250 OUTPUT CIRCUIT WIRES PV ARRAY: (8) Solarworld SW 270 Protect PV Modules TWO SOURCES ARNING: C SOLARS STEM AND UTILITY GRD.UIT BREAKER IS ENERGIZED FROM (4)SOLADECENPHASE ROOFTOP OITO TRANSITION TO THWN-2 AWG CONDUCTORS (5)ENPHASE ENVOY DATA MONITORING PENILE (6)UTILITY GRADE METER TO MEASURE PV OUTPUT LOCATED IN GARAGE ADJACENT TO MAIN ELECTRICAL PANEL (1)(2) MAIN SERVICE PANEL 705.12(0)(4) (7)GRID INTERCONNECTION BY 35A2 POLE TWIN BREAKER (8)200A GOULD SERVICE PANEL LOCATED IN GARAGE WITH 2O0A MAIN 0 0 0 0==C7 o BREAKER (9)UTILITY METER LOCATED ON EXTERIOR NORTH WALL OF HOUSE AC POINT OF CONNECTION (10)GROUNDING ELECTRODE CONDUCTOR CONNECTED TO SOLAR ELECTRIC SYSTEM EXISTING BUILDING GROUNDING ELECTRODE AC OUTPUT CURRENT:8A NOMINAL AC VOLTAGE:240V NOTES: -THE SUM OF THE RATINGS OF BREAKERS FEEDING ANY PANEL WARNING MUST NOT EXCEED 120%OF THE RATING OF THE PANEL BUS BARS INVERTER OUTPUT CONNECTION NEC 705.12(0)(2} (3) 10 AWG USE-2/RHW-2 DO NOT RELOCATE THIS OVERCURRENT DEVICE AC VOLTAGE DROP Sunlight Resistant Wire plus 1.Internal Voltage drop within cabing:8 micro-inverters=0.24% THIS PANEL IS FED BY TWO SOURCES OF POWER 2.Voltage drop from OCPD to Main Service Panel One#6 AWG Bare Copper EGC 1-UTILITY 2-PV INVERTER %Vdrop=(1A"8)12"40R) =(640"(_00124oh ms/ft))/z4DV =0.0033066"100 =0.33%AC Voltage Drop PRODUCTION METER(ETO PV REQUIREMENT 2.7.3) TOTAL AC VOLTAGE DROP:0.33%+0.24%=0.57% CUSTOMER OWNED SOLAR GENERATOR OUTPUT (4)SolaDeck Junction Box House Interior Attic Approximate distance from Project:10145 SERENA WAY roof top array to Main Electrical Panel is 40 feet. TIGARD OR 97224 3/4"EMT with 2.16 kW SOLAR PV SYSTEM (2)#10 AWG Solar Contractor: THWN-2 conductors w/(1)#10 10-3 MC from Output meter THWN-2 Neutral and(1)#50 EGC to Main Electrical Panel. Distance less than 10'. 200A MAIN PANEL Advanced Energy Services zo (8) PV PRODUCTION METER Utility Meter 120/240 Volt, TITLE: three-wire,single-phase Single Line Diagram,Grid Tied Solar PV System GARAGE _ ►Utility i (7) (tI) (10) DATE:2/19/14 DRAWN BY:Ron Burden ENVOY 15A2 POLE /B 19) Grounding Drawing lr:l PROJECT/Customer . (5) (6) BACKFED BREAKER ....................................................................................................... Electrode REVISION HISTORY DATE NOTES #6 bare copper GEC Enphase®M250 Microinverter//DATA -• INPUT DATA (DC) M250-60-2LL-S22/523/S24 Recommended input power(STC) 210-300 W Maximum input DC voltage 48 V Peak power tracking voltage 27 V-39 V Operating range 16 V-48 V Min/Max start voltage 22 V/48 V Max DC short circuit current 15 A Max input current 9.8 A OUTPUT DATA(AC) @208 VAC @240 VAC Peak output power 250 W 250 W Rated(continuous)output power 240 W 240 W Nominal output current 1.15 A(A rms at nominal duration) 1.0 A(A rms at nominal duration) Nominal voltage/range 208 V/183-229 V 240 V/211-264 V Nominal frequency/range 60.0/57-61 Hz 60.0/57-61 Hz Extended frequency range` 57-62.5 Hz 57-62.5 Hz Power factor >0.95 >0.95 Maximum units per 20 A branch circuit 24(three phase) 16(single phase) Maximum output fault current 850 mA mis for 6 cycles 850 mA rms for 6 cycles EFFICIENCY CEC weighted efficiency,240 VAC 96.5% CEC weighted efficiency,208 VAC 96.0% Peak inverter efficiency 96.5% Static MPPT efficiency(weighted,reference EN50530) 99.4 % Night time power consumption 65 mW max MECHANICAL DATA Ambient temperature range -40°C to+65°C Operating temperature range(internal) -40°C to+85°C Dimensions(WxHxD) 171 mm x 173 mm x 30 mm(without mounting bracket) Weight 2.0 kg Cooling Natural convection-No fans Enclosure environmental rating Outdoor- NEMA 6 FEATURES Compatibility Compatible with 60-cell PV modules. Communication Power line Integrated ground The DC circuit meets the requirements for ungrounded PV arrays in NEC 690.35. Equipment ground is provided in the Engage Cable. No additional GEC or ground is required. Monitoring ree lifeti e -.nitoring via Enlighten software Compliance UL1741/IEEE1547, CC Part 15 Class B,CAN/CSA-C22.2 NO.0-N191, 0.4-04,and 107.1-'1 *Frequency ranges can be extended beyond nominal if .• ired by the util' To learn more about Enphase Microinverter technology, [e] enphase° visit enphase.conl E N E R G Y ©2013 Enphase Energy.All rights reserved.All trademarks or brands in this document are registered by their respective owner. • 1 SunmoduleY Protect SW 270 mono PERFORMANCE UNDER STANDARD TEST CONDITIONS(STC)* PERFORMANCE AT 800 W/m2,NOCT,AM 1.5 Maximum power Pmax 270 Wp Maximum power Pm 201.3 Wp Open circuit voltage Vor 39.2 V Open circuit voltage V 35.9 V Maximum power point voltage Vmoo 30.9 V Maximum power point voltage Vm„, 28.3 V Short circuit current 1,„ 9.44 A Short circuit current I 7.63 A Maximum power point current imoo 8.81A Maximum power point current Im 7.12A 'STC:1000 W/m5,25°C,AM 1.5. Minor reduction in efficiency under partial load conditions at 25°C:at 200 W/m',100% 1)Measuring tolerance(Pmry)traceable to TUV Rheinland:+/-2%(TUV Power Controlled) (+/-2%)of the STC efficiency(1000 W/m')is achieved. THERMAL CHARACTERISTICS COMPONENT MATERIALS NOCT 46°C Cells per module 60 TCI 0.004%/K Cell type Mono crystalline TCvo -0.30%/K Cell dimensions 6.14 in x 6.14 in(156 mm x156 mm) TCP -0.45%/K Front Tempered glass(EN 12150) Operating temperature -40°C to 85°C Frame Clear anodized aluminum Weight 46.7 lbs(21.2 kg) ) 1000 W/mu SYSTEM INTEGRATION PARAMETERS — ^800 W/mz Maximum system voltage IEC SC 11 e _m 1000 V A _ Maximum system voltage UL 600 V g 600 W/m2 — Maximum reverse current 16 A — + i` Number of bypass diodes 3 400 W/mz — UL Design Loads` Two rail system 113 psf downward 64 psf upward • 200 W/m, ____`\ UL Design Loads' Three rail system 170 psf downward 100 W/mz � 64 psf upward IEC Design Loads' Two rail system 113 psf downward 50 psf upward Modulevoltage[V] V, *Please refer tothe Sunmodule installation instructions for the details associated with these load cases. 1x4 3744(951) ADDITIONAL DATA ji, IM -10 Power sorting' -0 Wp/+5 Wp 11.33(288) J-Box IP65 Connector MC4 Module efficiency 16.10 Fire rating(UL 790) Class C 41.30(1050) Version „„,�,. 2.5 frame •_""""'°” 65.94(1675) —bottom ,. mounting Independently created PAN files now available. _I , holes ]i Ask your account manager for more information. i -1-x 4 14.20(107)1 1.22(31) 39.41(1001) tAll units provided are imperial.SI units provided in parentheses. SolarWorld AG reserves the right to make specification changes without notice. SW-01-6035US 08-2013 SOLARMOUNT Technical Datasheets : UNIRACF SOLARMOUNT Mid Clamp • Part No.302101C,302101D,302103C,302104D, 302105D,302106D Bolt • Mid clamp material: One of the following extruded aluminum Mid la M alloys: 6005-T5, 6105-T5,6061-T6 Clamp • Ultimate tensile: 38ksi, Yield: 35 ksi 441‘ ......, .111141Sk‘. ‘t, • Finish: Clear or Dark Anodized s. • Mid clamp weight: 0.050 lbs(23g) • Allowable and design loads are valid when components are assembled according to authorized UNIRAC documents • Values represent the allowable and design load capacity of a single mid clamp assembly when used with a SOLARMOUNT series beam * to retain a module in the direction indicated • Assemble mid clamp with one Unirac1/4"-20 T-bolt and one' "-20 ASTM F594 serrated flange nut Beam • Use anti-seize and tighten to 10 ft-lbs of torque • Resistance factors and safety factors are determined according to part 1 section 9 of the 2005 Aluminum Design Manual and third- party test results from an IAS accredited laboratory Applied Load Average Allowable Safety Design Resistance 1.00 DISTANCEDirection Ultimate Load Factor, Load Factor, BEfwEEN MODULE$ ,�,' — lbs(N) lbs(N) FS lbs(N) Tension,Y+ 2020(8987) 891 (3963) 2.27 1348(5994) 0.667 Transverse,Z± 520(2313) 229(1017) 2.27 346(1539) 0.665 A :---- — Sliding,X± 1194 (5312) 490(2179) 2.44 741 (3295) 0.620 ►X Dimensions specified in inches unless noted SOLARMOUNT End Clamp Part No.302001C,302002C,302002D,302003C, 302003D,302004C,302004D,302005C,302005D, 302006C,302006D,302007D,302008C,302008D, 302009C,302009D,302010C,302011C,302012C • End clamp material: One of the following extruded aluminum alloys: 6005-T5, 6105-T5,6061-T6 +ortt. • Ultimate tensile: 38ksi, Yield: 35 ksi • Finish: Clear or Dark Anodized • End clamp weight:varies based on height: –0.058 lbs(26g) d Clamp • Allowable and design loads are valid when components are Serems- assembled according to authorized UNIRAC documents Flange Nat • Values represent the allowable and design load capacity of a single end clamp assembly when used with a SOLARMOUNT series beam to retain a module in the direction indicated • • Assemble with one Unirac%"-20 T-bolt and one '/"-20 ASTM F594 Bea 'Ns ' serrated flange nut lal,l ; • Use anti-seize and tighten to 10 ft-lbs of torque • Resistance factors and safety factors are determined according to Y part 1 section 9 of the 2005 Aluminum Design Manual and third- ,� ,4'� party test results from an IAS accredited laboratory X F'F • Modules must be installed at least 1.5 in from either end of a beam • LS Applied Load Average Allowable Safety Design Resistance MINIMUM` . Direction Ultimate Load Factor, Loads Factor, HEIGHTlbs(N) lbs(N) FS lbs(N) 0 ,` WITH MODULE Tension,Y+ 1321 (5876) 529(2352) 2.50 800(3557) 0.605 THICKNESS 1 I r Transverse,Z± 63(279) 14(61) 4.58 21 (92) 0.330 Sliding,X± 142(630) 52(231) 2.72 79(349) 0.555 Dimensions specified in inches-unless-noted 2 SOLARMOUNT Technical Datasheets :P I RAC SOLARMOUNT Beam Connection Hardware SOLARMOUNT L-Foot • Part No. 304000C, 304000D • L-Foot material:One of the following extruded aluminum alloys:6005- j T5,6105-T5,6061-T6 • Ultimate tensile:38ksi,Yield:35 ksi 0 • Finish: Clear or Dark Anodized • L-Foot weight:0.215 lbs(98g) d ,,�"� ▪ Allowable and design loads are valid when components are Bea ,..- assembled with SOLARMOUNT series beams according to authorized 4 Bolt UNIRAC documents .� L-Foot • For the beam to L-Foot connection: •Assemble with one ASTM F593%"-16 hex head screw and one ®r•effete. ASTM F594%"serrated flange nut itvFlange N •Use anti-seize and tighten to 30 ft-lbs of torque • Resistance factors and safety factors are determined according to part 1 section 9 of the 2005 Aluminum Design Manual and third-party test Y results from an IAS accredited laboratory A X NOTE: Loads are given for the L-Foot to beam connection only;be sure to check load limits for stand, off,lag screw,or other attachment method 3 .0, Applied Load Average Safety Design Resistance IX SLOT Direction Ultimate Allowable Load FactorLoad Factor, lbs(N) lbs(N) FS lbs(N) m i 2_D, _ Sliding,Z± 1766(7856) 755(3356) 2.34 1141 (5077) 0.646 Tension,Y+ 1859(8269) 707(3144) 2.63 1069(4755) 0.575 Dimensions specified in inches unless noted Compression,Y- 3258(14492) 1325(5893) 2.46 2004(8913) 0.615 •• Traverse,X± 486(2162) 213(949) 2.28 323(1436) 0.664 , 3 3*N.tuv.ea ' a @ TUV Power controlled: ` = TovRheinh d = Lowest measuring tolerance in industry ,-___ ao ,a,---4 a '000/30228 + s + f f { � 6 b { MExceptional weather resistance and robustness ROBUST CO i i f + f Designed to withstand heavy * r f ash k accumulations of snow and ice MAX.LOAD If. 5900h O f 9. i i If i ; t f ._ uy nt O f + � Sunmodule Protect: Positive performance tolerance -0/+5 Wp O World-class quality Fully-automated production lines and seamless monitoring of the process and material •O^ e.ED 65255 =A,a,.Ammon./resistance V •Berry asmn•*Ec 65714 m ensure the quality that the company sets as its benchmark for its sites worldwide. E ''l"°�"ndms.s ro °' w • ,* mo w .ryaK Innovative glass technologies make extremely weather-resistant and robust solar mod- `� ules possible.The Sunmodule Protect offers higher mechanical resilience and a longer / \ /11 re�uantinrua¢s1FD y r� service life,and still weighs the same as the Sunmodule Plus. SA11"' ST'^^n P„o�ow„ACP6D« G us The positive power tolerance guarantees utmost system efficiency.Only modules achiev- ing `•/ UL 1703 or exceeding the designated nominal power in performance tests are dispatched.The / / ISO 9001 power tolerance ranges between-0 Wp and+5 Wp. [ C ISO 14001 \ Certified SolarWorld is setting new standards with the ground-breaking 30-year linear perfor- mance guarantee:a maximum degradation of just 0.35%p.a.provides guaranteed mod- ule performance of 90%after 21 years,and 86.85%after 30 years. Linear performance guarantee Linear performance guarantee for SolarWorld Sunmodule Protect Linear performance guarantee for SolarWorld Sunmodule Plus MADE IN USA 0 Competitor's tiered performance guarantee Pe scs l c e gliarulTfee . 90% .'.^gga`, ',13 ) 11 i �\�. 4 a� far c�'k '��a A o�� ' 15 20 25 30 ° SOLARWORLD Years / *in accordance with the applicable SolarWorld Limited Warranty at purchase. www.solarworld.com/warranty \� solarworld.com We turn sunlight into power.