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10.0 RPCA La Porte Rd Example Equipment Data Sheets
VSUN550-144BMH VSUN545-144BMH VSUN540-144BMH VSUN535-144BMH 12years Module efficiency Highest power output Material & Workmanship warranty 30years Linear power output warranty VSUN www.vsun-solar.com Engineered in Japan VSUN, a BNEF Tier-1 PV module manufacturer invested by Fuji Solar, has been committed to providing greener, cleaner and more intelligent renewable energy solutions. VSUN is dedicated to bringing reliable, customized and high-efficient products into various markets and customers worldwide. VSUN320-60M 550W 21.29% VSUN550-144BMH Certified for salt/ammonia corrosion resistance Load certificates: wind to 2400Pa and snow to 5400Pa MBB technology with Circular Ribbon Higher output power Half-cell Technology Positive tolerance offer Micro Gap Up to 30% extra power generation yield from the back sidePERC Lower LCOE 98% 10 years 15 years 20 years 25 years 30 years 最も信頼出来る再エネパートナー Dimensions IV-Curves Electrical Characteristics at Standard Test Conditions(STC) Module Type Maximum Power - Pmax (W) Open Circuit Voltage - Voc (V) Short Circuit Current - Isc (A) Maximum Power Voltage - Vmpp (V) Maximum Power Current - Impp (A) Module Efficiency Pmax (W) 575 602 656 684 Temperature Characteristics Maximum Ratings NOCT Maximum System Voltage [V] Voltage Temperature Coefficient Series Fuse Rating [A] Current Temperature Coefficient Bifaciality Power Temperature Coefficient Material Characteristics Dimensions Weight Frame Front Glass Cell Encapsulation Back Sheet Cells Junction Box Cable&Connector 2278×1134×35mm (L×W×H) 28.8kg Silver anodized aluminum profile AR-Coating toughened glass, 3.2 mm EVA or POE Transparent or white mesh transparent backsheet 12×12 pieces bifacial monocrystalline solar cells series strings IP68, 3 diodes Potrait: 500 mm (cable length can be customized) , 1×4 mm 2 , compatible with MC4 Packaging System Design Dimensions(L×W×H)2310×1125×1253mm Temperature Range Container 20'155 Withstanding Hail Container 40'310 Container 40'HC 620 Maximum Surface Load Application class -0.27%/°C 1500 41.80 45°C(±2°C) +0.048%/°C -0.32%/°C -40 °C to + 85 °C Maximum diameter of 25 mm with impact speed of 23 m/s 30 70%±10% VSUN535-144BMH 13.76 5%49.76 Standard Test Conditions (STC): irradiance 1,000 W/m²; AM 1,5; module temperature 25°C. Pmax Sorting : 0~5W. Measuring Tolerance: ±3%. Remark: Electrical data do not refer to a single module and they are not part of the offer. They only serve for comparison among different module types. VSUN550-144BMH VSUN545-144BMH Electrical Characteristics with different rear side power gain(reference to 545 front) Voc (V)Isc (A)Vmpp (V)Impp (A)Pmax gain 550 49.92 14.69 VSUN540-144BMH 13.99 42 13.1 21.29% 545 13.92 13.04 540 41.8 41.65 49.81 49.81 14.41 10% 16.79 41.75 15.72 20% 49.76 15.39 41.80 17.49 41.75 16.38 25% 5,400 Pa class A 535 49.81 49.65 49.5 13.85 13.78 41.5 12.97 12.9 21.10%20.90%20.71% Excellent performance under weak light condition. 0 10 20 30 400 80 160 240 320 400 480 560 0 10 20 30 500 2 4 6 8 12 0 80 160 240 320 400 480 560 00 AM1.5,1000W/M2 Voltage/V Voltage/V Voltage/V 25℃ 10℃, Pmpp=577W 25℃, Pmpp=551W40℃, Pmpp=525W55℃, Pmpp=498W 70℃, Pmpp=471W 1000W/M2 800W/M2 600W/M2 400W/M2 200W/M2 2 4 6 8 10 40 10 20 30 5040 10 12 50 C-Mounting Hole8 place D-Mounting Hole 4 place 9 7 35 11 A-AFrame 13 11 B-BFrame C A A 1093±2 BACK VIEW 9901400400D 1134±22278±2B B Note:mm FRONT VIEW 790Revision date: 2022-08-01 PCS, 31PCS/Pallet Circuit Diagram Efficiency Curve String Inverter for 1500 Vdc System L1 PE L2 L3 Inverter Circuit (DC/AC) AC Filter AC Relays AC EMI Filter AC Switch DC DC Switch DC EMI Filter DC Bus DC SPD AC SPD EciencyNormalized Output Power Vdc=860 V 90% 94% 96% 98% 100% 20%30%50%60%90%80% 92% 10%0%40%70%100% Vdc=1050 V Vdc=1250 V © 2018 Sungrow Power Supply Co., Ltd. All rights reserved. Subject to change without notice. Version 1.0 Compliance with both IEC and UL safety, EMC and grid support regulations Low/High voltage ride through (L/HVRT) Active & reactive power control and power ramp rate control Grid Support Patent five-level topology, max. efficiency 98.9 %, European efficiency 98.7 %, CEC efficiency 98.5 % Full power operation without derating at 50 ℃ High Yield DC 1500 V, AC 600 V, low system initial investment 1 to 5 MW power block design for lower MV transformer and labor cost Max. DC/AC ratio up to 1.5 Saved Investment Virtual central solution, easy for O&M Compact design and light weight for easy installation Easy O&M © 2018 Sungrow Power Supply Co., Ltd. All rights reserved. Subject to change without notice. Version 1.0 Output (AC) AC output power Max. AC output current Nominal AC voltage AC voltage range Nominal grid frequency / Grid frequency range THD DC current injection Power factor at nominal power / Adjustable power factor Feed-in phases / Connection phases 125000 VA @ 50 ℃ 120 A 3 / PE, 600 V 480 – 690 V 50 Hz / 45 – 55 Hz, 60 Hz / 55 – 65 Hz < 3 % (at nominal power) < 0.5 % In > 0.99 / 0.8 leading – 0.8 lagging 3 / 3 Efficiency Max. efficiency / Euro. efficiency / CEC effciency 98.9 % / 98.7 % / 98.5 % Protection DC reverse connection protection AC short-circuit protection Leakage current protection Grid monitoring DC switch / AC switch Overvoltage protection Yes Yes Yes Yes Yes / Yes DC Type II / AC Type II Input (DC) 1500 V 860 V / 920 V 1050 V 860 – 1450 V 860 – 1250 V 1 1 148 A 240 A Max. PV input voltage Min. PV input voltage / Startup input voltage Nominal input voltage MPP voltage range MPP voltage range for nominal power No. of independent MPP inputs No. of DC inputs Max. PV input current Max. DC short-circuit current SG125HV General Data Dimensions (W*H*D) Weight Isolation method Degree of protection Night power consumption Operating ambient temperature range Allowable relative humidity range (non-condensing) Cooling method Max. operating altitude Display / Communication DC connection type AC connection type Compliance Grid support Type designation 670*902*296 mm 26.4''*35.5''*11.7'' 76 kg 167.5 lb Transformerless IP 65 NEMA 4X < 4 W -25 to 60 ℃ (> 50 ℃ derating) -13 to 140 ℉ (> 122 ℉ derating) 0 – 100 % Smart forced air cooling 4000 m (> 3000 m derating) 13123 ft (> 9843 ft derating) LED, Bluetooth+APP / RS485 OT or DT terminal (Max. 185 mm² 350 Kcmil) OT or DT terminal (Max. 185 mm² 350 Kcmil) CE, IEC 62109-1/-2, IEC 61000-6-2/-4, IEC 61727, IEC 62116, IEC 61000- 3-11/-12, UL 1741, UL 1741 SA, IEEE 1547, IEEE 1547.1, CSA C22.2 107.1-01 and California Rule 21 LVRT, HVRT, active & reactive power control and power ramp rate control SG125HV-10 1CONTACT US: sales@powin.com | powin.com DP-C 2022 2.5 PRODUCT: Stack750 PLATFORM: Centipede Centipede is Powin’s modular battery energy storage platform, purpose-built for the most grueling environments and use cases. Designed to dramatically increase site energy density, decrease installation times and simplify capacity augmentation, Centipede is ready to perform a diverse set of market applications including Frequency Response/Regulation, T&D Deferral, Flexible Peaking Capacity, Renewable Integration and more. Modular, Scalable and Configurable Centipede’s modular design allows you to easily scale up your project size from a single standalone unit to gigawatt-hours per project site. Centipede utilizes Powin’s field-proven Stack hardware and StackOS software platform to ensure continuity and familiarity between Powin’s product lines to perform a variety of simple and advanced market applications. Enhanced Safety and Quality Centipede combines Powin’s safest-in-class LFP Stack hardware and integrated enclosures into one standardized, factory-built, outdoor product to ensure maximum quality control. Each Centipede unit includes a comprehensive package of explosion prevention and fire safety features, such as hydrogen detection and active ventilation, fire detection, fireproof insulation, and optional clean agent fire suppression. End to End Cost Savings Centipede’s factory-built and tested design allows for units to be installed on site in a fraction of the time it takes for traditional enclosure-based systems to be installed. The increased energy density also reduces the amount of land that is required to install a system per MWh. The highly serviceable design includes field- swappable, redundant components that minimizes downtime and service costs. These advantages, paired with Powin’s diverse supply chain and Tier 1 cell procurement strategy give Powin’s customers continual cost advantages upfront and over the lifespan of a system. POWIN STACK750E TECHNICAL SPECIFICATIONS 2CONTACT US: sales@powin.com | powin.com DP-C 2022 2.5 STACK750 ElectricalDC Voltage 1,210 - 1,491 V Duration 2+ hrs Maximum Energy Capacity1 750 kWh DC per segment & 250 MWh AC per acre Rated Duration of Discharge 2 hrs 3 hrs 4 hrs DC Power @ Rated Duration 369.5 kW 247.5 kW 186.5 kW DC Energy Capacity @ Rated Duration2 733.5 kWh 736.9 kWh 740.4 kWh Aux Load (Standby/Peak)3 0.25 kW / 5.6 kW 0.24 kW / 5.5 kW 0.23 kW / 5.4 kW Daily Aux Energy Use3,4,5 29 - 31 kWh 21 - 23 kWh 17 - 19 kWh Auxiliary Power Input 3-Phase 480V AC / 60 Hz or 400V AC / 50 Hz Performance & SafetyDC Round Trip Efficiency 93%94%95% Cycle Life5,6 7,300 cycles Calendar Life6 20 years Cell Manufacturers Powin Tier 1 Cell Chemistry Lithium Iron Phosphate (LFP) Depth of Discharge 100% Explosion Prevention & Mitigation Off-gas detection with dedicated, fail-safe active & passive ventilation systems Fire Suppression Addressable fire panel, smoke & heat detectors, heat activated sprinkler system with remote FDC dry standpipe connection, fire rated insulation, strobes, and horn; optional clean agent fire suppression Heating & Cooling7 Redundant, field-swappable, high efficiency HVAC with humidity control Codes & Compliance UL 9540A, UL 1973, UL 9540, NFPA 1, NFPA 69, NFPA 855, IFC, IEC 62619, IEC 6100-6-2, IEC 62477, UN 3480, UN 38.3, UL 1642 MechanicalWeight (Approximate)20,000 lbs. (9,074 kg) Battery Segment Dimensions 8'1" D × 5'2" L × 10'8" H (2,443 mm × 1,572 mm × 3,282 mm) Enclosure Type / Rating8 NEMA 3R/IP55 standard; NEMA 3RX available Ambient Operating Temperature Range9 -30°C to +50°C SoftwareBMS + EMS + Solar + Environmental Controls StackOS™ Analytics + Optimization + Data Warehouse StackOS+™ First Responder HMI Powin for First Responders™ Communications Interface Modbus TCP (MESA/Sunspec) & REST API Note: Specifications in the above table are design estimates only and are not guaranteed. Contact Powin for a project-specific estimate as final values depend on system design, location, and use case. 1 Per acre energy capacity represents fully installed AC BESS, including inverters, transformers, and auxilaries; excludes augmentation 2 Energy capacity is recorded at the DC bus and assumes near-symmetric cycle; capacity will be ~1-2% lower for symmetric cycle use case 3 Assumes 1 full cycle per day at rated power in a temperate climate; active cell balancing contribution de minimis 4 Assumes 1 full cycle per day and includes calendar aging for the day 5 Includes Stack level thermal management and controls 6 End of life depends both on BESS age and usage; actual lifetime may be less than 20 years for high cycle use cases 7 Degree of HVAC redundancy (partial or full) depends on location and use case 8 IP rating applicable only for the compartments containing batteries and electronics 9 StackOS may automatically derate power at high/low ambient temperatures or after extended operation to mantain proper cell temperatures