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Featuring a bifacial design with 2.0+2.0mm AR coated heat-strengthened glass, the module captures direct sunlight from the front and reflected light from the rear, unlocking additional power generation for commercial installations. With a compact form factor of 2178×1134×30mm and a weight of 30.5kg, the module is optimized for seamless integration into standard commercial mounting systems, balancing high performance with easy handling and installation.

| Item | Specification |
| Product Model | LC210R-120MDB |
| Power Range | 560-580W |
| Cell Type | N-type Monocrystalline Silicon |
| Wafer Size | 210mm |
| Cell Architecture | 120 Half-Cells |
| Core Technology | SMBB Half-Cell Technology, Bifacial Design |
| Target Application | Ground Mount Solar Projects, Utility-Scale Industrial Solar Systems |
Standard Test Conditions (STC): Irradiance 1000W/m², AM 1.5 Spectrum, Cell Temperature 25°C ,
Nominal Module Operating Temperature (NMOT): Irradiance 800W/m², AM 1.5 Spectrum, Ambient Temperature 20°C, Wind Speed 1m/s
| Module Power Grade | Parameter | STC | NMOT |
| 560W | Maximum Power (Pmax) | 560W | 437W |
| Module Efficiency | 22.7% | ||
| 565W | Maximum Power (Pmax) | 565W | 441W |
| Module Efficiency | 22.9% | ||
| 570W | Maximum Power (Pmax) | 570W | 445W |
| Module Efficiency | 23.1% | ||
| 575W | Maximum Power (Pmax) | 575W | 449W |
| Module Efficiency | 23.3% | ||
| 580W | Maximum Power (Pmax) | 580W | 452W |
| Module Efficiency | 23.5% | ||
| Module Power Grade | 560W | 565W | 570W | 575W | 580W |
| Maximum Power (Pmax) | 616W | 622W | 627W | 633W | 638W |
| Open Circuit Voltage (Voc) | 44.62V | 44.83V | 45.05V | 45.27V | 45.48V |
| Short Circuit Current (Isc) | 17.54A | 17.62A | 17.69A | 17.75A | 17.82A |
| Item | Specification |
| Module Dimensions | 2178×1134×30mm |
| Module Weight | 30.5kg |
| Cell Orientation | 120 Cell |
| Frame | Anodized aluminum alloy frame |
| Item | Specification |
| Operational Temperature Range | -40℃ ~ +85℃ |
| Maximum Power Output Tolerance | 0 ~ 3% |
| Maximum System Voltage | 1500V |
| Maximum Series Fuse Rating | 30A |
| Nominal Operating Cell Temperature (NMOT) | 45 + 2℃ |
| Bifaciality | 80 + 5% |
| Fire Rating | IEC Class A |
| Hailstone Resistance | 25mm Hailstone at the speed of 23m/s |
| Parameter | Temperature Coefficient |
| Short Circuit Current (Isc) | +0.04%/℃ |
| Open Circuit Voltage (Voc) | -0.23%/℃ |
| Maximum Power (Pmax) | -0.28%/℃ |
| Item | Specification |
| Product Certifications | IEC61215:2021, IEC61730:2030, CE (Europe Standard), China Quality Certification Centre Solar Product Cerification |
| Management System Certifications | ISO 9001:2015 Quality Management System, ISO 14001:2015 Environmental Management System, ISO 45001:2018 Occupational Health and Safety Management System |
| Product Warranty | 15 Years Material & Workmanship Warranty |
| Power Warranty | 30 Years Linear Power Output Warranty |
• 560–580W high output power (up to 580W) from 120 half-cut monocrystalline cells, paired with 22.7–23.5% module efficiency, directly increasing system-level energy production and ROI for large-scale projects.
• Bifacial design (80±5% bifaciality) captures albedo (reflected light) from the rear side, delivering extra power gain (BNPI data shows up to 638W max power with 10% albedo) — ideal for utility sites with high-reflectivity surfaces (snow, sand, gravel).
• SMBB Half-Cell Technology: Improves current collection uniformity and reduces internal cell current loss, boosting efficiency and minimizing power degradation.
• Ultra-Low LID (Light-Induced Degradation): N-type silicon naturally exhibits very low LID, preserving long-term power output and reducing performance degradation over the system’s lifecycle.
• Low-light performance: Maintains high efficiency under low-irradiation environments, extending daily energy production hours and improving output in cloudy/overcast conditions.
• Harsh environmental adaptability: Passed third-party salt spray and ammonia corrosion tests, making it suitable for coastal, agricultural, and industrial sites with high pollution or humidity.
• Robust mechanical durability:
5400Pa front-side / 2400Pa rear-side static load rating, withstanding heavy wind and snow loads.
25mm hailstone resistance at 23m/s, reducing risk of damage in severe weather events.
• 15-year product warranty + 30-year linear power output warranty (99% of rated power in Year 1, degrading only 0.4%/year thereafter, outperforming standard module warranties).
• Full compliance with global standards: IEC 61215/61730, ISO 9001/14001/45001, CE, and CQC certifications, ensuring safety, reliability, and eligibility for global utility-scale projects.
• High system voltage compatibility (1500V): Reduces balance-of-system (BOS) costs (fewer combiners, cables, and installation labor) for large arrays, lowering overall project CAPEX.
• 0~+3% power tolerance: Guarantees modules meet or exceed rated power, eliminating underperformance risks for large-scale installations.
• Low operating temperature coefficient: -0.28%/°C for Pmax, minimizing power loss in high-temperature environments (common in utility-scale sites) and improving summer performance.
• Standardized packaging: 37pcs per pallet / 740pcs per 40’HC, optimizing container loading efficiency and reducing logistics costs for bulk utility orders.
• MC4-compatible connectors, customizable output cables, and IP68-rated junction boxes simplify field installation and reduce maintenance needs.
It uses N-type monocrystalline cells with SMBB Half-Cell Technology, which improves current collection uniformity and reduces internal power loss.
What is LID, and how do these modules perform against it?
LID (Light-Induced Degradation) is power loss in the first few years of operation. N-type cells naturally have very low LID, preserving long-term performance better than traditional P-type modules.
What is the maximum system voltage these modules support?
A: They are rated for 1500V DC maximum system voltage, which reduces BOS (Balance of System) costs for large utility-scale arrays by allowing longer strings and fewer components.
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