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The module uses 2.0+2.0mm AR-coated heat-strengthened glass on both faces, so it captures direct front-side irradiance and ground-reflected light on the rear simultaneously. Its 1762×1134×30mm footprint and 24.5kg weight suit standard utility-scale racking and tracker clamps without custom hardware. An IP68 junction box, MC4-compatible connectors and 4mm² cables (±1100mm) speed up field wiring, while 37 modules per pallet and 740 per 40'HC container keep freight cost per watt low.
Item | Specification |
Product Model | LC210R-96MDB |
Power Range | 445W ~ 465W |
Cell Type | N-type Monocrystalline Silicon |
Wafer Size | 210mm |
Cell Architecture | 96 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 |
445W | Maximum Power (Pmax) | 445W | - |
Module Efficiency | 22.5% | - | |
450W | Maximum Power (Pmax) | 450W | - |
Module Efficiency | 22.8% | - | |
455W | Maximum Power (Pmax) | 455W | - |
Module Efficiency | 23.0% | - | |
460W | Maximum Power (Pmax) | 460W | - |
Module Efficiency | - | - | |
465W | Maximum Power (Pmax) | 465W | - |
Module Efficiency | - | - |
Module Power Grade | 445W | 450W | 455W | 460W | 465W |
Maximum Power (Pmax) | 490W | - | - | - | - |
Open Circuit Voltage (Voc) | 35.87V | 36.21V | - | - | - |
Short Circuit Current (Isc) | 16.10A | 16.73A | - | - | - |
Item | Specification |
Module Dimensions | 1762 × 1134 × 30mm |
Module Weight | 24.5kg |
Cell Orientation | 96 Cells |
Frame | Anodized Aluminum Alloy Frame |
Item | Specification |
Operational Temperature Range | -40°C ~ +85°C |
Maximum Power Output Tolerance | 0 ~ +3% |
Maximum System Voltage | 1500V DC |
Maximum Series Fuse Rating | 30A |
Nominal Operating Cell Temperature (NMOT) | 45 ± 2°C |
Bifaciality | 80 ± 5% |
Fire Rating | IEC Class A |
Hailstone Resistance | 25mm Diameter Hailstone at 23m/s Impact Speed |
Parameter | Temperature Coefficient |
Short Circuit Current (Isc) | +0.04%/°C |
Open Circuit Voltage (Voc) | -0.23%/°C |
Maximum Power (Pmax) | -0.28%/°C |
Item | Specification |
Product Certifications | IEC 61215:2021, IEC 61730:2023, CE (European Standard), China Quality Certification Centre Solar Product Certification |
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 |
At the top of the range the 465W grade reaches [[23.3%]] module efficiency at STC, among the highest power densities available in a 1762×1134mm frame. 210mm N-type half-cut cells with SMBB (super-multi-busbar) design cut resistive losses and lift low-light output, so the module keeps generating through dawn, dusk and overcast hours. With 80±5% bifaciality it adds rear-side yield on high-albedo ground, typically 10-25% extra annual energy in utility-scale fixed-tilt and tracker arrays. A 0~+3% positive power tolerance means every module ships at or above nameplate, keeping string sizing and yield models predictable.
N-type cell technology suppresses light-induced and potential-induced degradation. The module carries a 30-year linear power warranty with a maximum [[1.0%]] first-year degradation, [[0.4%]] per year thereafter, and at least [[87.4%]] of nameplate power at year 30. Its −0.28%/°C Pmax temperature coefficient limits high-temperature losses, a decisive advantage at open-field utility sites in hot, high-irradiance regions. Dual 2.0mm heat-strengthened glass and an anodised aluminium frame carry [[5400Pa]] front and [[2400Pa]] rear static loads, and the unit is tested against 25mm hailstones at 23m/s. An IP68 junction box protects the module against dust and water ingress.
Everything about this module is sized for volume. 1500V DC system voltage cuts string count and balance-of-system cost per megawatt. Customisable 4mm² cables (±1100mm) and MC4-compatible connectors reduce on-site wiring time, and the anodised frame accepts mainstream clamp positions for both fixed-tilt and single-axis tracker racking. Packaging at [[37]] modules per pallet and [[962]] per 40'HC container is optimised for container-load delivery and site storage, supporting the bulk schedules utility-scale developers and EPC contractors plan around.
This utility-scale industrial solar module complies with the strictest international standards, holding certifications including IEC 61215:2021, IEC 61730:2023, CE, and China Quality Certification Centre Solar Product Certification. Our manufacturing is certified under ISO 9001:2015, ISO 14001:2015, and ISO 45001:2018 management systems. We provide a 15-year material and workmanship warranty, paired with a 30-year linear power output warranty, delivering long-term investment security for industrial project owners.
Built for utility-scale and large-scale distributed generation. Typical deployments include centralized ground-mount PV plants, single-axis tracker and fixed-tilt arrays, agrivoltaic and high-albedo desert sites where bifacial gain is highest, and industrial self-consumption systems in the megawatt range. The module is specified by utility-scale developers, EPC contractors, solar system integrators and industrial energy management teams that procure by container load and require documented IEC certification, traceable quality data and a 30-year performance warranty. For high-albedo ground and tracker installations, bifacial gain of 10-25% should be modelled in the yield study.
1500V DC. Higher string voltage means fewer strings, less DC cabling and a lower balance-of-system cost per megawatt — a direct advantage on utility-scale ground-mount layouts.
With 80±5% bifaciality the module harvests ground-reflected light on the rear face in addition to front-side irradiance. On high-albedo ground and elevated tracker mounts this typically adds 10-25% annual energy yield, improving project IRR. The actual gain depends on albedo, mounting height and row pitch, so we recommend modelling it in the yield study.
Standard MOQ is 740 modules per power grade, quoted container-load for utility-scale orders. OEM and ODM are available: frame colour, label and nameplate branding, junction box and connector brand, cable length and packaging can all be specified. Custom tooling lead time is 4 weeks.
Yes. We supply the full technical datasheet, IEC 61215:2021 and IEC 61730:2023 certificates, ISO management system certificates and factory flash test data on request. Send your project details to info@lp-solar.com and we will return the document pack with the quotation.