
690W–720W / Bifacial Double-Glass Photovoltaic Module
By adopting advanced LECO N-type battery technology and SMBB half-cell process, higher conversion efficiency and lower temperature coefficient are achieved, bringing significant BOS cost savings and LCOE optimization to large ground power plants.
Output power range: 690W – 720W
Maximum conversion efficiency: 23.18%
Module structure: 132 half-cell double-glass bifacial
System voltage: 1500V DC
Module dimensions: 2384 × 1303 × 33 mm
| Solar Cells | N-type Mono |
| No.of Cells | 132 (6×22) |
| Dimensions | 2384 x 1303 x33mm |
| Weight | 38.3kg |
| Front /Back Glass | 2.0mm coated semi-tempered glass |
| Frame | Anodized aluminium allby |
| Junction Box | Ip68 rated (3 by pass diodes) |
| Output Cables | 4.0mm |
| 2250mm (+)/350mm (-) | |
| Length can be customized | |
| Connectors | Mc4 compatible |
| Mechanical load test | Front 5400Pa/Rear 2400Pa |
| Operating Characteristics | |
| Operating Module Temperature | -40°C to +85°C |
| Maximum System Voltage | 1500 DC (IEC) |
| Maximum Series Fuse Rating | 35A |
| Power Tolerance | 0/+5W |
| Packing Configuratio | |
| Container | 40’HQ |
| Pieces per pallet | 34 |
| Pallets per container | 18 |
| Pieces per container | 612 |
SMBB Half-Cut Cell Technology
The multi-busbar half-cell design significantly reduces internal resistance losses and hot spot effects, improves the power generation performance of the module under partial shading conditions, reduces the risk of microcracks, and enhances long-term reliability.
Bifacial Power Generation, Extra Gain
The double-glass structure, combined with a high-transmittance back panel, fully utilizes both reflected and scattered light from the ground. Depending on the installation environment, the back panel gain can reach:
5% Gain: Power increased to 725W – 756W
15% Gain: Power increased to 794W – 828W
25% Gain: Power increased to 863W – 900W
Excellent anti-PID and low LID performance
N-type batteries naturally possess low light-induced degradation (LID) and excellent resistance to potential-induced degradation (PID), resulting in extremely low degradation in the first year and ensuring stable output over a 15-year lifespan.
Extremely high mechanical load capacity and adaptability to harsh environments
Front-end load: 5400Pa / Back-end load: 2400Pa
Passed rigorous environmental tests including salt spray (IEC 61701) and ammonia (IEC 62716)
Suitable for harsh applications in coastal areas, agriculture, and animal husbandry.
Recommended Application Scenarios
Large-scale ground-mounted photovoltaic power stations
Commercial and industrial distributed photovoltaic projects
Coastal and saline-alkali areas
Livestock/agricultural greenhouses
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