450W High-Efficiency Half-Cell Monocrystalline Solar Panel Durable for Home & Commercial Rooftop
- 450W High-Efficiency Half-Cut Monocrystalline Solar Panel is engineered to deliver exceptional power output and long-term reliability across both residential rooftop and commercial building installations. Built on advanced monocrystalline cell technology combined with a precision half-cut cell architecture, this panel achieves superior conversion efficiency and consistent energy generation performance throughout its operational lifetime. The half-cut cell design splits each cell into two independent halves, significantly reducing resistive current losses within each string, suppressing hot spot formation, and improving overall module power output — particularly under partial shading conditions commonly encountered in rooftop environments with chimneys, vents, or adjacent structures casting intermittent shadows.
- Half Cut Cell Monocrystalline PERC Solar PanelISO9001:2008, ISO14001:2004, OHSAS18001 Factorycertificates IEC61215, IEC61730 product certificates
- MULTI BUS BAR TECHNOLOGY: Improve efficiency of modules, offers better appearance.
- HALF CUT TECHNOLOGY: Under the same shadow condition, Lower power loss than full cell.
- PERC CELL TECHNOLOGY: 120N Tensile Strength Frame110% Seal-lip Design Glue Injection.
- LOW LIGHT PERFORMANCE: By high efficiency glass with surface veneering technology to Achieve excellent performance in low light conditions.
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- Integral component by the approval of 2400pa wind load and 5400pa snow load.
- The module's superior temperature coefficient ensures that power output degradation at elevated operating temperatures is kept to a minimum, preserving strong energy yield performance even during peak summer conditions.
- The unique circuit design reduces the hot spot temperature and reduces the power loss,and improves the power generation of the module.
- By using excellent glass and battery surface texturing technology,in order to achieve excellent environment under the low light environment.
- Guaranteeing the Eagie components of large-scale production under the condition of 60 ℃ / 85%,PID (potential) induced attenuation phenomenon caused by the attenuation rate fell to a minimum.
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- The unique circuit design reduces the hot spot temperature and reduces the power loss,and improves the power generation of the module. Under low irradiance of 200 W/m², relative conversion efficiency remains at or above 97%, maximizing energy harvest during early morning, late afternoon, and overcast periods.
- Anti-PID performance has been validated under rigorous test conditions of 85°C and 85% relative humidity over 96 continuous hours, confirming minimal susceptibility to potential-induced degradation and ensuring stable long-term system output.
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- The half-cut cell circuit configuration effectively reduces hot spot temperatures and resistive power losses within each cell string, directly improving overall module power generation performance and extending long-term component reliability. With a power temperature coefficient of only -0.32%/K, the module maintains superior output stability at high operating temperatures, making it well-suited for hot-climate and high-irradiance installations.
- Structurally, the module is certified to withstand wind loads of 2,400 Pa and snow loads of 5,400 Pa, ensuring dependable performance in demanding environmental conditions including coastal, high-altitude, and heavy-snowfall regions.
- Relative conversion efficiency≥97% under 200W/m2 low light, Lower sealing loss, more suitable for high-efficiency modules.
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- Integral component by the approval of 2400pa wind load and 5400pa snow load.
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- The authoritative test of anti-PID (potential-induced degradation) under severe conditions (85°C/85%RH, 96 hours), the probability of degradation caused by the PID phenomenon is minimized.
