Adopting industry-leading low-corrosion paste, LIF technology, and multi-layer Poly-Si/POML technology, fully upgraded on TOPCon 3.0, cell efficiency is further improved by 0.3%-0.5%.
Effectively enhance module conversion efficiency, lower system costs, and improve solar module reliability.
The super multi-busbar design increases the number of solder strips and main busbar solder points, resulting in a more uniform stress distribution of PV cells. This enhances tolerance to micro-cracks and broken grids and shortens the current transmission path; in this way, the series resistance is reduced, effectively enhancing current collection capability and improving optical utilization.
The module's bifacial power generation capability has been improved, providing customers with higher back-side power generation gains.
With a temperature coefficient as low as -0.29%/℃, this PV panel offers enhanced stability and reliability when operating in high-temperature environments.
This solar panels is adaptable to a variety of application scenarios including utility-scale power stations, C&I and distributed rooftop projects, agri-PV solar farms, and offshore solar plants.
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