Shingled solar panels revolutionize traditional solar technology with their distinctive design, resembling a mosaic of interconnected solar cells. Unlike conventional panels, shingled modules overlap like roof shingles, creating a visually unique and highly efficient solar array. This innovative architecture minimizes energy loss and maximizes the use of available space, resulting in heightened power output and increased overall performance. Shingled solar panels not only provide an aesthetic appeal but also deliver a sustainable and cost-effective solution for harnessing solar energy.
Maximum Power: Pmax [W]
|
445 | 440 | 435 | 430 | 425 | 420 |
Open Circuit Voltage: Voc [V]
|
43.8 | 43.7 | 43.6 | 43.5 | 43.4 | 43.3 |
Short Circuit Current: Isc [A]
|
13.01 | 12.90 | 12.79 | 12.68 | 12.56 | 12.46 |
Voltage at Maximum Power: Vmp [V]
|
36.4 | 36.3 | 36.2 | 36.1 | 36.0 | 35.9 |
Current at Maximum Power: Imp [A]
|
12.23 | 12.13 | 12.02 | 11.92 | 11.81 | 11.71 |
Module Efficiency: η [%]
|
21.4 | 21.1 | 20.9 | 20.7 | 20.4 | 20.2 |
Product Pictures
Feature
Due to the limitations of the welding machine process in traditional components, there is generally a 2mm spacing between battery cells, resulting in a large amount of blank area in the component. In the shingled component, there is zero spacing between the battery sheets and the battery sheet stacks. More battery sheets can be packaged in the same area. , thereby improving the conversion efficiency of photovoltaic modules.
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