Shingled solar panels stand out as a groundbreaking innovation in the realm of solar technology, featuring a configuration that resembles the intricate arrangement of solar cells like a jigsaw puzzle. In a departure from traditional designs, these panels overlap similar to shingles on a roof, presenting a visually striking and highly efficient pattern. This distinctive layout not only optimizes the use of available space but also minimizes energy loss, leading to heightened power output and superior performance. Shingled solar panels redefine the aesthetics of solar installations, marrying functionality with a visually captivating mosaic. Choosing shingled solar technology signifies a move towards cutting-edge design, efficiency, and a sustainable future in the field of 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
In terms of circuit design, traditional components use tin-coated copper strips for interconnection, and the resistance of the soldering strips can easily cause power loss. Shingled PV modules use low-resistance conductive adhesive to connect the two cells directly, shortening the movement distance between electrons and reducing resistance, which will help increase power.
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