Solar Cell Application

Solar Cell Application is 25 percent more efficient at harnessing the sun’s energy than traditional cells. Ted Sargent, professor of electrical engineering at the University of Toronto, revealed his new solar cell in the current issue of Nature Materials.

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Solar Cell Application is more efficient and practical in application than traditional solar cells. Traditional solar cells are big bulky panels only feasible for large applications with big budgets. The new solar cell is constructed from flexible plastic material, opening up a new diversity of potential applications for solar energy. For example, these solar cells have the capability to be sewn into fabric, turning clothes into a powerful energy-generating device.

Terry White, President of the Solar Energy Society of Canada, said solar cells like these could completely transform the industry. “If they make solar cells less expensive, and the potential applications more varied, then it’s a major breakthrough” he said.

According to Sargent, this new technology could be available consumers within five to ten years. He is currently looking for inventors who could turn the invention into a commercially viable product. He has already caught the eye of Lux Capital, a venture capitalist firm based out of Manhattan.

SYP180S-50M
SYP180S-50M

MONO or POLY: POLY
Maximum power (Wp):  180W
Maximum power voltage (V): 36
Maximum power current (A): 5.0
Open circuit voltage (V): 44.8
Short circuit current (A): 5.3
Size of solar cells (mm): 156x156
Number of cells (Pcs): 72 PCS ( 6X12)
Size of module (mm): 1580x808x50mm
Brand Name of Solar Cells: RISEN
Maximum system voltage (V): 1000