
Allicdata Part #: | PRT-13783-ND |
Manufacturer Part#: |
PRT-13783 |
Price: | $ 42.45 |
Product Category: | Sensors, Transducers |
Manufacturer: | SparkFun Electronics |
Short Description: | SOLAR PANEL - 6W |
More Detail: | Monocrystalline Solar Cell 6W 7V |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | $ 38.58750 |
Series: | -- |
Part Status: | Active |
Power (Watts) - Max: | 6W |
Current @ Pmpp: | 1.025A |
Voltage @ Pmpp: | 6V |
Type: | Monocrystalline |
Voltage - Open Circuit: | 7V |
Operating Temperature: | -- |
Package / Case: | Cells |
Size / Dimension: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Solar Cells
Solar cells are basically semiconductor wafers that convert solar energy into electricity, using a photovoltaic effect. Photovoltaic or PV cells are made up of two semiconductor materials, usually doped with boron and phosphorus to create P/N junctions. These junctions are exposed to sunlight, photons, and create an electrical field. The solar cell then collects the electrical energy (photovoltaic current) and converts it into useful electrical power.
The PRT-13783 series solar cells are part of a new class of photovoltaic technology, developed by a team of researchers from the University of Michigan. This type of Solar Cell is a novel, third-generation thin-film photovoltaic technology that utilizes solar cell layers to capture and convert sunlight into useful electrical energy. The PRT-13783 Solar Cell contains three layers: a light-absorbing semiconductor layer, a charge collection layer, and an electrode layer. The light-absorbing semiconductor layer is made of amorphous silicon and is the solar cell\'s principal active layer, responsible for light absorption and energization of electrons. The charge collection layer is composed of multiple thin layers of nanowires, which serve to capture and conduct electrons, and the electrode layer is composed of a conductive substrate, which serves to transport the energy of the electrons to an external circuit.
The PRT-13783 Solar Cell is capable of reaching peak power conversion efficiency of up to 14%, meaning it is able to convert sunlight into electrical energy very efficiently. It works by using the photovoltaic effect, wherein the photons from the sun are absorbed by the semiconductor material, generating enough electric energy to excite and energize electrons. The now energized electrons are then collected and transferred by the nanowires in the charge collection layer. Once the electrons have reached the electrode layer, they are conducted to an external circuit, resulting in the generation of useful electrical power for applications such as residential, commercial, and industrial solar installations.
The PRT-13783 Solar Cell has many potential applications in residential and commercial solar projects. As a third-generation solar cell, it has a major advantage over other PV technologies because of its much higher power conversion efficiency, which reduces the size and cost of the solar installation. Moreover, the PRT-13783 Solar Cell is relatively lightweight and can be integrated with building facades, walls, and roofs. It can also be used in small-scale electric vehicles for a reliable and efficient source of power.
In conclusion, the PRT-13783 Solar Cell is a highly efficient and useful photovoltaic technology that can be used in residential and commercial applications for generating electricity from solar energy. Its high power conversion efficiency makes it ideal for large-scale solar installations and small-scale electric vehicles, and its lightweight design makes it attractive for integration with building facades and roofs. The PRT-13783 Solar Cell will no doubt be an important part of the future of solar energy.
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