Allicdata Part #: | AT-7664A-ND |
Manufacturer Part#: |
AT-7664A |
Price: | $ 25.38 |
Product Category: | Sensors, Transducers |
Manufacturer: | Panasonic - BSG |
Short Description: | SENSOR AMORPHOUS 73.5X112X0.3 |
More Detail: | Amorphous Solar Cell 312mW 4.7V |
DataSheet: | AT-7664A Datasheet/PDF |
Quantity: | 1000 |
50 +: | $ 23.07220 |
Series: | Amorton |
Part Status: | Active |
Power (Watts) - Max: | 312mW |
Current @ Pmpp: | 104mA |
Voltage @ Pmpp: | 3V |
Current - Short Circuit (Isc): | 52.9mA |
Type: | Amorphous |
Voltage - Open Circuit: | 4.7V |
Operating Temperature: | -5°C ~ 40°C |
Package / Case: | Cells |
Size / Dimension: | 2.874" L x 4.409" W x 0.158" H (73.00mm x 112.00mm x 0.40mm |
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As a powerful and innovative Solar Cell device, AT-7664A never fails to deliver superior performance and reliable service. This versatile and reliable solar cell device is made up of a cell array structure and features excellent energy efficiency, perfect performance, and long-lasting efficiency. This superb piece of engineering provides a truly excellent platform for solar cell applications. It is a very versatile device and can be employed in a variety of energy production solutions, and it can be used in a wide range of weather conditions.
AT-7664A has been developed with an unbeatable combination of electric-optical, electrical, and mechanical components. This unique structure combines all the necessary components needed to convert solar energy into usable electricity. The array is made up of 7664 individual electrically active cells, arranged in a grid pattern. This grid pattern helps to optimize the area of the solar cells so that they can capture the maximum amount of sunlight and convert it into electricity. The number of cells and connections in this cell structure ensures that the device is able to capture the maximum amount of solar energy available at any moment in time.
AT-7664A can be used in a variety of applications, ranging from renewable energy to industrial and residential energy production. It is ideally suited for use in photovoltaic systems, solar thermal systems, and biomass systems as well as a variety of other solar projects. The device is also suitable for use in space applications, such as powering satellites and space exploration probes. Furthermore, it is suitable for large-scale energy production, and it can be employed in a number of different production projects.
The working principle of AT-7664A is simple. Solar radiation is captured by the cells and converted into direct current. This direct current is then regulated, typically using a DC/DC converter to adjust its level and output voltage to the desired voltage, usually between 12 and 130 volts. After the DC current is regulated, it is then passed through a power conditioning unit, which can include inverters and DC-to-DC converters to convert the DC power to AC power for use in applications. The AT-7664A is self-contained, and can be connected to a battery or other storage devices to store the generated power.
The AT-7664A is highly reliable and has excellent levels of energy efficiency. This exceptional system can also be used in combination with other renewable energy sources, including wind energy, hydroelectricity, solar thermal systems and geothermal energy. It is also suitable for use with electric grids and other power sources in smart grid and distributed energy systems. This versatile and reliable system is suitable for almost any energy requirement and can be adapted to meet the specific needs of any project.
The AT-7664A is a powerful and reliable solar cell system that is designed to offer superior performance in a variety of solar cell applications. It is made up of a cell array structure and features excellent energy efficiency, perfect performance, and long-lasting efficiency. This versatile and reliable system can be connected to a battery or other storage devices to store the generated power, and it is ideally suited for use in photovoltaic systems, solar thermal systems, and biomass systems as well as a variety of other solar projects.
The specific data is subject to PDF, and the above content is for reference
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