313070001 Allicdata Electronics
Allicdata Part #:

1597-1414-ND

Manufacturer Part#:

313070001

Price: $ 26.48
Product Category:

Sensors, Transducers

Manufacturer: Seeed Technology Co., Ltd
Short Description: 3W SOLAR PANEL 138X160
More Detail: Monocrystalline Solar Cell 3W 8.2V
DataSheet: 313070001 datasheet313070001 Datasheet/PDF
Quantity: 126
1 +: $ 24.07230
Stock 126Can Ship Immediately
$ 26.48
Specifications
Series: --
Part Status: Active
Power (Watts) - Max: 3W
Current @ Pmpp: 540mA
Voltage @ Pmpp: 5.5V
Type: Monocrystalline
Voltage - Open Circuit: 8.2V
Operating Temperature: --
Package / Case: Cells
Size / Dimension: 6.300" L x 5.433" W x 0.059" H (160.00mm x 138.00mm x 1.50mm)
Description

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, which convert light energy into electrical energy, are becoming more and more popular. Photovoltaic cells, or solar cells as they are often referred to, are used primarily to power small electronic devices and toys. They are also used in larger solar energy systems, such as commercial solar power plants and residential solar home systems.In the most basic sense, a solar cell works by creating a voltage potential between two semiconductors. When sunlight or light of any other frequency strikes the semiconductor surface, electrons in the semiconductor material react and begin to move in opposing directions. This movement of electrons is what creates the ‘electrical current’.

313070001 Application Field and Working Principle

The 313070001 solar cell is a type of photovoltaic cell, specifically designed to use wavelengths of light from the solar spectrum. It is one of the most common commercial solar cells, and has solar cell efficiency ratings that range from 9% to 13%. These cells are used in many different applications, including portable devices, small toys, and larger solar power plants.To understand the working principle of the 313070001 solar cell, it is important to first understand the ‘photovoltaic effect’. This effect is a physical phenomenon in which certain materials, when exposed to sunlight, create a voltage potential between two different materials. This voltage potential creates a flow of electrons, which is the electrical current.In the case of a 313070001 cell, the two materials used in the photovoltaic effect are silicon and selenium. When light of a certain wavelength is applied to this combination of materials, a voltage potential is created. This voltage potential is then used to produce electricity, as the electrons created by the photovoltaic effect flow through an external circuit. This external circuit acts as a “load”, consuming the electrical energy produced by the solar cell.The efficiency of the 313070001 solar cell is primarily determined by the quality of the materials used in its construction. Good quality cells are often able to convert up to 13% of the sunlight incident on the semiconductor materials into electrical energy; that is, the electricity produced from the cell is 13% of the total light energy incident on the material. This efficiency rating makes the 313070001 solar cell one of the most efficient commercially available cells on the market.In addition to its application for powering electronic devices, the 313070001 solar cell can also be used to produce heat, using a process known as the ‘photoelectric effect’. In this process, light energy is converted to heat energy, which can then be used for heating water or other materials. Finally, the 313070001 cell can also be used for photovoltaic generation of electricity, in which the effects of the photovoltaic effect are used to convert sunlight directly into electricity.In summary, the 313070001 solar cell is a photovoltaic cell that is designed to use wavelengths from the solar spectrum. This type of solar cell is used in many different applications, including portable devices, small toys, and larger solar power plants. By using the photovoltaic effect, the 313070001 cell is able to convert up to 13% of incident sunlight energy into electrical energy. In addition to its use for powering electronic devices, the cell can also be used for photoelectric generation of electricity or for producing heat energy.

The specific data is subject to PDF, and the above content is for reference

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