AM-7S03CAR Allicdata Electronics
Allicdata Part #:

AM-7S03CAR-ND

Manufacturer Part#:

AM-7S03CAR

Price: $ 48.34
Product Category:

Sensors, Transducers

Manufacturer: Panasonic - BSG
Short Description: SENSOR AMORPHOUS 150X165X1.8
More Detail: Amorphous Solar Cell 1.078W 24V
DataSheet: AM-7S03CAR datasheetAM-7S03CAR Datasheet/PDF
Quantity: 1000
25 +: $ 43.94300
Stock 1000Can Ship Immediately
$ 48.34
Specifications
Series: Amorton
Part Status: Active
Power (Watts) - Max: 1.078W
Current @ Pmpp: 70mA
Voltage @ Pmpp: 15.4V
Type: Amorphous
Voltage - Open Circuit: 24V
Operating Temperature: -10°C ~ 60°C
Package / Case: Cells
Size / Dimension: 5.910" L x 4.331" W x 0.074" H (150.00mm x 110.00mm x 1.80mm)
Description

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Solar Cells is an energy-producing device that converts direct sunlight into electricity. One type of solar cell is the AM-7S03CAR, a device that utilizes both monocrystalline silicon and polycrystalline silicon to create electrical energy from sunlight. It is an actively illuminated solid-state module with photovoltaic conversion.

The AM-7S03CAR is made up of several cell elements. The monocrystalline silicon layers make up the front and back contacts of the cell, respectively. In between the two contacts is a structure composed of a polycrystalline silicon and a barrier layer. The structure, along with its high electrical conductivity, allows the device to efficiently capture energy from the sunlight and generate electricity.

One of the most important aspects of the AM-7S03CAR system is its efficient electrical conductivity. This makes it possible for the device to capture and convert light into electricity with minimal loss of energy. The device also features a unique transparent conductive oxide (TCO) layer, which has an adjustable reflectance, allowing more efficient energy conversion.

At its core, the AM-7S03CAR is a photovoltaic (PV) module, meaning it is able to capture solar radiation from the sun and convert it into usable electrical energy. Its efficiency rate allows for efficient conversion, making it well suited for a variety of solar-powered applications, such as powering homes, businesses, and a variety of other energy-dependent applications.

In terms of working principles, the AM-7S03CAR uses a combination of both photovoltaic and optical effects. Through the photoelectric effect, the device is able to absorb solar radiation, with a light-absorbing material creating a potential difference across the two contacts. The electrical energy created through the photoelectric effect is then directed to the optical function, which amplifies the electricity even further.

In addition to the optical effect, the AM-7S03CAR also utilizes an internal concept known as carrier collection. This process utilizes the electrons produced through the photoelectric effect to carry electrical currents, allowing the module to gather and store even more energy from the sunlight. Through this process, the module can effectively capture and store enough energy to power a wide variety of electrical applications.

The variety of applications for the AM-7S03CAR is almost endless. It can be used to power homes, businesses, solar-powered generators, lights, and a variety of other applications that require electricity. Furthermore, the AM-7S03CAR is extremely efficient, making it suitable for a number of energy-saving applications. For example, it can be used to power photovoltaic panels, which can in turn power other energy-saving devices, such as lighting, fans, and other energy-dependent applications.

In conclusion, the AM-7S03CAR is a photovoltaic device that uses both monocrystalline silicon and polycrystalline silicon to convert direct sunlight into usable electrical energy. It employs both photovoltaic and optical effects to achieve this goal, as well as an internal concept known as carrier collection, allowing it to store more energy from the sun for various applications. As such, it is an efficient and reliable energy-producing device that can be used for a wide range of applications, making it a great choice for those looking to lower their energy consumption.

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

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