387001824 Allicdata Electronics
Allicdata Part #:

1487-1072-ND

Manufacturer Part#:

387001824

Price: $ 18.21
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: ET11,12,F2,3030,TA,RT,W6
More Detail: Peltier Module 34.00mm x 30.00mm x 2.41mm 95.4W @ ...
DataSheet: 387001824 datasheet387001824 Datasheet/PDF
Quantity: 23
1 +: $ 16.55640
10 +: $ 15.15590
25 +: $ 14.68810
Stock 23Can Ship Immediately
$ 18.21
Specifications
Series: ET
Part Status: Active
Outline L x W x H: 34.00mm x 30.00mm x 2.41mm
Qmax @ Th: 95.4W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 11.0A
Voltage - Max: 16.9V
Resistance: 1.61 Ohms
Operating Temperature: 150°C
Features: Lead Wires, Lapped, Sealed
Description

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Thermoelectric technology is one of the most exciting applications of modern electronics. In the past, thermal power plants used large amounts of energy for the generation of electricity. Now, by using the principles of thermoelectricity, electrical power can be generated and stored in a fraction of the time that it used to take.The 387001824 application field and working principle is based on the idea that electrical current passing through a material creates a thermal effect. The process involves two distinct stages; the first is the generation of electricity from a thermoelectric device, and the second is the storage of the generated electricity.

The process begins with the generation of electricity by heating up one side of the device, usually a metal plate, to a high temperature. This in turn causes an electric potential difference between the two sides of the material, one side being cooler than the other. This electric potential difference causes current to flow between the two sides. With the current flow, heat is produced on the cooler side, resulting in a net energy output.

After the current flow has been generated, the electricity is then stored in a form known as a Peltier module. This type of module consists of two metal plates on either side of a thin insulation material which is usually a thin layer of silver. The two plates are placed in series with each other and the thermal properties of the silver are used to store the generated power in the form of heat.

The Peltier module is then connected to a power source, such as a battery or mains electricity, which provides a steady supply of electrical energy. This energy is then used to supply the necessary current to the Peltier module. The module then acts as a converter which converts the electrical energy into thermal energy, which is then transferred to the floor or wall which the module is installed on.

The stored thermal energy can then be used for a variety of different applications, such as cooling systems, space heating, or even powering electrical appliances. This makes the 387001824 field and working principle a highly advantageous technology, especially in cases where energy sources are limited or difficult to access.

In conclusion, the 387001824 application field and working principle is an excellent way of utilising thermoelectric technology to generate electrical energy. It takes advantage of the thermal properties of certain materials and makes it possible to store generated power in a form that can be used for a variety of different applications. It is therefore a highly advantageous and efficient way of generating and storing electrical energy.

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

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