ET2.0-7-F1A Allicdata Electronics
Allicdata Part #:

ET2.0-7-F1A-ND

Manufacturer Part#:

ET2.0-7-F1A

Price: $ 0.00
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: THERMOELECT
More Detail: Peltier Module
DataSheet: ET2.0-7-F1A datasheetET2.0-7-F1A Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: CP
Part Status: Obsolete
Outline L x W x H: --
Qmax @ Th: --
Delta Tmax @ Th: --
Operating Temperature: --
Features: --
Description

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Thermal-thermoelectric, Peltier modules are used in a variety of applications to convert heat energy into mechanical or electrical energy. The ET2.0-7-F1A module is a popular version of these modules that has gained acceptance in a number of industries for its high efficiency and ease of installation. This article will provide an overview of the application fields and working principle of the ET2.0-7-F1A module.

Applications of ET2.0-7-F1A Modules

The ET2.0-7-F1A module is suitable for a range of applications, including industrial processes, domestic appliances, and cooling systems. It is often used in industrial processes to convert waste heat energy into electrical energy, thus reducing energy costs. In the home, the ET2.0-7-F1A module can be used to drive refrigeration systems, air conditioners, and heat pumps. In industrial cooling applications, it is used to control temperatures in computer and industrial equipment, as well as in process cooling.

Working Principle of ET2.0-7-F1A Modules

The ET2.0-7-F1A module works based on the Seebeck effect, which states that when a temperature difference is applied across two dissimilar metals, a voltage is generated. The module contains two dissimilar metal plates, one of which is heated and the other is cooled. As a result, a temperature difference is created across the plates, and an electric current is generated. This current can then be used to drive electrical devices.

The ET2.0-7-F1A module also works on the Peltier effect. The Peltier effect states that a temperature difference is created as a result of an electric current flowing through two dissimilar metals. When a voltage is applied to the plates in an ET2.0-7-F1A module, an electric current is generated, resulting in a temperature difference between the two plates. This temperature difference can then be used to drive cooling and heating systems.

Advantages of ET2.0-7-F1A Modules

The ET2.0-7-F1A module offers a number of advantages to users. Its compact size and low weight make it easy to install in a variety of applications. The module features high efficiency and is capable of converting heat energy into electrical or mechanical energy with minimal loss. Its ability to produce a consistent temperature difference between the two plates makes it an ideal choice for a variety of cooling and heating applications. Finally, the module is designed to be long-lasting and reliable, providing years of dependable performance.

Conclusion

The ET2.0-7-F1A module is a popular thermoelectric module that is capable of converting heat energy into electrical or mechanical energy efficiently. It is suitable for a variety of applications, and its reliability and efficiency make it an excellent choice for many users. The module works based on the Seebeck effect and the Peltier effect, and its advantages include a compact size, high efficiency, and long-lasting performance.

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

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