430553-502 Allicdata Electronics
Allicdata Part #:

1487-1040-ND

Manufacturer Part#:

430553-502

Price: $ 17.48
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: ET20,65,F2A,1312,11,W2.25
More Detail: Peltier Module
DataSheet: 430553-502 datasheet430553-502 Datasheet/PDF
Quantity: 21
1 +: $ 15.88860
10 +: $ 14.54360
25 +: $ 14.09460
Stock 21Can Ship Immediately
$ 17.48
Specifications
Series: --
Part Status: Active
Outline L x W x H: --
Qmax @ Th: --
Delta Tmax @ Th: --
Operating Temperature: --
Features: --
Description

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Thermoelectricity, also known as the Peltier effect is the production of an electrical current from heat. This field of technology is widely used in many and various industries such as electronics, aerospace, environmental engineering, and the automotive industry, to name a few. The Peltier effect is exploited through the use of a Peltier Module, also known as a thermoelectric module, which is a device that utilizes the Peltier effect. The aim of this article is to explain the application field and working principle of the 430553-502, a thermoelectric Peltier module.The 430553-502 is a thermoelectric Peltier module based on the Seebeck effect. This module is a heat pump, composed of two ceramic layers on either side of a semiconductor material, usually Silicon or Germanium. It is often used in applications such as cooling, heating, sensing, and thermoelectric energy conversion. It can be used to cool and heat various objects ranging from semiconductor materials to water. The versatility and efficiency of this module is what makes it so popular.The operation of a Peltier module is based on the Seebeck effect. This effect is based on a law that states that when two conducting materials are in contact with each other, a voltage will appear across them when a temperature difference is present between them. This voltage acts as a driving force for the current to flow between the two materials. When a voltage is applied to the module, the current that flows through it causes the semiconductor material to become cooler on one side and warmer on the other side of the module. This is known as the Peltier effect.The 430553-502 has a variety of applications. The module can be used as a cooler to keep certain objects or materials at a constant temperature, as a heater to raise and control the temperature of an object or material, or as a thermoelectric energy converter to produce electricity from heat.The 430553-502 module is used in a variety of industries and applications. It is widely used in the automotive industry to cool and heat engine parts and electronics. It is also used in the aerospace industry to keep aircraft equipment and components at the correct temperature for optimal performance. The module is also used in medical equipment to cool and heat temperature-sensitive equipment.The module uses two main components: a ceramic layer and a semiconductor material layer. The ceramic layer acts as an insulator between the semiconductor material and the load or device. It prevents heat transfer between the load and the semiconductor material layers. The semiconductor layer is composed of two semiconductor materials: the P-type and the N-type. The P-type layer acts as a positive terminal and the N-type layer acts as negative terminal. When a voltage is applied to the two layers, a current flows through the module and a temperature difference is established between the two sides of the module.The 430553-502 module can be used in a wide variety of applications. Its high efficiency and versatility make it suitable for a vast number of applications ranging from cooling and heating, sensing and thermoelectric energy conversion. Its reliability and dependability make it suitable for usage in many industries.In conclusion the 430553-502 thermoelectric Peltier module is versatile and highly efficient in many and various applications. The module is based on the Seebeck effect and has two layers of ceramic and semiconductor material that create a temperature difference when a voltage is applied across them. It is widely used in a variety of industries ranging from automotive, aerospace, medical equipment and environmental engineering. Its features and characteristics make it an excellent choice for applications requiring high efficiency thermoelectric energy conversion.

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

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