430701-504 Allicdata Electronics
Allicdata Part #:

926-1348-ND

Manufacturer Part#:

430701-504

Price: $ 45.63
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: ET19,35,F1N,0612,11,RT,W2.25
More Detail: Peltier Module 12.20mm x 6.00mm x 1.65mm 4.5W @ 25...
DataSheet: 430701-504 datasheet430701-504 Datasheet/PDF
Quantity: 10
1 +: 45.63000
Stock 10Can Ship Immediately
$ 45.63
Specifications
Series: OptoTEC™
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

Thermoelectric, Peltier Modules, 430701-504 application field and working principle

Thermoelectric, Peltier Modules have been utilized in both industrial and electronic applications for decades. Originally developed for use in industrial processes such as air conditioning and refrigeration, the 430701-504 module is now also used for a wide range of electronic cooling and thermoelectric generated energy solutions. This article will provide an overview of 430701-504 applications and an explanation of their working principle.

In general terms, the 430701-504 module is a two-state device that utilizes the Peltier effect to convert electrical energy into a temperature differential. It operates on what is known as a ‘hot’ and ‘cold’ side; a cold side which absorbs heat from the environment, and a hot side which radiates the generated thermal energy. The module comprises a number of thermoelectric wires made of an alternating pattern of two materials – a ‘hot’ side with n-type material (doped with an n-type impurity) and a ‘cold’ side with p-type material (doped with a p-type impurity).

When electric current is passed through the module, there is a free movement of majority carriers across the junction, resulting in a transfer of heat. When a voltage is applied to one side of the module, electrons will move from the ‘cold’ side to the ‘hot’ side, and in turn transfer heat from the ‘cold’ side to the ‘hot’ side. Conversely, when the voltage is reversed, electrons travel from the ‘hot’ side to the ‘cold’ side, and transfer heat from the ‘hot’ side to the ‘cold’ side.

The 430701-504 module is used for a number of different applications. Since it can cool or generate heat, it can be used for temperature maintenance in sensitive electronic components such as CPUs or GPUs, for cooling or heating the air in products such as air conditioners and refrigerators, or for thermoelectric generation, such as the harvesting of waste heat to produce electrical power.

The 430701-504 is also ideal for electrical cooling in applications where space is at a premium, such as closed portable transport systems, electronic enclosures, and medical equipment. The module’s small size and low weight makes it a very attractive option for many applications, and its relatively low operating voltage makes it suitable for a wide range of electrical demands.

The 430701-504 module is known for its efficient operation and long life. Its low thermal resistance ensures that it runs at optimal efficiency, allowing it to maintain temperature fluctuations within a plus or minus 5 degree range. Furthermore, its robust construction and simple design ensures that operation is reliable and its lifespan is extended. Additionally, the module also includes built-in over-temperature protection, which makes it safe to use in environments with limited thermal management.

In conclusion, 430701-504 thermoelectric modules are highly valued for their ability to convert electrical energy into temperature differentials. Their small size and low weight make them perfect for many different applications, from cooling and heating air in products such as air conditioners and refrigerators to thermoelectric generation. In addition, they are known for their efficient operation and long lifespan, utilizing low thermal resistance and built-in over-temperature protection. The 430701-504 module is an ideal choice for many different uses.

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

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