387001815 Allicdata Electronics
Allicdata Part #:

1487-1038-ND

Manufacturer Part#:

387001815

Price: $ 17.97
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: ET15,31,F2A,0909,11,W2.25
More Detail: Peltier Module 8.78mm x 8.78mm x 2.69mm 3.2W @ 25°...
DataSheet: 387001815 datasheet387001815 Datasheet/PDF
Quantity: 15
1 +: $ 16.33590
10 +: $ 14.95180
25 +: $ 14.49030
Stock 15Can Ship Immediately
$ 17.97
Specifications
Series: ET
Part Status: Active
Outline L x W x H: 8.78mm x 8.78mm x 2.69mm
Qmax @ Th: 3.2W @ 25°C
Delta Tmax @ Th: 64°C @ 25°C
Current - Max: 1.5A
Voltage - Max: 3.5V
Resistance: 2.93 Ohms
Operating Temperature: 150°C
Features: Lead Wires, Lapped, Sealed
Description

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Thermoelectric cooling, also known as the Peltier effect, is a technology used to cool and heat surfaces and objects using electricity. This effect is achieved by making use of the thermoelectric voltage generated when two dissimilar conductors are connected together and changes in temperature occur. The thermoelectric voltage created is then used to pump current through a circuit. The circuit is then used to generate heat or cold depending on the materials used and the purpose of the application.

The 387001815 application field covers the majority of applications that use Peltier modules. These modules work by using impurities in the conductive materials to create an imbalance in the thermoelectric voltage. This creates a thermoelectric effect with the current being then passed through a series of conducting elements. During this process, the current causes the imbalance of the current to be converted into either cold or heat.

The modules are used for various heating and cooling purposes. They can act as heat pumps, coolers, and refrigerators, among other applications. The Peltier modules are also used in medical applications as a means to regulate body temperatures and for monitoring vital signs. In addition, Peltier modules have been used to reduce the thermal energy lost from electronics, optoelectronics, and solar cells in order to improve their efficiency.

The working principle behind the 387001815 module is relatively simple. When the current is passed through the module, electrons from the negative side of the module move to the positive side. This causes a build-up of electric potential at the interface of the materials. As a result, this electric potential creates a temperature gradient that causes heat to transfer from the hot side of the module to the cold side. This produces a cooling effect.

Conversely, if the current is reversed, the electrons will move from the positive side of the module to the negative side. This will cause a build-up of electric potential at the interface of the materials that produces a heating effect, which is then used in heating applications. In summary, the 387001815 module is used to convert energy from one form to another, using the thermoelectric voltage created by the current.

The applications and working principles of Peltier modules have been used for decades in hundreds of different applications. While early modules relied heavily on the thermoelectric voltage to supply the current needed for the application, advances in technology have now enabled bi-directional control of the modules. This bi-directional control allows greater control of the temperature levels and outputs of the modules, making them perfect for use in a variety of applications.

The applications of Peltier modules are wide-ranging, from medical and industrial to automotive and aerospace. Due to their effectiveness and low cost, Peltier modules have become the preferred cooling option over many traditional methods like fans or compressors. In addition, the use of Peltier modules has significantly reduced energy consumption in many applications, making them an invaluable tool in the modern world.

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

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