387001826 Allicdata Electronics
Allicdata Part #:

1487-1074-ND

Manufacturer Part#:

387001826

Price: $ 39.21
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: ET8,28,F2,5252,TA,RT,W6
More Detail: Peltier Module 56.00mm x 52.00mm x 3.81mm 163.0W @...
DataSheet: 387001826 datasheet387001826 Datasheet/PDF
Quantity: 11
1 +: $ 35.63910
10 +: $ 32.54960
25 +: $ 31.51970
Stock 11Can Ship Immediately
$ 39.21
Specifications
Series: ET
Part Status: Active
Outline L x W x H: 56.00mm x 52.00mm x 3.81mm
Qmax @ Th: 163.0W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 8.5A
Voltage - Max: 38.4V
Resistance: 4.62 Ohms
Operating Temperature: 150°C
Features: Lead Wires, Lapped, Sealed
Description

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Thermo-electric coolers, also known as Peltier coolers, are among the common applications of 387001826. Though they come in many shapes, sizes, and designs, they all make use of the same working principle. This article will take a look at the basics of the Peltier module as well as how it is used in modern applications.

The basic principle behind Peltier coolers is quite simple – heat is transferred from one side of a junction to the other via a thermal gradient. When electrical current is applied to the module, the positive side of the module will absorb energy, while the negative side will emit energy as heat. This process of heat transfer creates a temperature difference between the two sides of the junction, resulting in cooling.

There are a few key components in a Peltier module that drive their operation. First is the thermoelectric material, usually a type of semiconductor. This material is the electrical and thermal link between the two sides of the Peltier module and determines the thermal conductivity of the device. It is bonded to both sides of a thermally insulated base so that its thermal influence is spread evenly across the entire junction.

The next component is the heatsink, which serves to dissipate the heat away from the module. This is especially important in high power Peltier coolers, as it is the only way for the heat generated by the module to escape and cool the environment. The heatsink also ensures efficient cooling of the module even at high temperatures.

The final component is the fan, which is usually connected to the heatsink. The fan helps to circulate air over the heatsink, allowing for a greater efficiency of cooling. The fan can also act as a noise reducer; as it dissipates heat away from the module, it limits the noise generated by the Peltier module itself.

Peltier modules can be found in a wide variety of applications. One of the more common areas of use is in cooling systems. Peltier modules can be used to provide cooling in places where traditional cooling methods (such as air conditioning) are not feasible. They can also be used in heating systems, wherein the reverse principle is utilized. The module causes a positive side to become hot and a negative side to become cold, allowing heat to be moved into a room or structure.

Peltier modules can also be used in a range of other applications, such as solar cell management and electric vehicle power systems. In the case of solar cell management, the Peltier modules help to manage the temperature of the cells, ensuring efficient energy generation. In electric vehicle power systems, Peltier modules are used to provide additional cooling for the battery, which is critical for its longevity and performance. Additionally, they can be used to provide cooling for precise electrical components during assembly and manufacturing.

In summary, the 387001826 Peltier module is a versatile device with a number of applications. By using it, heat can be managed effectively, allowing for efficient thermal management in various settings. Its simplicity and low cost make it an attractive option in many areas of application. By understanding the principle behind the module, its uses, and its components, it is clear that the 387001826 Peltier module is an important tool in the portfolio of any designer or engineer looking to adequately manage heat.

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

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