
Allicdata Part #: | 926-1162-ND |
Manufacturer Part#: |
430052-501 |
Price: | $ 18.46 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | PELTIER MOD PT6,12,F2,4040,TA,W6 |
More Detail: | Peltier Module 43.90mm x 39.90mm x 3.63mm 52.2W @ ... |
DataSheet: | ![]() |
Quantity: | 47 |
1 +: | $ 16.78320 |
10 +: | $ 15.36000 |
25 +: | $ 14.88590 |
Series: | PolarTEC™ |
Part Status: | Active |
Outline L x W x H: | 43.90mm x 39.90mm x 3.63mm |
Qmax @ Th: | 52.2W @ 25°C |
Delta Tmax @ Th: | 65°C @ 25°C |
Current - Max: | 6.0A |
Voltage - Max: | 14.5V |
Resistance: | 2.19 Ohms |
Operating Temperature: | 80°C |
Features: | Lead Wires, Non-Sealed |
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Thermoelectric, Peltier Modules, in particular the 430052-501, are electronic devices which are used to transfer heat from one side of the module to the other. This type of energy conversion is known as the Peltier effect, and it is possible because of the way that heat is transported through electrical conduction. To understand how the Peltier effect works, it is important to first understand the fundamental principle of thermoelectricity.
Heat is always transferred from one body to another by the three processes of conduction, convection, and radiation. As long as the temperature of two bodies is not the same, heat will be transferred from one body to the other. In the case of thermoelectricity, heat is transferred through electrical conduction. This means that when electricity is passed through a material, the electrons can absorb or release energy in the form of heat. This process can be used to move heat from one side of the material to the other, and it is this potential energy transfer that is utilized by the 430052-501.
The construction of the module consists of many layers of different materials. The innermost layer is an anode material which is made of copper. This material has the ability to absorb a high amount of electrical current, and it is also highly conductive. Surrounding the anode is a series of insulating layers, which serve to keep the heat in the anode material and prevent it from being released. Following this is a layer of special thermoelectric materials, which are electrically sensitive. When electric current is passed through this layer, the heat in the anode material is released, and the thermoelectric material absorbs it. This is how the heat transfer from one side of the module to the other is accomplished.
The 430052-501 is a very versatile device and can be used in a wide range of applications. One of the most popular uses of the module is for temperature control. The module is used to cool and heat areas where the temperature must be closely monitored, such as medical facilities, laboratories, and data centers. The module can also be used in reverse, to generate electricity from waste heat. Using the Peltier effect, the heat generated from an engine or a cooling process can be converted into electricity, which can then be used to power other devices.
Another popular use of the 430052-501 is for energy storage. By running it in reverse, heat energy can be stored in the module’s thermoelectric material. This stored energy can then be released on demand, making the module an ideal choice for applications where short bursts of power are needed. In addition, the module is also used for cooling purposes in devices such as electronic devices, LED displays, and spacecrafts.
Overall, the 430052-501 is a highly efficient and versatile module that can be used for a variety of energy-related applications. The module utilizes the Peltier effect to move heat from one side of the module to the other, which allows for efficient temperature control, energy storage, and cooling. As the technology behind the module continues to improve, it is becoming increasingly popular in both industrial applications and consumer products.
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