Allicdata Part #: | 926-1240-ND |
Manufacturer Part#: |
430446-503 |
Price: | $ 27.50 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | PELTIER CP08,127,05,L1,RT,W4.5 |
More Detail: | Peltier Module 24.60mm x 24.60mm x 3.10mm 22.6W @ ... |
DataSheet: | 430446-503 Datasheet/PDF |
Quantity: | 174 |
1 +: | $ 24.99210 |
10 +: | $ 22.83880 |
25 +: | $ 22.12060 |
Series: | CP |
Part Status: | Active |
Outline L x W x H: | 24.60mm x 24.60mm x 3.10mm |
Qmax @ Th: | 22.6W @ 25°C |
Delta Tmax @ Th: | 67°C @ 25°C |
Current - Max: | 2.6A |
Voltage - Max: | 14.4V |
Resistance: | 5.10 Ohms |
Operating Temperature: | 80°C |
Features: | Lead Wires, Sealed - Silicone RTV |
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Thermoelectric, peltier modules have long been utilized in numerous applications, from cooling electronics within a special-purpose enclosure to providing cold storage for scientific instruments and precision equipment. The thermal characteristics of thermoelectric modules, including their thermal conductivity, temperature coefficient of resistance, and thermal diffusivity, make them an ideal solution for applications requiring reliable temperature control. The 430446-503 thermoelectric, peltier module is an extremely high-performance device capable of providing reliable heating or cooling performance for a wide variety of applications.
The 430446-503 thermoelectric, peltier module features a thermoelectric effect which involves the transfer of heat between two conductors in proportion to a difference in temperature. This allows heat to be transferred from one side of the device to the other with minimal thermal resistance. The thermal resistance of the device is also extremely low, due to its high conductive aluminum body and thermal interface material. This allows the device to transfer heat efficiently and quickly.
The 430446-503 thermoelectric, peltier module has two main parts: a semiconductor device and an aluminum body. The semiconductor device is made from a combination of n-type and p-type semiconductors which are connected together in a "thermoelectric couple". When voltage is applied to the thermoelectric couple, heat is transferred between the two metallic components in proportion to their temperature difference. This results in a temperature difference between the two metallic components, which is known as the "thermoelectric effect".
The aluminum body of the 430446-503 thermoelectric, peltier module acts as a thermal conductor, allowing heat to be quickly and evenly distributed throughout the device. The body also provides a layer of insulation between the thermoelectric couple and the surrounding environment, which helps to reduce the rate of thermal energy loss from the device.
The 430446-503 thermoelectric, peltier module can be used in a variety of applications, including cooling, heating, and temperature control. It is ideal for applications requiring reliable temperature control and minimal thermal resistance. The device is also capable of providing a high level of energy efficiency, with minimal power consumption.
Due to its efficient design and high thermal conductivity, the 430446-503 thermoelectric, peltier module can provide reliable performance in a wide variety of thermal applications. Thermoelectric, peltier modules are widely used in the medical, automotive, and electronic industries, due to their ability to provide reliable temperature control. They are also becoming increasingly popular in renewable energy applications, since they can help to reduce energy consumption by providing reliable cooling or heating performance.
In conclusion, the 430446-503 thermoelectric, peltier module is an efficient and reliable device which can provide reliable temperature control and energy efficiency in a variety of applications. Its high thermal conductivity and low thermal resistance make it an ideal solution for applications requiring reliable temperature control and minimal power consumption. The device is also capable of providing reliable cooling or heating performance in a wide variety of applications, making it an ideal choice for even the most demanding thermal applications.
The specific data is subject to PDF, and the above content is for reference
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