63604-512 Allicdata Electronics
Allicdata Part #:

926-1249-ND

Manufacturer Part#:

63604-512

Price: $ 16.74
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: PELTIER CP10,31,08,L1,RT,W4.5
More Detail: Peltier Module 15.00mm x 15.00mm x 3.99mm 5.3W @ 2...
DataSheet: 63604-512 datasheet63604-512 Datasheet/PDF
Quantity: 14
1 +: $ 15.22080
10 +: $ 13.93120
25 +: $ 13.50120
Stock 14Can Ship Immediately
$ 16.74
Specifications
Series: CP
Part Status: Active
Outline L x W x H: 15.00mm x 15.00mm x 3.99mm
Qmax @ Th: 5.3W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 2.5A
Voltage - Max: 3.8V
Resistance: 1.29 Ohms
Operating Temperature: 80°C
Features: Lead Wires, Sealed - Silicone RTV
Description

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Thermoelectric, Peltier modules are responsible for generating and controlling the production of electrical energy and temperature transfers in a range of electro-thermal applications. The 63604-512 model is a versatile and highly efficient cooling element made from high grade materials that is suitable for a number of applications.

General Overview

The 63604-512 is a Peltier thermoelectric cooler module that is perfect for a variety of thermal management applications. It is powered by DC voltage and features low thermal resistance, high temperature tolerance, low inertia and high reliability. Its features make it perfect for a range of applications, such as cooling computers, computer chips and other electronics, active cooling systems, light sources and medical equipment. It also features built-in cooling capabilities, making it very efficient.

Application Field

There are a wide range of applications that this Peltier module can be used in, including automotive applications and temperature maintaining applications such as heating and cooling machines, medical equipment and other thermoelectric cooling elements.

For automotive applications, the 63604-512 can help to reduce vehicle fuel consumption while cooling the engine, thus eliminating additional power consumption. It can also be used to adjust and control the temperature of a car’s cabin. Additionally, the module can be used to cool or warm individual components, such as the alternator, heated seats, and air-conditioner, leading to improved efficiency and comfort.

For temperature regulation, the module can be used in a variety of industrial and commercial applications, such as water or air-conditioning systems, food processing, and electronics cooling. This Peltier module is specifically designed to help maintain the desired temperatures in these applications, increasing the efficiency of the system.

Working Principle

The Peltier module uses the Peltier effect to generate electricity, which is the thermoelectric effect that occurs when electrical charge flows through a junction between two different metals. This electrical flow generates a temperature differential between the two metals, allowing energy to be transferred from one metal to the other. This effect is the basis of the Peltier module\'s working principle.

When a voltage is applied to the module, this causes electric charges to flow between the two different metals and generates a temperature difference. This temperature difference is then used to regulate the temperature of the application that the module is connected to. The module consists of two components: a heater and a cooler, both of which can be regulated to adjust the amount of energy that is transferred from one metal to the other.

For example, when the heater is activated, it will produce a higher temperature than the cooler, transferring the heat and generating a cold zone. This cold zone can be used to regulate the temperature in a particular application, such as cooling a computer chip. Conversely, the cooler will produce a lower temperature than the heater, transferring the heat away from the application and creating a warm zone.

Conclusion

The 63604-512 is a versatile and highly efficient Peltier module that is suitable for a wide range of applications. It generates electricity using the Peltier effect and contains both a heater and a cooler, allowing it to regulate the temperature of the application that it is connected to. Its low thermal resistance, high temperature tolerance, low inertia, and high reliability make it an ideal choice for applications such as cooling computers, computer chips, medical equipment, active cooling systems, and light sources.

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

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