
Allicdata Part #: | 101071021303-ND |
Manufacturer Part#: |
101071021303 |
Price: | $ 25.05 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | THERMOELECT |
More Detail: | Peltier Module 18.00mm L x 18.00mm W x 3.40mm H 10... |
DataSheet: | ![]() |
Quantity: | 1000 |
100 +: | $ 22.76500 |
Series: | CP |
Part Status: | Active |
Outline L x W x H: | 18.00mm L x 18.00mm W x 3.40mm H |
Qmax @ Th: | 10.1W @ 25°C |
Delta Tmax @ Th: | 67°C @ 25°C |
Current - Max: | 2.1A |
Voltage - Max: | 8.6V |
Operating Temperature: | -- |
Features: | Lead Wires |
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Thermoelectric and Peltier modules are increasingly being used in modern technological applications. There are a variety of benefits from using these components, including their ability to convert thermal energy into electrical energy, as well as their ability to cool or heat a device or application. In this article, we discuss the application field and working principle of 101071021303 Peltier Modules.
Application Field:
101071021303 Peltier modules have a wide range of applications. They are used mainly for cooling and heating effects, as well as for providing power conversion functions. Some of the most common applications include:
- Semiconductor cooling (such as in computers, microprocessors, and other electronics equipment).
- Medical devices such as incubator, laser systems and diagnostic systems.
- Analytical instruments and optical instruments.
- Piezo, nano, and microsensors.
- Micro-motors and other actuators.
- Aerospace applications.
101071021303 Peltier modules are also used in many other applications, such as automotive, industrial, home automation, and energy storage. The number of potential applications is vast, and the modules can be used for many different purposes.
Working Principle:
The 101071021303 Peltier module consists of two sides—an N type and P type material. When electrical current is applied to the module, the N type side will become warmer while the P side cools. This is the Seebeck effect, which converts electrical energy into thermal energy. This effect is reversed when the electrical current is reversed, and the P side will become warmer while the N side cools.
The working principle of a Peltier module is very simple. The two sides are connected to each other via thermoelements. When electric current passes through the thermoelements, heat is transferred between each side, resulting in a cooling or heating effect. The magnitude of the cooling or heating effect is determined by the amount of current that passes through the thermoelements.
In order to use a 101071021303 Peltier module effectively, it is important to ensure that heat is being properly dissipated or dissipated at the right rate. Heat needs to be dissipated quickly and efficiently in order to ensure that the Peltier module can provide optimum performance. Heat sinks, cooling fans, and other cooling systems may be used to help dissipate the heat.
Conclusion:
101071021303 Peltier modules have numerous applications in modern technology, from cooling and heating to power conversion. Their working principle is based on the Seebeck effect, where electrical energy is converted into thermal energy. This energy can then be used to create cooling or heating effects, and it is important to ensure that this energy is efficiently dissipated in order to obtain maximum performance from the module.
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