Allicdata Part #: | 4CP055065-127-71-31-17L-ND |
Manufacturer Part#: |
4CP055065-127-71-31-17L |
Price: | $ 0.00 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | THERMOELECTRIC |
More Detail: | Peltier Module |
DataSheet: | 4CP055065-127-71-31-17L Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Series: | -- |
Part Status: | Obsolete |
Outline L x W x H: | -- |
Qmax @ Th: | -- |
Delta Tmax @ Th: | -- |
Operating Temperature: | -- |
Features: | -- |
Description
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Introduction
Thermoelectric Peltier Modules are an exciting and increasingly popular form of energy transfer that make use of the Seebeck effect. This energy transfer system utilizes the ability of a thermoelectric material to produce an electric potential difference when subjected to a temperature gradient. This potential difference induces an electromotive force, sufficient to create an electric current. This electric current can be harnessed to regulate the temperature of materials or bodies by creating a region of localized heat or a cool area. One of the more popular and widely used such Peltier Modules is the 4CP055065-127-71-31-17L. This module is specifically designed to efficiently transfer heat, and can be seen in a number of applications in the electronics industry.Overview of the 4CP055065-127-71-31-17L
The 4CP055065-127-71-31-17L is a thermoelectric Peltier module from the 4-Series of modules manufactured by the Peltier Thermal Technologies (PTT) Company. This particular module is rated to transfer up to 65 watts of thermal energy, and it has a maximum power dissipation rating of 127 watts. The 4CP055065-127-71-31-17L is designed for use within a wide range of environmental conditions, from 5℃ to 50℃, and it can output both positive and negative thermal energy. This module is also notable for its capacity to operate in high humidity environments, such as those encountered in industrial facilities.4CP055065-127-71-31-17L Application Field and Working Principle
The 4CP055065-127-71-31-17L Peltier Module is most suitable for applications that require a high rate of thermal energy transfer, with minimal resistance. It is typically employed in the production of electronic devices and components, such as computer processors, mobile phone circuit boards, and electronic displays. Additionally, the heat transfer capability of the module makes it suitable for any application that requires efficient cooling, such as laboratory equipment, medical instrumentation, and industrial machinery. At the heart of the 4CP055065-127-71-31-17L module lies the Seebeck effect, which is a phenomenon that causes the creation of electric potential differences between materials when exposed to a temperature gradient. In the case of the Peltier Module, when two materials are connected across two terminals – a positive and negative terminal – the Seebeck effect causes the temperature difference to metabolize into an electric current. The amplitude of the created electric current depends on the temperature difference between the two materials. A larger gradient will produce a larger current, which in turn will allow for increased transfer of thermal energy.The thermoelectric material that is installed into the module is made up of a lattice pattern of two alternating types of semiconductor materials, known as P and N-type semiconductors. The material produces an electric current when a potential difference is applied across it, and this current generates further heat on the junction of the two materials. This in turn creates a further temperature gradient, enabling the material to promote the transfer of thermal energy. The module is able to maintain a constant temperature by creating a feedback feedback loop where the opposite effect is used to counteract any further temperature differences.Conclusion
In conclusion, the 4CP055065-127-71-31-17L Peltier Module is an effective and efficient device for transferring thermal energy. This module is usually used in the production of electronic components and devices, as well as applications where cooling or active temperature regulation is required. To produce the desired transfer of thermal energy, the 4CP055065-127-71-31-17L makes use of the Seebeck effect, whereby two materials of different temperatures create an electromotive force. This force is then used to circulate thermal energy around the module in order to maintain a steady temperature.The specific data is subject to PDF, and the above content is for reference
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