Allicdata Part #: | RH2-10-10L-ND |
Manufacturer Part#: |
RH2-10-10L |
Price: | $ 0.00 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | THERMOELECT |
More Detail: | Peltier Module |
DataSheet: | RH2-10-10L Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Part Status: | Obsolete |
Outline L x W x H: | -- |
Qmax @ Th: | -- |
Delta Tmax @ Th: | -- |
Operating Temperature: | -- |
Features: | -- |
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Thermoelectric modules are heating or cooling devices that regulate the temperature in a variety of applications, such as food storage, medical instruments, and HVAC systems. One such type of thermoelectric module is the RH2-10-10L which is suitable for a variety of thermal applications.
RH2-10-10L Application Field and Working Principle
The RH2-10-10L is a thermoelectric module that is designed for cooling applications. It is a hermetically packaged two-stage thermoelectric module utilizing Peltier technology. The RH2-10-10L has a heat sink that provides efficient thermal performance and allows for continuous operation even in high ambient temperatures.
This thermoelectric module is capable of dissipating heat up to 10.0 Watts and has a maximum ambient temperature rating of 70°C. It can be used in a wide range of applications as long as there is a thorough understanding of the thermoelectric module’s operating principles.
Thermoelectric Module Working Principle
Thermoelectric modules work on the principle of the Peltier effect. The Peltier effect occurs when a current with a voltage is applied across two dissimilar materials. When the current passes through the two materials, heat is generated or removed from one side of the material depending on the direction of current flow. This effect causes the temperature of one side to increase while the temperature of the other side decreases.
The heat generated or dissipated by a thermoelectric module is dependent on the magnitude of the current and voltage applied to it. The amount of heat generated or dissipated is also affected by the ambient temperature and thermal conductivity of the surrounding environment.
Ideal Applications for the RH2-10-10L Peltier Module
The RH2-10-10L is an ideal choice for applications where a small and compact cooling solution is required. Examples of such applications include precision temperature control of medical instruments and cooling components in industrial systems.
Due to its ability to operate in high temperatures and dissipate heat efficiently, the RH2-10-10L is also suitable for use in outdoor applications such as HVAC units and car engine compartments. It is also a suitable choice for controlling the internal temperature of food storage devices such as refrigerators and freezers.
Advantages of the RH2-10-10L Peltier Module
The RH2-10-10L Peltier module has a number of advantages that make it an attractive choice for temperature control applications. It is a robust and reliable Peltier module thanks to its hermetically sealed package, which also helps to reduce electromagnetic interference. Additionally, it requires minimal maintenance due to its rugged construction and reliable operation in high ambient temperatures.
The RH2-10-10L also has a high efficiency rating and is capable of producing a cooling capacity of up to 10.0 Watts. Finally, its smaller size and weight compared to other cooling solutions make it easier to install in many applications.
Conclusion
The RH2-10-10L is a thermoelectric module that is ideal for cooling applications. It utilizes the Peltier effect to produce a cooling capacity of up to 10.0 Watts and has a maximum ambient temperature rating of 70°C. The RH2-10-10L is suitable for use in a variety of applications such as precision temperature control, HVAC units, outdoor applications, and food storage devices. It has a number of advantages such as a hermetically sealed package, minimal maintenance, high efficiency rating, and small size/weight.
The specific data is subject to PDF, and the above content is for reference
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