387001814 Allicdata Electronics
Allicdata Part #:

1487-1035-ND

Manufacturer Part#:

387001814

Price: $ 37.11
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: THERMOELECT
More Detail: Peltier Module
DataSheet: 387001814 datasheet387001814 Datasheet/PDF
Quantity: 20
1 +: $ 33.73650
10 +: $ 31.75200
25 +: $ 29.76750
50 +: $ 27.78300
100 +: $ 26.79070
Stock 20Can Ship Immediately
$ 37.11
Specifications
Series: ET
Part Status: Active
Outline L x W x H: --
Qmax @ Th: --
Delta Tmax @ Th: --
Operating Temperature: --
Features: --
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Introduction

Thermoelectric, or Peltier modules are widely used in a range of industries due to their ability to generate electricity and transfer heat. The 387001814 module, specifically, is a robust module that is designed to operate reliably over a full range of temperatures, and is used to maintain accurate thermal control and energy-efficient operation. In this article, the field of application and operating principles of the 387001814 module will be explored in detail.

Applications

The 387001814 module offers a variety of applications for usage, owing to its combination of high temperature operation capabilities and robust construction. Without a doubt, one of the primary use of the module is for active cooling; particularly in industrial and commercial industries. Due to the nature of the module, it can be used to provide thermoelectric cooling in an enclosed area, which helps to accurately control the localized temperature of an environment. Another common application of the module are for waste heat recovery. This is where the 387001814 module can aid in recovering otherwise lost heat from industrial processes, which can then be utilized for a different purpose. This helps to generate energy more efficiently and reduces the amount of waste heat released into the atmosphere. The 387001814 module can also provide humidity control operations and precision temperature control when combined with other systems. This makes it ideal for applications such as semiconductor manufacturing, precision heating and cooling, and industrial process control. Lastly, it is also used in research laboratories, where its high temperature operation capabilities can be used to accurately measure and control various parameters such as pressure, temperature, and even light emissions.

Operating Principles

The 387001814 module is composed of two pieces; a Peltier module and a thermoelectric cooler. The Peltier module is an electronic device that contains thermoelectric materials, which helps to facilitate the transfer of thermal energy from one side to another side, and vice versa. It does this by utilizing the Seebeck effect, which occurs when two different types of material are connected together and heated from one side; it causes the electrons in the materials to flow from one side to the other. This creates a potential difference across the materials, it is the drive force that causes current to flow, and as a result, energy is transferred from one side of the module to the other. When the 387001814 module is powered by current, the Seebeck effect is used to convert the electric energy into thermal energy. This causes a temperature difference between the two sides of the module, and the heated side produces heat, while the cooler side produces cold. This temperature difference is then used to effect heat transfer from one side to the other side, which allows the module to cool down or maintain accurate temperature control in the environment it is present.

Conclusion

To summarise, the 387001814 module is a powerful and robust module that offers several applications in terms of cooling, temperature control, energy recovery, and humidity control. It works by utilizing the Seebeck effect to convert electrical energy into thermal energy, which produces a temperature difference between the two sides of the module. This temperature difference is then used to transfer heat from one side to the other side, helping to effectively cool or maintain accurate temperature control in any given environment.

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

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