9320001-301 Allicdata Electronics
Allicdata Part #:

926-1225-ND

Manufacturer Part#:

9320001-301

Price: $ 58.84
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: PELTIR MS2,010,06,06,11,11,11,W2
More Detail: Peltier Module 3.90mm x 3.90mm x 4.19mm 0.3W @ 25°...
DataSheet: 9320001-301 datasheet9320001-301 Datasheet/PDF
Quantity: 10
1 +: $ 53.48700
10 +: $ 48.79600
25 +: $ 47.23210
Stock 10Can Ship Immediately
$ 58.84
Specifications
Series: Multistage
Part Status: Active
Outline L x W x H: 3.90mm x 3.90mm x 4.19mm
Qmax @ Th: 0.3W @ 25°C
Delta Tmax @ Th: 92°C @ 25°C
Current - Max: 1.1A
Voltage - Max: 0.9V
Operating Temperature: 80°C
Features: Lead Wires, Non-Sealed
Description

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Thermoelectric, Peltier modules have myriad applications and have been used in industry for many years. 9320001-301 is a versatile application field that combines the thermoelectric effects of the Peltier effect and the Joule heating effect. It is used in a variety of applications such as cooling electronics, thermoelectric generation, refrigeration and more.

The Peltier effect refers to the production of electricity when two different metals are connected together and exposed to a temperature difference. Heat is absorbed from the cold side and released to the hot side, causing the electrons to move from the cold side to the hot side. This produces a difference in electrical potential along the two metal atoms. This effects can be increased and amplified by using a higher number of thermocouples connected in series and/or parallel.

The Joule heating effect refers to the conversion of electric energy into heat energy. This occurs when electricity passes through a resistive material, such as a resistor. The resistor acts as a barrier, causing some of the energy to dissipate as heat. This effect can be amplified by increasing the resistance value.

9320001-301 combines the two concepts, using thermocouples to increase the amount of heat that is absorbed or released from a particular element, while using resistors to increase the amount of current flowing through the circuit to create increased Joule heating. The result of this combination is a versatile application field, capable of providing an efficient and precise thermal transfer to a variety of materials and elements.

The 9320001-301 application field is a popular choice for cooling electronics. By using the Peltier effect, the 9320001-301 is able to extract heat energy from a particular element and transfer it to another, thus cooling the first element. This process is further amplified by the Joule heating effect, as the device is capable of heating up thermal conducting materials with higher precision and efficiency.

The 9320001-301 application field is also used in thermoelectric generators. This is done by taking advantage of the Peltier effect to generate a voltage difference on the two ends of the circuit. This voltage difference is then amplified by the Joule heating effect, providing more energy to the system and increasing efficiency.

In addition, the 9320001-301 application field can be used for refrigeration. By combining the Peltier effect and Joule heating effect, the 9320001-301 can transfer heat from one point to another, allowing it to cool down a particular element with efficiency and precision. This process is also useful in applications that require the heating of medical tools or other equipment.

The 9320001-301 application field and working principle is a versatile application field with a wide range of uses. By combining the thermoelectric effects of the Peltier effect and the Joule heating effect, the 9320001-301 can provide efficient and precise thermal transfer to a variety of elements. This makes it a popular choice for cooling electronics, thermoelectric generation, refrigeration, and more, making it a valuable tool for many industries.

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

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