9360001-304 Allicdata Electronics
Allicdata Part #:

926-1428-ND

Manufacturer Part#:

9360001-304

Price: $ 196.97
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: PELTIER MS3,070,20,25,00,W8
More Detail: Peltier Module 44.00mm x 44.00mm x 13.11mm 15.3W @...
DataSheet: 9360001-304 datasheet9360001-304 Datasheet/PDF
Quantity: 35
1 +: $ 179.06500
10 +: $ 164.05600
25 +: $ 158.69400
Stock 35Can Ship Immediately
$ 196.97
Specifications
Series: Multistage
Part Status: Active
Outline L x W x H: 44.00mm x 44.00mm x 13.11mm
Qmax @ Th: 15.3W @ 25°C
Delta Tmax @ Th: 100°C @ 25°C
Current - Max: 8.0A
Voltage - Max: 8.3V
Operating Temperature: 80°C
Features: Lead Wires, Non-Sealed
Description

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Thermal - Thermoelectric, Peltier Modules

Thermoelectric, Peltier modules are a type of device used to transfer heat between two sources. They are used in a wide range of applications including cooling, heating, and temperature control.

The 9360001-304 Peltier module is a thermoelectric device with a high thermal interface. It operates using two independent circuits, one for the heating element and the other for the cooling. By combining these two elements, the module is able to transfer heat between two sources. The advantage of using such a module is that it is able to deliver precise temperature control, while avoiding the need for complex machinery.

The 9360001-304 contains two conductive elements, the heating element and the cooling element. The heating element consists of a thin film of metal, typically nickel-chrome, which is heated by the current flowing through it. This generates a positive heat, which is then transferred to the cooling element. The cooling element consists of a semiconductor, which is cooled by the passing electric current. The temperature difference between the heating and cooling elements is important for the functioning of the module.

The 9360001-304 Peltier module can be used in a variety of applications. It can be used in refrigeration systems, to keep food and drinks cool. It can be used as a source of heating for industrial applications, such as furnaces, ovens, and hotplates. It can also be used for medical applications, such as controlling the temperature of incubators and incubated cells.

The 9360001-304 also has potential applications in the field of energy, where it can be used to convert solar energy into usable electricity. This would require a high light intensity and efficient heat transfer. The module could also be used in space technology, as it is capable of maintaining a constant temperature in a vacuum. The 9360001-304 is also suitable for controlling the temperature of electronic components, such as microchips, to increase efficiency and reduce energy consumption.

The working principle behind the 9360001-304 module is relatively simple, and can be easily understood with a basic understanding of thermoelectricity. In order for it to work, two independent circuits must be present. The first is the heating circuit, which is comprised of the metal element mentioned above. The second is the cooling circuit, which is composed of the semiconductor material.

When both of these circuits are connected to a power source, the electrical current flowing through them creates a difference in temperature between the two elements (the positive from the heating element and the negative from the cooling element). This difference in temperature allows for heat to be transferred between the two circuits. This heat transfer is then utilized to generate energy or to control temperature.

In conclusion, the 9360001-304 Peltier module is a thermoelectric device with a high thermal interface. It can be used in many applications, such as cooling, heating, and temperature control. Its working principle is relatively simple and allows for efficient energy conversion and temperature control. As a result, this module is an ideal choice for many different applications.

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

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