430278-507 Allicdata Electronics
Allicdata Part #:

926-1206-ND

Manufacturer Part#:

430278-507

Price: $ 29.85
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: PELTIER OT20,32,F0,0808,11,W2.25
More Detail: Peltier Module 10.16mm x 8.13mm x 2.18mm 4.4W @ 25...
DataSheet: 430278-507 datasheet430278-507 Datasheet/PDF
Quantity: 42
1 +: $ 27.13410
10 +: $ 24.79240
25 +: $ 24.01260
Stock 42Can Ship Immediately
$ 29.85
Specifications
Series: OptoTEC™
Part Status: Active
Outline L x W x H: 10.16mm x 8.13mm x 2.18mm
Qmax @ Th: 4.4W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 2.0A
Voltage - Max: 3.7V
Resistance: 1.67 Ohms
Operating Temperature: 80°C
Features: Lead Wires, Non-Sealed
Description

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Thermoelectricity is a type of electrical current that is generated by a temperature gradient. The temperature gradient causes a voltage to be generated in order to move electric charges from one end of a thermoelectric device to the other. Thermoelectric effects are found in nature, and they are also used in a variety of applications, from being used in thermometers and thermocouples, to being used to generate electricity. The 430278-507 is a Peltier Module, which is a type of thermoelectric device that uses the thermoelectric effect of the Seebeck effect to produce electric current and heat.The 430278-507 Peltier Module is a thermoelectric device that is capable of producing electric current and heat from a temperature gradient. This module is designed to work with a temperature range of -20°C to 70°C. It consists of a ceramic substrate, two metal plates, two legs, two pins, and two legs with holes. The two plates are connected together at the ends by the pins, creating a closed electric circuit. The ceramic substrate is used to separate the two plates, and it also serves as a heat sink. The two legs are used to mount the module onto a mounting device.When a temperature gradient is applied to the module, it will generate an electrical current. When current flows through the module, it will cause a voltage to be generated across its two terminals. This voltage can be used to power an electronic device, such as a LED, or to provide heating and cooling for another device. The amount of heat generated or absorbed by the module is determined by the magnitude of the voltage generated by it.Since the 430278-507 Peltier Module is not sensitive to temperature changes, it can be used in a variety of applications. It can be used in thermal management systems, such as those used in computers. It can also be used to regulate the temperature of electronic components, such as LEDs, or to provide heating or cooling for food or drink vessels. The module can also be used to preheat or cool a surface, such as a plate or a vial, prior to use. The module can also be used for temperature control in laboratory or other industrial processes.The Seebeck effect, which is the thermoelectric effect of the 430278-507 Peltier Module, is an effect of thermodynamics. It states that when two different metal plates are connected together at two different temperatures, a voltage is generated across the two terminals. This voltage can then be used to power an electronic device or to transfer heat. This effect is the basis for the operation of the 430278-507 Peltier Module, as it uses the Seebeck effect to generate electric current and heat.The 430278-507 Peltier Module is a useful tool for a variety of applications. Its ability to generate electric current and heat from a temperature gradient makes it an ideal tool for temperature regulation and thermal management. It can also be used to provide preheating or cooling of surfaces prior to use, or to provide temperature control for laboratory or industrial processes. The Seebeck effect, which is the thermoelectric effect of the 430278-507 Peltier Module, is an effect of thermodynamics that allows the module to generate electric current and heat from a temperature gradient.

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

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