430495-504 Allicdata Electronics
Allicdata Part #:

1487-1143-ND

Manufacturer Part#:

430495-504

Price: $ 45.45
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: HOT19,35,F1N,0612,GG,W2.25
More Detail: Peltier Module 12.20mm x 6.00mm x 1.88mm 4.5W @ 25...
DataSheet: 430495-504 datasheet430495-504 Datasheet/PDF
Quantity: 1000
1 +: $ 41.31540
10 +: $ 37.69040
25 +: $ 36.48230
Stock 1000Can Ship Immediately
$ 45.45
Specifications
Series: OptoTEC™
Part Status: Active
Outline L x W x H: 12.20mm x 6.00mm x 1.88mm
Qmax @ Th: 4.5W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 1.9A
Voltage - Max: 4.0V
Resistance: 1.92 Ohms
Operating Temperature: 175°C
Features: Lead Wires, Non-Sealed
Description

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Thermodenamic energy conversion using a thermoelectric material is a fast-emerging field of research. Its application can be used to produce refrigeration or heating by using the Peltier effect, or to convert a temperature difference into electricity by using the Seebeck effect. The 430495-504 thermoelectric module (TEK-TEC) is a perfect example of a composite material used to make thermoelectric devices. It is a type of unit that provides cooling, heating, or the conversion of energy to electricity.

Throughout the thermoelectric materials history, manufacturers struggled to create efficient systems. TEK-TEC’s 430495-504 increases thermoelectric efficiency by employing a variety of thermoelectric materials in a way that maximizes their thermal conductivity. The thermoelectric module includes an N-type segment of Bismuth Telluride, which serves as a negative temperature coefficient material, and a P-type segment of Copper-Indium-Selenium (CIS) which serves as a positive temperature coefficient material.

As the unit’s negative temperature coefficient material, Bismuth Telluride has a unique ability to transfer electrons from a hot side to a cool side. This creates a temperature difference across the material, resulting in an unequal separation of charge on either side. This charge separation forms the basis of the Peltier effect, also referred to as the thermoelectric effect.

The 430495-504 also utilizes its positive temperature coefficient material – Copper-Indium-Selenium – to generate an electromotive thermal force. This can be used to produce small amounts of electrical current when a temperature difference is applied between two sides of the material. This is known as the Seebeck effect.

To make the thermoelectric module even more efficient, TEK-TEC has created an intercalated structure which contains layers of both materials, forming what is known as a thermoelectric leg. This process maximizes heat conduction between the two sections while still allowing charge carriers to move freely. Furthermore, the layers of material are closely arranged, creating a higher thermal conductivity over a wider range of temperatures.

The 430495-504 unit has many potential applications. It can be used to create temperature controlled environments, generate energy from waste heat sources, or even to cool down integrated circuits. It can also be used to cool liquids or fluids, and as a part of a larger power system. Outside of industrial applications, it can be used in devices such as laptop fans and other cooling systems.

In conclusion, the 430495-504 thermoelectric module benefits from TEK-TEC’s innovative intercalated structure, which helps maximize efficiency and allows for a number of versatile applications. Through its utilization of Bismuth Telluride and Copper-Indium-Selenium, it can provide cooling, heating, or the conversion of energy to electricity. This makes it an excellent choice for industrial applications, and a variety of applications outside of industry as well.

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

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