
Allicdata Part #: | 926-1304-ND |
Manufacturer Part#: |
430274-501 |
Price: | $ 52.33 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | PELTIER OT12,62,F3,1211,11,W2.25 |
More Detail: | Peltier Module 13.20mm x 12.20mm x 2.69mm 5.0W @ 2... |
DataSheet: | ![]() |
Quantity: | 7 |
1 +: | $ 47.56500 |
10 +: | $ 43.39060 |
25 +: | $ 41.99990 |
Series: | OptoTEC™ |
Part Status: | Active |
Outline L x W x H: | 13.20mm x 12.20mm x 2.69mm |
Qmax @ Th: | 5.0W @ 25°C |
Delta Tmax @ Th: | 67°C @ 25°C |
Current - Max: | 1.2A |
Voltage - Max: | 7.1V |
Resistance: | 5.39 Ohms |
Operating Temperature: | 80°C |
Features: | Lead Wires, Non-Sealed |
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Thermoelectric devices, commonly known as Peltier modules, are unique pieces of material that have the ability to convert heat into electrical energy or electricity into heat. This is done through a phenomenon known as the Peltier effect, which occurs when current is passed through two different types of material with different conductivity levels when the junction point between them is exposed to a temperature difference. This produces a voltage across the module, which then causes current to flow through the two materials and thereby transfer energy from one material to the other.
A 430274-501 module is a thermoelectric device that utilizes the Peltier effect to convert heat into electrical energy or electricity into heat. This module is designed to be used in applications that require the transfer of energy between two materials. For instance, it may be used in cooling systems for electronic devices or to provide heat to a device in colder climates. Additionally, the module can be used to transfer heat from a higher temperature object to a lower temperature object.
The 430274-501 module is composed of two parts, a Peltier element and a heat spreader. The Peltier element is made of two layers of semiconductor material that are connected at the junction point. One layer is composed of materials with n-type electrical conductivity, and the other layer is composed of materials with p-type electrical conductivity. When current is passed through the two layers of the Peltier element, a temperature difference is created between the two layers at the junction point, which causes a voltage to be produced across the module.
The heat spreader is made of an insulating material, such as aluminum, that serves to dissipate the generated heat away from the module. The heat spreader is typically attached to the module’s Peltier element via an adhesive, but it may also be soldered or thermally bonded to it. By dissipating the generated heat away from the module, this helps to ensure that the module does not overheat and become damaged.
Applications for the 430274-501 module range from cooling systems for electronic devices to providing heat to devices in colder climates. For instance, the module can be used in industrial and commercial applications in which the transfer of energy between two materials is desired. Additionally, the module can be used in automobiles, such as for the interior climate control system, which utilizes the Peltier effect to cool and heat passengers in the vehicle. When used in cooling systems, the module can serve to transfer heat away from the device being cooled, while when used in heating applications, the module can serve to transfer heat from a higher temperature environment to a lower temperature object.
The working principle behind the 430274-501 module is relatively simple. When current is passed through the two layers of the Peltier element, a temperature difference is created at the junction point between them. This produces a voltage across the module, which then causes current to flow through the two materials and thereby transfer energy from one material to the other. This transfer of energy is done in order to cool or heat a particular object or environment, depending on the application.
In conclusion, the 430274-501 module is a thermoelectric device that utilizes the Peltier effect to convert heat into electrical energy or electricity into heat. The module is composed of a Peltier element and a heat spreader, which work together to transfer energy between two materials. Additionally, the module can be used in a variety of applications, such as cooling systems for electronic devices or providing heat to devices in colder climates. Finally, the working principle behind the module is based on the Peltier effect, which occurs when current is passed through two different types of material with different conductivity levels when the junction point between them is exposed to a temperature difference.
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