Allicdata Part #: | 926-1020-ND |
Manufacturer Part#: |
56310-503 |
Price: | $ 15.97 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Laird Technologies - Engineered Thermal Solutions |
Short Description: | PELTIER MOD CP10,127,06,L1,W4.5 |
More Detail: | Peltier Module 29.72mm x 29.72mm x 3.61mm 25.7W @ ... |
DataSheet: | 56310-503 Datasheet/PDF |
Quantity: | 121 |
1 +: | $ 14.52150 |
10 +: | $ 13.29870 |
25 +: | $ 12.80890 |
Series: | CP |
Part Status: | Active |
Outline L x W x H: | 29.72mm x 29.72mm x 3.61mm |
Qmax @ Th: | 25.7W @ 25°C |
Delta Tmax @ Th: | 68°C @ 25°C |
Current - Max: | 3.0A |
Voltage - Max: | 14.5V |
Resistance: | 4.35 Ohms |
Operating Temperature: | 80°C |
Features: | Lead Wires, Non-Sealed |
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Thermoelectric, Peltier Modules are devices that convert heat into electricity, and vice versa. The 56310-503 is a type of thermoelectric module that generates electrical power using the thermoelectrica Seebeck effect. This thermoelectric module is pn junction-based, and its performance is heavily dependent on the materials used and their relative dimensions.
The 56310-503 module’s core technology is based on what can be referred to as the Seebeck effect. The Seebeck effect occurs when two dissimilar materials are placed in contact with each other and have a temperature difference between them, electrons move from one material to another creating an electrical potential difference. This difference is the basis for the thermoelectric effect, and therefore the 56310-503 module.
The 56310-503 module is composed of two or more small, thermally conductive ceramics (called PN substrates) that contain an array of filled, thermoelectric pellets. A number of electrical connections are also included in the design of the 56310-503 module for better efficiency. The pellets are filled using a mixture of two or more materials: p-type (electron heavy) and n-type (hole heavy). These pellets are then arranged in rows and columns to create what is known as a thermoelectric field. Depending on the application, the arrangement of the pellets can be changed to form a “high”, “low”, or “neutral” thermoelectric field.
When heat is applied to the 56310-503 module, it results in an alteration of the potential differences between materials, creating a voltage difference between the two ends of the module. This voltage difference is then used to power an electrical circuit or device. The opposite is also true. If a current is applied to the module, it will result in the same alteration of potentials, but in the opposite direction. In this case, heat will be generated at the two ends of the module, allowing it to be used as a heat sink.
The 56310-503 module can also be used in “reverse-direction” applications, meaning that the module can be used to both heat up or cool down a particular section of a system. This is achieved by placing the two ends of the module against a material to be heated or cooled, such as a semiconductor chip or a computer system component. This allows for efficient and precise temperature control of the material.
The 56310-503 thermal module is a highly efficient and precise way to generate heat and electrical power using the Seebeck effect. Its ability to be used in both heating and cooling applications makes it a versatile solution for numerous industrial and commercial operations. Its technology is also relatively simple, making it a cost-effective solution for applications where thermal management is required.
The specific data is subject to PDF, and the above content is for reference
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