Allicdata Part #: | 102-4050-ND |
Manufacturer Part#: |
CP603395H |
Price: | $ 15.70 |
Product Category: | Fans, Thermal Management |
Manufacturer: | CUI Inc. |
Short Description: | PELTIER, 30 X 30 X 3.95 MM, 6 A, |
More Detail: | Peltier Module 30.00mm x 30.00mm x 3.95mm 31.1W @ ... |
DataSheet: | CP603395H Datasheet/PDF |
Quantity: | 66 |
1 +: | $ 14.13090 |
5 +: | $ 13.26150 |
10 +: | $ 12.94590 |
25 +: | $ 12.47250 |
50 +: | $ 12.15660 |
100 +: | $ 11.84090 |
Series: | CP60H |
Part Status: | Active |
Outline L x W x H: | 30.00mm x 30.00mm x 3.95mm |
Qmax @ Th: | 31.1W @ 27°C |
Delta Tmax @ Th: | 70°C @ 27°C |
Current - Max: | 6.0A |
Voltage - Max: | 8.8V |
Resistance: | 1.25 Ohms |
Operating Temperature: | 80°C |
Features: | Lead Wires, Sealed - Silicone RTV |
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Thermoelectric cooling, also known as Peltier cooling, is a method used to cool researchers and electronics consistently and efficiently. In this method, a Peltier module, such as the CP603395H, is employed to provide cooling. This article provides an introduction to the application field and working principle of the CP603395H in thermal-thermoelectric Peltier module cooling.
Application field of CP603395H
Peltier modules, especially the CP603395H, are designed for a wide variety of applications. Such modules are used to cool laser diodes, produce water cooled thermoelectric systems, provide high precision temperature control and build medical cryocoolers. Additionally, CP603395H modules are used in a variety of other industries, ranging from consumer electronics to aerospace engineering.
The CP603395H’s main application is in laser diode cooling. This is because it is designed with a high thermal conductivity rating and offers precise temperature control, making it an ideal choice for applications that require precise cooling. The module is able to maintain a temperature between 0°C and 65°C with an accuracy of 0.1°C. Furthermore, the module’s temperature can be controlled remotely using a DC power supply.
The CP603395H is also widely used in medical devices, such as cryogenic coolers. These coolers are used to provide cooling for medical experiments, such as cryosurgeries, photographs or laser treatments. Additionally, the CP603395H is used to provide cooling in research laboratories.
Working principle of CP603395H
The CP603395H module works on the principle of Seebeck effect. This effect states that when two different materials are joined together at two points, an electrical potential difference will be generated between the two points. This electric potential difference is known as the Seebeck voltage.
Essentially, the CP603395H leverages this effect to produce cooling. The module consists of two metallic plates. One plate consists of a semiconductor material, such as bismuth telluride, which is shaped into a wafer with dimensions of 0.62 inches by 0.62 inches. The other metallic plate consists of a copper material. The two plates are joined together and a voltage is applied across the module. When a voltage is applied, electrons begin to flow between the two plates. This flow of electrons causes the temperature of the semiconductor plate to drop and the temperature of the copper plate to rise.
The temperature difference between the two plates is controlled by varying the voltage and the current that is passed through the module. This allows for precise temperature control. The CP603395H module is also designed with a high thermal conductivity rating, which helps to ensure efficient cooling.
The CP603395H Peltier module is designed for a variety of applications, including laser diode cooling, cryogenic cooling, and precise temperature control systems. The module utilizes the Seebeck effect to produce cooling by allowing electrons to flow across the two plates. This flow of electrons causes a temperature difference between the two plates, which can be controlled by varying the voltage and current that is passed through the module. The module is also designed with a high thermal conductivity rating, which helps ensure efficient cooling.
The specific data is subject to PDF, and the above content is for reference
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