High thermal conductivity copper wire is a type of wire with excellent thermal conductivity properties, usually used for heat transfer in high temperature environments.
High Thermal Conductivity Copper Wire has excellent thermal conductivity and is able to conduct heat efficiently. Copper has excellent thermal conductivity, which makes high thermal conductivity copper wire perform well in thermal transfer applications.
Class 180 and Class 200 are common temperature ratings for high thermal conductivity copper wire. These grades represent the maximum operating temperature that the wire can withstand. 180 grade is typically used for coils and heat transfer in high temperature environments, while 200 grade is used for applications with higher temperature requirements.
High thermal conductivity copper wire typically has excellent electrical conductivity, approaching that of pure copper. This allows it to provide reliable current transfer capability and reduce energy loss during current transfer.
High thermal conductivity copper wire typically has good oxidation resistance and is able to resist oxidation and corrosion in high temperature environments. This enables it to maintain good thermal and electrical conductivity under long-term high temperature operation.
The wire diameter and gauge of high thermal conductivity copper wire can be customized according to specific application requirements. Different wire diameters and specifications can meet the requirements of thermal conductivity transmission and coil design in different application scenarios.
Grade 180 and 200 high thermal conductivity copper wire is widely used in a variety of high temperature thermal transfer and coil applications, such as motors, transformers, furnaces and heat exchangers. It provides excellent thermal conductivity, good electrical conductivity and oxidation resistance for application scenarios requiring high temperature thermal conductivity and reliability. When selecting Class 180 and Class 200 high thermal conductivity copper wires, appropriate selection should be made based on the operating temperature, thermal conductivity requirements and matching of wire gauge for the specific application and in accordance with the appropriate standards and specifications.
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