The New Energy Heat Shrink Terminated Copper Busbar is a component used for electrical connections, capable of addressing the challenges posed by the high temperatures and large currents in the battery systems of new energy vehicles. It is manufactured by the Chinese manufacturer Li Jingda Hardware Company using cutting-edge technology. If you are looking for something, please contact us.
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Material |
T2(C1100) |
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Length |
50-850mm |
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Width |
0-150mm |
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Thickness |
0.03-30mm |
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Rated Voltage |
220-380V |
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Rated Current |
32-800A |
Using the heat shrink technology, the copper busbars are effectively insulated and sealed by the heat shrink tubing, thereby isolating the connection from the external environment and preventing moisture, dust and other external impurities from entering the connection point. This meets the demand of the New Energy system for New Energy Heat Shrink Terminated Copper Busbar.
Connect the copper wires between the battery modules, and it can also be used for electrical connections with the battery management system (BMS) and the electric drive system. Making the New Energy Heat Shrink Terminated Copper Busbar an indispensable part of modern electrical systems, it provides important guarantees for improving system efficiency, reducing energy loss, and ensuring the safe operation of equipment.
1) Using high-quality copper as the conductor, the thermal conductivity of the New Energy Heat Shrink Terminated Copper Busbar is extremely strong. It can quickly dissipate the heat generated by the current, ensuring the stability and reliability of the equipment during operation.
2) Copper has excellent corrosion resistance and can operate stably in various harsh environments.
3) The heat shrink tubing is made of materials that can withstand high temperatures and can extend the service life of the equipment while operating at high temperatures.
4) The use of heat shrink technology simplifies the installation process and eliminates the need for complex tools and manual work. Just heating and shrinking the tubing can achieve a seamless connection, fundamentally saving time and labor costs.