General performance test of networks cables

General performance test of networks cables

The main characteristics of high-conductivity copper-clad aluminum mesh cables include high conductivity, lightness, corrosion resistance, and high mechanical strength. ‌

‌High conductivity‌: The copper-clad aluminum mesh cable uses copper as the conductive core, which ensures its high conductivity and can meet various application scenarios with high conductivity requirements‌

‌Lightweight‌: The outer layer of aluminum makes the copper-clad aluminum mesh cable much lighter than the pure copper mesh cable, which is very convenient in the transportation and installation of cables‌

‌Corrosion resistance‌: The corrosion resistance of aluminum enables the copper-clad aluminum mesh cable to maintain stable performance in harsh environments‌

‌High mechanical strength‌: The outer layer of aluminum provides good mechanical protection for the copper-clad aluminum mesh cable, making the material have high tensile strength and compressive strength‌

Application scenarios of copper-clad aluminum mesh cables
Copper-clad aluminum mesh cables are widely used in many fields:

‌Power field‌: Due to its high conductivity and mechanical strength, copper-clad aluminum mesh cables are widely used in power transmission and distribution systems‌

‌Communication field‌: In communication optical cables, copper-clad aluminum mesh cables can be used as reinforcing cores to improve the tensile strength of optical cables and ensure the stability and reliability of optical cables‌

‌Short-distance power supply‌: Since the conductivity of aluminum is worse than that of copper, the DC resistance of copper-clad aluminum conductors is greater than that of pure copper conductors, so it is not suitable for long-distance power supply, but suitable for short-distance POE power supply‌

 

After testing, the CCAG network cable we produce can achieve a bandwidth of 5Gbps at a speed of 98 meters, far exceeding the gigabit speed, and there is no problem with performance.