3D heat dissipation braided copper tape is usually made of high-purity copper or oxygen-free copper. This type of copper has a high thermal conductivity and can quickly transfer heat from the heat source to the entire copper tape.
The unique 3D woven structure of the 3D heat dissipation braided copper tape greatly increases the heat dissipation area and can quickly dissipate heat into the surrounding air. Compared with traditional heat dissipation materials and methods, the heat dissipation efficiency is greatly improved. The copper tape woven from multiple strands of fine copper wires is highly flexible and can be bent and twisted at will. It can easily adapt to various complex shapes and installation environments, and is convenient for layout and installation in different devices. Under the action of mechanical stress such as repeated bending and stretching, the 3D heat dissipation braided copper tape is not prone to fatigue fracture, can work stably for a long time, and is suitable for equipment with high vibration frequency.
The material used for the 3D heat dissipation braided copper tape is a good conductor. The 3D heat dissipation braided copper tape retains the high conductivity of copper. It can effectively dissipate heat while conducting current. It can be used in occasions that need to meet both electrical and heat dissipation requirements. Under the action of mechanical stress such as repeated bending and stretching, the 3D heat dissipation braided copper tape is not prone to fatigue fracture, can work stably for a long time, and is suitable for equipment with high vibration frequency.
3D heat dissipation braided copper tape is commonly used in electronic equipment: such as computer CPU, GPU radiators, and heat dissipation modules of mobile devices such as mobile phones and tablets, which can quickly conduct the heat generated by the chip to ensure stable equipment performance.
3D heat dissipation braided copper tape is extremely important in the heat dissipation system of new energy vehicle battery packs, as well as in motors, electronic control systems, etc. It effectively controls the temperature of batteries and key components, and improves the safety and range of new energy vehicles.
In power and electrical equipment: It can be used as a soft connection component in power equipment such as transformers, distribution cabinets, and switch cabinets, which can not only realize the conductive function, but also solve the heat dissipation problem during the operation of the equipment.
In 5G base stations, communication servers and other equipment, it is used for heat dissipation and signal shielding to ensure that communication equipment can also perform stably under high load operation.