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It is usually made of high-performance insulating materials such as polyimide (PI) or polyester (PET), with excellent flexibility and high temperature resistance.
The conductive layer uses copper foil as the conductive material, and the required circuit pattern is formed through processes such as photolithography.
Flexible PCB can be single-sided, double-sided or multi-layer structure, and the layers are separated by insulating materials. The wiring can be designed into complex three-dimensional forms to meet different space requirements.
Use professional PCB design software for circuit design to define parameters such as lines and holes. Use photolithography technology to transfer the design pattern to the copper layer. Remove excess copper to form the required circuit direction, and then drill the PCB according to needs to facilitate the installation and connection of components.
Flexible PCB supports a variety of welding methods, such as surface mount technology (SMT) and plug-in technology (DIP), which can be easily assembled with various electronic components.
Flexible PCB can be bent and folded in a limited space, suitable for equipment with complex shapes or small spaces, with good temperature resistance and chemical resistance, suitable for working in harsh environmental conditions.

It is usually made of high-performance insulating materials such as polyimide (PI) or polyester (PET), with excellent flexibility and high temperature resistance.
The conductive layer uses copper foil as the conductive material, and the required circuit pattern is formed through processes such as photolithography.
Flexible PCB can be single-sided, double-sided or multi-layer structure, and the layers are separated by insulating materials. The wiring can be designed into complex three-dimensional forms to meet different space requirements.
Use professional PCB design software for circuit design to define parameters such as lines and holes. Use photolithography technology to transfer the design pattern to the copper layer. Remove excess copper to form the required circuit direction, and then drill the PCB according to needs to facilitate the installation and connection of components.
Flexible PCB supports a variety of welding methods, such as surface mount technology (SMT) and plug-in technology (DIP), which can be easily assembled with various electronic components.
Flexible PCB can be bent and folded in a limited space, suitable for equipment with complex shapes or small spaces, with good temperature resistance and chemical resistance, suitable for working in harsh environmental conditions.