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Copper Braided Wire
Copper braided sleeves are protective coverings made from braided copper wires. They are commonly used in various applications for their electrical conductivity, durability, and shielding properties. Here are some key points about copper braided sleeves:
1. Electrical Conductivity: Copper is an excellent conductor of electricity, which makes copper braided sleeves ideal for applications where electrical conductivity is required. They provide a low-resistance path for electrical current and can be used to ground or shield cables, wires, and components.
2. Electromagnetic Interference (EMI) Shielding: Copper braided sleeves offer effective EMI shielding capabilities. They can help prevent electromagnetic interference from affecting sensitive electronic devices or components. The braided structure of the sleeve creates a mesh-like shield that blocks or redirects electromagnetic radiation.
3. Mechanical Protection: Copper braided sleeves provide mechanical protection to cables and wires. They offer resistance against abrasion, impact, and vibration, helping to extend the lifespan of the protected components. The braided design allows flexibility, allowing the sleeve to conform to various shapes and sizes.
4. Heat Dissipation: Copper has excellent thermal conductivity, which means that copper braided sleeves can help dissipate heat generated by cables or wires. This can be beneficial in applications where heat management is crucial, preventing overheating and potential damage.
5. Corrosion Resistance: Copper is inherently resistant to corrosion, ensuring long-term performance and reliability of the braided sleeves, even in harsh environments. This corrosion resistance makes copper braided sleeves suitable for both indoor and outdoor applications.
Copper braided sleeves are commonly used in electronics, telecommunications, automotive, aerospace, and power distribution industries, among others. They come in various sizes, configurations, and braiding densities to suit specific application requirements.