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Braided Copper Busbar
Product Series
Product Series
Braided Copper Busbar

Braided Copper Busbars are versatile, high-performance conductors designed for electrical systems requiring flexibility and durability. GRL Braided Copper Busbars are manufactured from high-purity T2 copper strands, offering superior electrical conductivity and low resistance. Their flexible construction absorbs vibrations and compensates for thermal expansion, reducing mechanical stress and ensuring a stable connection over time. These busbars are available in a wide range of cross-sectional areas, lengths, and plating options, such as tin or silver, to provide enhanced corrosion resistance in demanding environments. Unlike rigid busbars, their braided design allows for easy integration into tight spaces or installations requiring frequent adjustments. Compared to conventional solutions, Braided Copper Busbars improve durability and operational efficiency while offering excellent thermal performance, ensuring reliable operation in high-demand systems.

Copper Busbar Features

GRL semiconductor fuse links are made from high-conductivity copper, providing excellent current-carrying capacity. featuring a cutting capacity of up to 100kA for short circuit conditions, the fuse links can handle rated currents from 5A to 1250A and are compatible with voltages up to 1250V AC, ensuring maximum protection even in high-voltage environments.

Highly Conductive

Made of pure copper for stable, low-loss transmission.

Custom Solutions

Tailored to meet your specific dimensions and needs.

Secure Connection

Precisely manufactured to prevent connection issues.

Long-Lasting

Oxidation-resistant for reliable, long-term use.

Manufacturing Excellence: GRL, Connecting the Future, One Detail at a Time

At GRL, we know that every connector is critical to the stable operation of a power system. We are committed to building trustworthy copper connector products through our exceptional craftsmanship and strict quality control, providing a solid foundation for your projects.

 

High-Purity Raw Materials & Precision Machining:

We only use high-purity oxygen-free copper as our raw material. This ensures our products have excellent conductivity and low resistance from the start. With our advanced CNC machining equipment, the dimensional tolerance of every connector is controlled to the micrometer level. This guarantees a perfect fit with the conductor, effectively preventing overheating risks caused by poor contact.

 

Professional Customization and Flexible Response:

GRL has a powerful and responsive customization capability. In addition to our standard products, we can quickly produce a wide range of custom copper connectors, including those with complex and irregular shapes, based on your specific drawings and needs. From design to finished product, we provide a one-stop solution to meet your unique project requirements.

 

Strict Surface Treatment and Quality Control:

To further enhance our products’ corrosion resistance and conductivity, we offer various professional surface treatments like tin and nickel plating. All finished products must undergo rigorous conductivity, tensile strength, and salt spray corrosion tests. This ensures every GRL copper connector remains stable and reliable over long-term use.

GRL Safe Electricity Use Fast Connection
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Braided Copper Busbars provide exceptional flexibility, superior conductivity, and excellent resistance to vibration and thermal expansion. This makes them ideal for applications requiring reliable and durable connections in challenging environments.

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Unlike solid busbars, braided versions offer enhanced flexibility, allowing them to absorb mechanical vibrations and accommodate compact or irregular installation spaces. They are particularly suited for dynamic or high-vibration environments.

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Yes, they can be customized in terms of length, cross-sectional area, and plating options such as tin or silver to meet specific application requirements and environmental conditions.

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These busbars are widely used in power distribution systems, switchgear, transformers, battery systems, and renewable energy applications due to their flexibility, durability, and efficiency.

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