Flexible Busbar
Our Flexible Busbar ensures superior conductivity, durability, and space efficiency. Made from 99.9% pure ETP copper, it’s ideal for compact, high-performance applications. Customizable for your needs.
Product details
Frequently Asked Questions (FAQs)
Flexible busbars are made from thin, laminated copper layers, allowing them to bend and adjust to complex installations, unlike rigid busbars.
The heat shrink tubing adds an insulating layer, protecting the busbar from moisture, vibration, and electrical faults, ensuring long-term durability.
Despite their thin profile, they are designed to handle high power loads efficiently while minimizing electrical resistance.
Absolutely! They are widely used in EV battery modules, inverters, and charging systems, ensuring reliable, space-saving power distribution.
We offer custom configurations, including length, thickness, and insulation type, tailored to your specific electrical system requirements.
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About the Product
Our Cu (Copper) Flexible Busbar is designed to offer superior electrical conductivity, durability, and flexibility for modern power distribution systems. Made from 99.9% pure ETP Copper, it ensures minimal power loss and excellent thermal performance. The heat shrink tube insulation provides enhanced protection against moisture, vibration, and environmental factors, making it ideal for high-demand electrical applications.
With an ultra-thin 0.1mm copper thickness, these busbars are lightweight and highly adaptable, making them perfect for applications requiring compact and flexible electrical connections. They are manufactured using fusion welding technology, ensuring seamless bonding of copper layers for superior strength and reliability.
Our Flexible Busbars are extensively used in automotive, aerospace, renewable energy, and power electronics industries, providing an efficient solution for power distribution in compact, high-performance electrical setups.
Our Approach & Solution
We employ advanced engineering, high-quality materials, and precision manufacturing techniques to ensure optimal performance and reliability. Our busbars are crafted using state-of-the-art fusion welding technology, creating a seamless bond between copper layers for superior durability and enhanced conductivity.
Made from 99.9% pure ETP copper, they offer exceptional electrical conductivity, minimizing power losses and ensuring stable energy transmission. An additional heat-shrink insulation layer provides excellent protection against environmental hazards such as moisture, dust, and mechanical wear, significantly enhancing the lifespan of the busbars.
With an ultra-thin design of just 0.1mm, these busbars are lightweight, compact, and easy to integrate into space-constrained electronic and electrical assemblies. We offer complete size, insulation type, and thickness customization to meet diverse industry requirements, ensuring optimal adaptability for various applications.
- Advanced Fusion Welding Technology
- Ultra-Thin Copper Layers for Flexibility
- High-Purity ETP Copper Composition
- Fusion Welding for Seamless Connectivity
- High-Purity Copper for Maximum Efficiency
- Advanced Heat Shrink Insulation for Protection
- Lightweight & Compact Design
- Customizable to Meet Diverse Needs
Essential for lightweight, space-efficient power connections in modern EV battery packs, inverters, and onboard electrical systems.
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Used in switchgear panels, inverters, and industrial power systems, ensuring efficient power transmission in high-density electronic circuits.
Supports high-efficiency connections in circuit boards, inverters, and advanced electronic systems.
Frequently Asked Questions (FAQs)
Flexible busbars are made from thin, laminated copper layers, allowing them to bend and adjust to complex installations, unlike rigid busbars.
- The heat shrink tubing adds an insulating layer, protecting the busbar from moisture, vibration, and electrical faults, ensuring long-term durability.
Despite their thin profile, they are designed to handle high power loads efficiently while minimizing electrical resistance.
Absolutely! They are widely used in EV battery modules, inverters, and charging systems, ensuring reliable, space-saving power distribution.
We offer custom configurations, including length, thickness, and insulation type, tailored to your specific electrical system requirements.