概要: Step into our short showcase to explore the solution’s standout capabilities. In this video, you will see a detailed demonstration of High Conductivity Flexible Laminated Shunts, also known as flexible shunts or jumpers. Watch as we explain how these crucial components provide robust and reliable electrical connections between points with relative movement, compensating for misalignment, thermal expansion, and vibrations in applications like refrigeration compressors.
関連製品特性:
Designed to provide robust and reliable electrical connections between points with relative movement.
Made by stacking and bonding multiple thin layers of highly conductive materials like electrolytic copper or aluminum.
部品の間には 膨大な電流を 安全に運びます 何千ものアンペアです
Acts as a dynamic bridge to compensate for misalignment, thermal expansion, contraction, and mechanical vibrations.
Flexible design dampens vibrations and absorbs mechanical shocks to protect connected equipment.
Offers high fatigue strength for long-lasting performance in demanding industrial environments.
Customizable dimensions and sizes to meet specific application requirements.
Ideal for industries such as welding, electricity, and power generation.
FAQ:
What are High Conductivity Flexible Laminated Shunts used for?
They are crucial components designed to provide robust and reliable electrical connections between points with relative movement, commonly used in applications like refrigeration compressors, welding equipment, and power systems to conduct high currents and compensate for misalignment and vibrations.
How do these flexible shunts handle movement and stress?
The flexible laminated shunts act as a dynamic bridge to compensate for misalignment, thermal expansion, contraction, and mechanical vibrations. Their flexible design dampens vibrations and absorbs mechanical shocks, protecting the equipment from stress-related damage.
Can the dimensions of the flexible laminated shunts be customized?
Yes, the dimensions and sizes of the flexible laminated shunts are fully customizable to meet the specific requirements of your application, ensuring a perfect fit and optimal performance in your equipment.