Tinned flexible busbar ERIFLEX FLEXIBAR Advanced 2 m 10x100x1 534058
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Tinned flexible busbar ERIFLEX FLEXIBAR Advanced 2 m 10x100x1 534058
Flexible copper busbar for switchboards and power supply installations
The ERIFLEX FLEXIBAR Advanced flexible busbar is an innovative solution for transmitting electrical energy, characterized by exceptional flexibility and ease of installation. Made of thin layers of tinned copper, it provides a reliable connection and high conductivity. The product is intended for both professional installers and end customers looking for modern solutions in the field of energy distribution.
Construction and properties
The busbar consists of ten lamellas with a thickness of 1 mm, which ensures its high flexibility and allows it to be adapted to complex installation layouts. Tinning the copper increases corrosion resistance and ensures long-term reliability. The laminated construction combined with a highly resistant insulating material (halogen-free, flame-retardant and low-smoke) guarantees safe use even in demanding conditions. This busbar is ideal for applications where traditional copper wires are inconvenient or impractical.
Applications and benefits
The ERIFLEX FLEXIBAR Advanced busbar finds wide application in:
- Electrical switchboards: Enables optimal use of space and easy routing of cables.
- Machines and equipment: Provides a flexible power connection in moving parts.
- Industrial installations: Resistant to harsh environmental conditions and high current loads.
- Commercial and residential construction: A modern solution for the main distribution board or local power points.
Thanks to its flexibility, the busbar allows for easy routing in tight spaces and minimizes the risk of mechanical damage during installation. A rated current of 1600 A makes it suitable for applications requiring a large conductive cross-section. A width of 100 mm and a thickness of 10 mm ensure mechanical stability and optimal electrical parameters. The use of halogen-free materials increases fire safety, which is particularly important in public buildings.
