Legrand 51521261 MS double sided busbar
Technical Specification
- Make: Legrand
- Model code: 51521261
- Current Rating: 160 A
- Voltage: 0 ~ 400 V
- Standards: BS EN 61439-6
End feed units IP 55 | IP 55 protection as standard. Supplied with cable clamp and terminals for 35 mm (MS 63/100) and 70 mm (MS 160) cables Switched-end feed units are also available with in-line bus switches on request
Read moreMake | Legrand |
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Manufacturer | Legrand |
Category | Wires, Cables, Conduits and Overcurrent Protection>Busway |
Model code | 51521261 |
Current Rating | 160 A |
Voltage | 0 ~ 400 V |
Standards | BS EN 61439-6 |
Protection | IP40 |
Product description
The MS Double-Sided Busbar Trunking Components offer robust solutions for managing electrical distribution within industrial settings. Constructed with Senzimir quality galvanized steel, these components ensure durability and reliability, conforming to the BS EN 61439-6 standards. These units provide an IP 40 protection level, which can be enhanced to IP 55 using supplementary accessories, making them suitable for a wide range of environments.
Key Features
- Available in various configurations, including horizontal and vertical elbows to facilitate flexible routing.
- Rated at 63 A, 100 A, and 160 A to support diverse electrical needs.
- Integrated crossovers and tees (both male and female) to accommodate complex routing scenarios.
- IP 55 end and center feed units come with a cable clamp and terminals suitable for 35 mm and 70 mm cables.
- Flexible elbow options allow for directional changes up to 90° in both horizontal and vertical planes (not available for 160 A).
Ideal Use Cases
The MS Double-Sided Busbar Trunking Components are ideal for commercial and industrial setups requiring efficient and secure electrical distribution. They are particularly useful in environments where routing flexibility and high protection standards are crucial. Their adaptability makes them perfect for automotive plants, large manufacturing facilities, and data centers, ensuring reliable power distribution across complex setups.