Ezitown Din rail type 3 phase 4 wire 125A 160A 250A 4ways 6ways 8ways 12ways 16ways 24ways copper main load busbar

Material: copper leaded

Mounting type: Din rail

Current: 125A 160A 250A

Voltage: AC 240V 380V 415V

drawing of 3 phase 4 wire main load copper busbar
3 phase 4 wires busbar ezitown
2 solutions of 3 phase 4 wires copper busbar
80% clients select the solution 2
3 phase 4 wires busbar
3 phase 4 wires busbar
3 phase 4 wire main load copper busbar

The inquiry should include: way number, main ampere, branch ampere, model of mccb and mcb, quantity, destination. pan assembly, direct feed, copper busbar.

we also have 3 phase 3 wires main busbar:

What is 3 phase 4 wire busbar. The main load busbar in switchgear serves as a crucial component in distributing electrical power within an electrical distribution system. Here are its primary functions:

  1. Power Distribution: The main load busbar distributes electrical power from incoming feeders (sources) to various outgoing circuits (loads). It acts as a central point where multiple circuits can connect to receive power.
  2. Current Carrying Capacity: The busbar is designed to carry large currents safely and efficiently without significant voltage drops. It ensures that power is evenly distributed to all connected circuits.
  3. Fault Management: In the event of a fault (e.g., a short circuit), the busbar must be capable of withstanding high fault currents until protective devices like circuit breakers can isolate the faulty section.
  4. Flexibility in Circuit Connections: The main load busbar allows for easy connection and disconnection of circuits, providing flexibility for maintenance, upgrades, and reconfiguration of the electrical distribution system.
  5. Safety and Reliability: By providing a solid and reliable path for electrical currents, the busbar ensures the safe and consistent operation of the electrical distribution system within the switchgear.

In summary, the main load busbar is essential for the safe and efficient distribution of electrical power within a switchgear system, supporting the overall reliability and flexibility of the electrical network.