Leave Your Message
ARM5 series mechanical interlock
MCCB accessories

ARM5 series mechanical interlock

Mechanical interlocking is a method of forcibly constraining the operating status of multiple circuit breakers through mechanical structures, ensuring that only designated circuit breakers are closed at any time. Its core function is to prevent power supply parallel short circuits, ensure personal and equipment safety, lock the operating position to meet operational and compliance requirements, and is not dependent on electrical systems, ensuring reliability even in the event of power loss.

    1、Core function

    1. Anti-parallel short circuit of dual power supply: In systems with dual power supply or two incoming lines and one busbar, forcing two/three MCCBs to "one in one out" prevents phase-to-phase short circuit, circulating current, and equipment damage caused by two power supplies being mistakenly parallel is the essential safety guarantee for dual power supply switching.

    2.Operation forced interlock: By using mechanisms such as levers, connecting rods, or steel cables, a hard constraint of "opening first and then closing" is achieved. When the closing side is locked, the other side cannot be operated without relying on electrical signals, and the control system remains effective even when it fails.

    3.Locking the safe position: Supports opening/closing locking. During maintenance, lock the opening to prevent accidental closing, or lock the closing to avoid unauthorized opening. Combined with a padlock, it can meet the safety regulations of "locking and hanging".

    4.State visualization and consistency: The position of the operating handle is forcibly matched with the state of the main contact, reducing the risk of electric shock or misoperation caused by misjudgment of the state.

    5.Improve system reliability: independent of electrical circuits, resistant to electromagnetic interference, stable operation even in the event of power loss, suitable for scenarios such as hospitals, data centers, and rail transit that require high power continuity.

    Typical application scenarios

    Scene

    Mechanical interlocking implementation methods

    Core Objectives

    Dual power supply (ATS)

    The two MCCBs are interlocked, with only one circuit closed.

    Protect against parallel short circuits in power supplies and ensure safe switching.

    Two incoming lines and one bus tie

    Three locks and two keys / hard interlock, any two units can be combined.

    Busbars are operated in sections to prevent short circuits between sections.

    Extractable MCCB

    Handcart and circuit breaker operation interlock

    Isolate the power supply during maintenance to prevent hot-plugging.

    Load side maintenance

    Circuit breaker locking + padlock

    Prevent accidental closing and ensure personnel safety.

    Compared with electrical interlocking

    characteristic

    Mechanical interlock

    Electrical interlocking

    reliability

    Extremely high performance, purely mechanical, still effective even in the event of power failure or malfunction.

    It relies on a secondary circuit and may fail in the event of a fault.

    Response method

    Forced mechanical constraints, no intermediate state

    There may be a switching delay due to the reliance on control signals.

    Applicable Scenarios

    Dual power supply, bus tie, lockable and tag-mounted

    Automatic switching, remote control, and complex logic linkage

    Compliance

    Power supply departments give priority to approval, and compliance with mandatory standards is required.

    It often needs to be used in conjunction with mechanical interlocks.

    MCCB Production Line Real Showing

    Leave Your Message