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Eaton ZP-A63/3 Modular Switch Disconnector 63A 3-Pole
Eaton ZP-A63/3 Modular Switch Disconnector 63A 3-Pole
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Eaton ZP-A63/3 Modular Switch Disconnector 63A 3-Pole
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Eaton ZP-A63/3 Modular Switch Disconnector 63A 3-Pole
Eaton ZP-A63/3 Modular Switch Disconnector 63A 3-Pole
The Eaton ZP-A63/3 is a professional-grade 3-pole modular switch disconnector engineered for the secure isolation of electrical circuits. Designed to handle a rated current of 63A, this device serves as a dependable component for both industrial and residential electrical distribution boards. Its construction focuses on safety and durability, allowing for manual control of power supply to specific circuits during maintenance or emergency situations.
This switch disconnector stands out due to its robust mechanical design which ensures long-term reliability in demanding environments. The modular architecture allows for seamless integration into standard electrical distribution systems, significantly simplifying the installation process on DIN-rails. By providing a clear physical disconnection of the circuit, it enhances operational safety for technicians and users alike, while its compact footprint helps optimize space within electrical enclosures.
This device is intended for manual switching and is not designed to provide automatic overload or short-circuit protection. It should not be used as a substitute for a circuit breaker or a residual current device in applications where automatic fault detection is required.
The device is designed for installation on a standard DIN-rail within an electrical distribution board. Once mounted, the input and output cables should be connected to the respective terminals, ensuring all connections are tightened to the manufacturer's specified torque. The switch is operated manually via the front-facing toggle, which provides a clear visual indication of the circuit status.
Always ensure the device is switched to the off position before performing any maintenance on the downstream circuit. Regularly inspect the terminals for tightness to prevent overheating and ensure optimal electrical contact.
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