The Schneider A9C70114 is a sophisticated remote control auxiliary component, designed to seamlessly integrate with the Acti 9 range of modular electrical equipment. This device is specifically tailored for use with iC60 3P-4P circuit breakers, enhancing their functionality by enabling remote control operations.
Crafted for convenience and efficiency, the A9C70114 allows for both impulse and maintained control signals at 230 V AC, 50/60 Hz, ensuring adaptability to various control schemes. The unit boasts a minimal input current requirement of 5 mA, making it an energy-efficient choice for modern electrical systems.
The auxiliary's signalling circuit can handle volt-free contacts ranging from 24 to 230 V, with a current capacity of 0.01 to 1 A AC, providing a versatile solution for a multitude of signalling applications. The device's quick response time of less than 500 ms and an impulse duration of greater than 200 ms for the control circuit, ensure prompt and reliable operation.
Mounting is made simple with a DIN rail support, and the unit's compact dimensions of 93 mm in height, 63 mm in width, and 75.5 mm in depth, allow for easy installation in space-constrained environments. The A9C70114 is also designed with a local signalling feature, which includes a flashing green LED to indicate readiness for operation and an orange LED to signal non-operational status.
With an electrical durability of 10,000 cycles and a mechanical lifespan to match, this remote control auxiliary is built to last. It also supports padlocking for added security, ensuring that settings remain unchanged in environments where access control is necessary.
The Schneider A9C70114 is a Green Premium product, reflecting a commitment to environmental sustainability. It complies with the latest environmental standards, including REACh and EU RoHS, confirming that it is free from hazardous substances and is designed with end-of-life disposal in mind.
This remote control auxiliary is an ideal choice for those seeking to enhance the functionality and control of their electrical circuit breakers with a reliable, energy-efficient, and environmentally conscious component.