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Eaton 189889 3-Pole Motor Protection Circuit Breaker, 4kW, 6.3-10A
Eaton 189889 3-Pole Motor Protection Circuit Breaker, 4kW, 6.3-10A
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Eaton 189889 3-Pole Motor Protection Circuit Breaker, 4kW, 6.3-10A
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Eaton 189889 3-Pole Motor Protection Circuit Breaker, 4kW, 6.3-10A
Eaton 189889 3-Pole Motor Protection Circuit Breaker, 4kW, 6.3-10A
The Eaton 189889 is a high-performance 3-pole motor protection circuit breaker engineered to provide reliable control and comprehensive protection for electric motors. Designed for demanding industrial and commercial environments, this device serves as a critical component in electrical systems, ensuring that motors operate within safe parameters while preventing damage from electrical faults.
This motor protection circuit breaker offers exceptional reliability by combining overload and short-circuit protection in a single, compact unit. Its adjustable thermal release range allows for precise calibration to the specific requirements of the connected motor, ensuring optimal protection against overheating. The robust construction ensures long-term durability and consistent performance even in challenging operational conditions, contributing to increased system uptime and reduced maintenance requirements.
This device is specifically calibrated for motor protection and may not be suitable for applications requiring protection for non-motorized loads or circuits with significantly different current characteristics. It is not intended for use in high-voltage distribution networks beyond its specified operational limits.
The device should be installed by a qualified professional within an appropriate electrical enclosure. Once mounted on a standard DIN rail, the motor leads are connected to the terminals. The thermal release range should be adjusted using the integrated dial to match the rated current of the motor being protected. After installation, the breaker can be manually switched on or off to control the motor, and it will automatically trip in the event of an overload or short circuit.
Regularly inspect the terminals for tightness and ensure the device is free from dust or debris to maintain optimal thermal performance. Periodically test the trip mechanism to ensure continued operational safety.
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