Hager 1P+N 30MA 10A ADC910H RCCB: Advanced Protection for Electrical Systems
Technical Characteristics of the Hager ADC910H Switch
The Hager differential circuit breaker is a reliable and safe solution for the protection of electrical systems. Equipped with an effective system that combines the circuit breaker function with the differential function, this switch ensures protection from both overloads and electrical dispersions, contributing to the maintenance of electrical safety in domestic and professional environments.
Technical Details and Compatibility
- Modules: 2 modules, perfect for optimal integration into any switchboard currently available on the market thanks to the universal DIN connection.
- Configuration: 1 Pole + Neutral (1P+N) and 10 amp capacity for optimal control and distribution of the electrical load.
- Breaking capacity: High, up to 6kA, to guarantee safety and resistance in the event of short circuits.
- Nominal Operating Voltage: Suitable for alternating current systems with an operating voltage of 240 Vac, for extremely versatile use.
- Rated Differential Current: 30mA for complete protection against leakage currents.
- AC type: Ideal for detecting and reacting to alternating current leakages.
- Trip Curve: Class C, which guarantees rapid disconnection in the event of overloads, preventing damage to connected electrical devices.
Why Choose the Hager ADC910H Switch?
The Hager ADC910H residual current circuit breaker represents the ideal choice for those looking for an advanced and reliable protection device. Thanks to its compact modules, universal compatibility with switchboards and its high breaking capacity, this switch is recommended for electrical installations requiring maximum safety and efficiency. Its specific C curve makes it appropriate for a wide range of applications, from lighting systems to small electromechanical motors.
Furthermore, the quality and reliability of a brand like Hager guarantee that each switch is designed to offer long-lasting performance, contributing to the safety of the entire electrical system.