Schneider LA9G972 | Mechanical interlock, for TeSys Giga contactor LC1G630-800 and LC1G265-500, IP20
The Schneider LA9G972 is a mechanical interlock specifically designed for TeSys Giga contactors LC1G630-800 and LC1G265-500. This interlock ensures that two contactors cannot operate simultaneously, preventing system malfunctions and enhancing electrical safety. With an IP20 protection rating, it provides safety against accidental direct contact, making it suitable for industrial and commercial applications that require secure power switching.
2. Technical Specifications:
- Model: Schneider LA9G972
- Device Type: Mechanical Interlock
- Compatible Contactors: TeSys Giga LC1G630-800 & LC1G265-500
- Protection Rating: IP20 (Prevents accidental direct contact with internal components)
- Interlock Function: Prevents the simultaneous operation of two contactors
- Mounting: Designed for easy integration with TeSys Giga contactors
- Application: Used in electrical control systems that require alternating switching between two circuits
3. Key Features:
- Prevents Simultaneous Activation: Ensures only one contactor operates at a time, preventing short circuits and system failures.
- High Durability: Made from high-quality materials for long-term performance and reliability.
- IP20 Protection: Provides enhanced safety by reducing the risk of accidental electrical contact.
- Easy Installation: Seamlessly integrates with TeSys Giga LC1G630-800 & LC1G265-500 contactors, ensuring quick and hassle-free installation.
- Improves Electrical Safety: Reduces the risk of electrical faults and system malfunctions caused by unintended simultaneous switching.
4. Applications:
- Industrial Automation: Used in factories to control machinery and automated systems, ensuring safe power switching.
- Power Distribution Systems: Ideal for electrical setups that require safe switching between two power sources.
- Commercial Power Systems: Suitable for buildings and facilities requiring secure and precise power distribution control.
- Backup Power Systems: Ensures safe switching between primary and backup power sources, preventing accidental dual engagement.


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