GE FANUC IS200EPDMG1B Power Distribution Module
The IS200EPDMG1B Exciter Power Distribution Module, a product of GE-FANUC, is designed for precise control and distribution of power in industrial settings, ensuring reliable operation in various manufacturing environments.
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Name:BeiLin
Content details
Power Supply Availability Indicator:Green LED for easy visibility of power supply status
Dimensions:8×18.6×26.1 cm
Weight:1.14 kg
Compatibility:Geared for integration with GE’s Mark VI series drives and components
The GE Fanuc IS200EPDMG1B is a high-performance Power Distribution Module tailored specifically for exciter systems, offering unparalleled reliability and efficiency in managing electrical power. It features an intuitive LED indicator system that provides immediate feedback on the power supply status, allowing for quick diagnosis and troubleshooting. With a robust design capable of handling up to 200 Amps, this module ensures stable and consistent power distribution under various operational conditions.
Engineered for durability, the IS200EPDMG1B operates efficiently within an extensive temperature range from -20°C to +60°C, making it suitable for diverse industrial environments. Its compatibility with a wide range of input voltages, including 120-240V AC, ensures seamless integration with existing systems.
Incorporating advanced LED technology, the module includes a green LED indicator that visually confirms the availability of the power supply, simplifying maintenance and operation. This feature reduces downtime and enhances overall system performance.
Measuring 18.6cm x 26.1cm x 8cm and weighing 1.14kg, the IS200EPDMG1B is designed for ease of installation and integration within existing exciter systems. Its compact size does not compromise functionality, providing a space-efficient solution for power management.
Built with precision and engineered for longevity, the IS200EPDMG1B is compatible with GE Fanuc’s renowned Mark VI Exciter Systems. This compatibility ensures optimal performance, enhanced reliability, and seamless integration, making it an indispensable component for maintaining the integrity and efficiency of exciter-driven systems.