GE DS200PCCAG7ACB High-Performance DC Power Connect Board for Industrial Control Systems
Power Management Capabilities:Advanced Interface Compatibility:GE DC2000 series drives Approximate Dimensions (WxLxH):8.2 cm x 12.2 cm x 6 cm Weight:0.36 kg Functional Revision:Revision 1 A Artwork Revision:B Engineered for reliability and efficiency, the GE DS200PCCAG7ACB is a critical component in industrial automation systems, specifically tailored for GE DC2000 series drives.
Its compact design, measuring W11 x L8.5 inches, makes it ideal for space-constrained environments without compromising on performance. The board features a normal coating, providing robust protection against environmental factors, ensuring longevity and maintenance-free operation in harsh industrial settings.
With multiple functional revisions (1A and 2C), this board offers flexibility and compatibility with various system configurations, ensuring optimal performance across different applications.
Accompanied by the GEI-100161 instruction manual, users can easily integrate and troubleshoot the DS200PCCAG7ACB, simplifying the setup process and enhancing operational readiness.
The GE DS200PCCAG7ACB is a high-performance DC Power Connect Board designed to enhance the efficiency and reliability of industrial control systems. It seamlessly integrates with the GE DC2000 series drives, offering superior power management capabilities.
High compatibility: Designed for GE Mark V control system, it can be perfectly adapted with other components of the series system, which ensures a high degree of consistency with the electrical characteristics and communication protocols of the entire control system, and realises a seamless integration and reduces system failures and instability caused by compatibility problems.
Stability and reliability: In an industrial environment, the stability of the power supply is crucial.
This board is responsible for distributing DC power to all parts of the control system, ensuring a stable and reliable supply of power to ensure that key components of the system can operate normally under all operating conditions, reducing system downtime due to power fluctuations or failures, and improving production efficiency.




