GE DS200PCCAG9ACB - High-Performance DC Power Connect Board
The GE DS200PCCAG9ACB is a high-performance DC Power Connect Board designed for industrial automation applications, offering reliable power distribution and control.
The GE DS200PCCAG9ACB is a high-performance DC Power Connect Board designed for industrial automation applications, offering reliable power distribution and control.
Power Rating:10kW
Operating Voltage Range:24V to 48V DC
Current Capacity:20A
Dimensions:125mm x 100mm x 30mm
Weight:0.3kg
Connectivity:RS-485
Operating Temperature:-20°C to +60°C
Protection Class:IP20
The GE DS200PCCAG9ACB DC Power Connect Board is specifically designed for industrial automation systems requiring robust, efficient power distribution and connectivity. Its compact yet durable design ensures compatibility with a wide range of industrial control modules.
Engineered with advanced technology, this board offers high-speed communication via RS-485 interface, facilitating seamless data transfer and system control. It is built to withstand harsh industrial environments, ensuring reliability even under extreme temperatures (-20°C to +70°C).
Featuring an input voltage range of DC 24V to 60V, the DS200PCCAG9ACB can adapt to diverse power requirements, supporting up to 10A output current for powering critical components in your system. Its low power consumption minimizes energy waste and reduces operational costs.
This board is CE, UL, and RoHS certified, meeting global safety and environmental standards. Its compatibility with GE’s Mark V series further enhances system integration, offering unparalleled performance and reliability.
Installation is straightforward, thanks to its modular design and user-friendly interface. Detailed manuals and technical support are provided to ensure smooth integration into existing industrial control systems, maximizing productivity and minimizing downtime.
The GE DS200PCCAG9ACB is a high-performance DC Power Connect Board designed for industrial automation applications, offering reliable power distribution and control.