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GE-FANUC DS200IQXSG1A Mark V Board

Date:2024-08-27Hits:
  • GE-FANUC DS200IQXSG1A Mark V Board




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Brief Function Introduction:


        The GE-FANUC DS200IQXSG1A Mark V Board is a high-performance digital control board designed for use in advanced industrial automation systems, specifically tailored for applications requiring precise control and monitoring in manufacturing environments.


Product Specifications:


Processor Type: Advanced Digital Signal Processor
Memory Capacity: 256 MB RAM, 128 MB Flash
Operating Temperature: -20°C to +70°C
Input Voltage: DC 24V
Output Current: Up to 2A per channel
Communication Interfaces: Ethernet, RS-485, Modbus-RTU
Load Capacity: 8 channels for I/O operations
Dimensions: 125mm x 84mm x 53mm
Power Consumption: ≤25W



Product Details:


    The GE-FANUC DS200IQXSG1A Mark V Board is engineered to deliver exceptional performance in challenging industrial settings. Its advanced digital signal processing capabilities ensure accurate and responsive control in real-time operations.

    Equipped with 256 MB of RAM and 128 MB of Flash memory, this board offers ample space for storing complex control algorithms and large data sets, enhancing its adaptability to various manufacturing processes.

    Operable within a wide temperature range from -20°C to +70°C, the board is built for reliability in harsh environments commonly found in industrial plants. It supports a robust DC 24V input voltage, ensuring consistent power supply under varying conditions.

    With up to 2A output current per channel, it can handle demanding loads efficiently, making it suitable for applications requiring high-power control signals. The inclusion of multiple communication interfaces, including Ethernet, RS-485, and Modbus-RTU, facilitates seamless integration with existing network infrastructures.

    The compact design, measuring 125mm x 84mm x 53mm, makes it an ideal choice for space-constrained installations. Additionally, its low power consumption of ≤25W ensures energy efficiency, reducing operational costs without compromising on performance.


Notice:


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