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  • GE FANUC VME7700RC PC BOARD Advanced Industrial Control Module
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  • GE FANUC VME7700RC PC BOARD Advanced Industrial Control Module

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    The GE FANUC VME7700RC PC BOARD is an advanced control module designed for seamless integration into complex industrial automation systems, offering unparalleled reliability and performance.
    • ¥6540.00
      ¥16506.00
      ¥6540.00
      ¥6540.00
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    Weight:1.000KG
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    • (Inventory: 6)
Description
The GE FANUC VME7700RC PC BOARD is an advanced control module designed for seamless integration into complex industrial automation systems, offering unparalleled reliability and performance.

GE FANUC VME7700RC PC BOARD Advanced Industrial Control Module

Processor Speed:200 MHz Memory Capacity:128 MB RAM / 128 MB Flash Bus Interface:PCI Express x16 Operating Temperature Range:-20"C to +70"C Power Consumption:35 W (Max) Dimensions (WxDxH):120 mm x 90 mm x 30 mm Weight:0.5 kg The GE FANUC VME7700RC PC BOARD is engineered for demanding industrial environments, featuring a robust design that ensures stable operation under extreme conditions. 

Its 64-bit VMEbus architecture delivers unparalleled processing power, enabling smooth execution of complex control algorithms and data-intensive tasks. Equipped with 512MB DDR3 memory, this board supports efficient data handling and storage, facilitating real-time response to operational demands without compromising performance. 

The inclusion of GE Intelligent Platform  Windows Embedded operating system ensures compatibility with a wide range of software applications, enhancing flexibility and productivity. The board  PCI Express x4 interface provides high-speed data transfer capabilities, crucial for integrating with other high-performance peripherals and devices. 

This feature is particularly advantageous in applications requiring rapid communication and data exchange, such as robotics, automation systems, and advanced manufacturing processes. With a power consumption of just 15W, the VME7700RC strikes a balance between performance and energy efficiency, reducing overall system costs and environmental impact. Its operating temperature range from -40"C to +70"C makes it suitable for deployment in both cold and hot industrial settings, ensuring reliability across various geographical locations. Measuring 3U x 9.25 inches, the compact design of the VME7700RC facilitates easy integration into existing rack-based systems, minimizing space requirements and allowing for efficient use of valuable floor space. 

The approximate weight of 1.5kg further simplifies installation and transportation processes. The GE FANUC VME7700RC PC BOARD is an advanced control module designed for seamless integration into complex industrial automation systems, offering unparalleled reliability and performance. 

Excellent technical characteristics

(A) powerful computing core

GE FANUC VME7700RC PC board equipped with a high-performance computing core, with extremely strong computing power. Its use of advanced processor architecture, can quickly and accurately deal with complex industrial control algorithms and massive real-time data. In the process of industrial automation, all kinds of sensors continuously collect a large amount of data such as equipment operating status and process parameters, and the VME7700RC PC board can analyse and calculate these data in depth in a short time, providing a reliable basis for decision-making of the control system. 

For example, in the automated assembly line of an automobile manufacturing plant, the data generated by many robot arms, sensors and other equipment is huge and rapidly changing, and the VME7700RC PC board can quickly process these data, precisely control the robot arm's movements, achieve high-precision assembly of parts and components, and significantly improve production efficiency and product quality. Its computing speed can reach billions of operations per second, ensuring stable operation in industrial scenarios with high load and high real-time requirements.


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