MOTOROLA MVME51105-2261

Technical Specifications
  • Processor:
    • Powered by the MPC7410 PowerPC processor with a clock speed of up to 500 MHz, delivering strong computational performance.
  • Memory:
    • Supports up to 512MB ECC SDRAM for reliable data processing.
    • Includes 17MB flash memory for firmware storage.
    • Features 2MB secondary cache to enhance processing efficiency.
  • I/O Interfaces:
    • Provides multiple I/O options, including Ethernet, serial ports, and USB, for seamless integration with various peripherals and systems.
    • Supports VMEbus with 2eSST protocol for high-speed data transfer.
Tag:
  • Expansion Capabilities:
    • Offers flexible expansion options for memory, storage, and I/O interfaces to meet diverse application requirements.
  • Operating Temperature:
    • Supports an extended temperature range from -20°C to 71°C, suitable for extreme environmental conditions.
  • Power Supply:
    • Operates on a wide voltage input range of 9V to 36V DC, ensuring compatibility with various power sources.

Key Features

  • High Performance:
    • The MPC7410 processor enables efficient handling of complex tasks, making it ideal for algorithm-intensive applications.
  • High Reliability:
    • Industrial-grade components and rigorous manufacturing processes ensure long-term stable operation in demanding environments.
  • Rich I/O Options:
    • Multiple communication interfaces facilitate seamless integration with other devices and systems, enhancing connectivity and flexibility.
  • Scalability:
    • Modular design allows for easy customization and scalability, enabling users to add functionality as needed.
  • Algorithm-Intensive Computing:
    • Supports advanced computing techniques for applications requiring high-speed data processing and analysis.
  • VMEbus Compatibility:
    • The board’s compatibility with the VMEbus standard ensures easy integration into existing VMEbus systems, protecting investments in legacy technology.

Application Scenarios

  • Industrial Automation:
    • Used in real-time control, data processing, and monitoring tasks in manufacturing lines, robotics, and CNC machines. Its high-performance processor and memory configuration ensure quick response and efficient handling of complex industrial systems.
  • Embedded Computing:
    • Serves as the core controller in embedded systems, providing powerful computing support for smart devices, robotics, and other embedded applications with high computing performance requirements.
  • Aerospace:
    • Employed in real-time data processing, communication, and navigation systems for aerospace applications. Its rugged design and high reliability make it suitable for mission-critical tasks in this field.
  • Scientific Research:
    • Supports high-performance computing tasks such as simulations, modeling, and data analysis. Its algorithm-intensive computing capabilities enable researchers to obtain accurate results faster, accelerating the scientific research process.
  • Energy Management:
    • Integrates into smart grids, distributed energy systems, and energy monitoring systems for efficient data processing and decision support. Its high-performance computing capabilities enable real-time monitoring and control of energy systems.
  • Transportation:
    • Manages scheduling control, vehicle tracking, and passenger information management in rail, metro, and bus systems. Its reliable performance ensures smooth operation of public transportation networks.




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