MOTOROLA MVME2604-761

Technical Specifications
  • Processor: PowerPC-based architecture, delivering efficient computing power for real-time applications.
  • Memory: Supports up to 512 MB SDRAM via DIMM slots, allowing for scalable memory capacity.
  • VMEbus Interface: Compliant with VME64x standards, offering 64-bit data transfer and backward compatibility with legacy systems.
  • I/O Expansion: Includes PCI slots for additional peripheral integration, such as communication or processing modules.
  • Storage: Equipped with a CompactFlash socket for local data storage and system boot.
  • Ethernet: Features 10/100BaseTX Fast Ethernet ports for high-speed network connectivity.
Tag:
  • Serial Communication: Provides synchronous/asynchronous serial ports configurable as EIA-232, EIA-530, V.35, or X.21 via Motorola SIM modules.
  • Parallel I/O: Includes IEEE 1284-compatible parallel ports for industrial device connectivity.
  • SCSI Interface: Supports 16-bit Fast SCSI for high-speed data transfer to external storage devices.
  • Operating Systems: Compatible with VxWorks, QNX, and Linux, enabling flexibility in system deployment.
  • Physical Dimensions: Standard 19-inch rack-mountable design, 1U height.
  • Weight: Approximately 2.5 kg.
  • Environmental Adaptability:
    • Operating Temperature: -40°C to 85°C, enabling operation in extreme industrial conditions.
    • Shock Resistance: Complies with MIL-STD-810G standards for severe vibration environments.
    • Humidity Range: 5% to 95% relative humidity (non-condensing).

Key Features

  • High Reliability: Built to withstand harsh industrial environments, ensuring continuous operation in extreme temperatures, vibrations, and humidity.
  • Modular Design: Supports interchangeable I/O modules, allowing customization of serial, parallel, and SCSI interfaces to meet specific application requirements.
  • Scalable Memory Architecture: Modular DIMM slots allow for easy memory upgrades, accommodating evolving application demands.
  • Robust I/O Capabilities: Combines Ethernet, serial, parallel, and SCSI interfaces to support diverse peripheral devices and sensors.
  • VMEbus System Control: Functions as a system controller for VMEbus-based systems, managing bus arbitration, address mapping, and interrupt handling.
  • Low Power Consumption: Designed for energy efficiency, reducing operational costs in long-term deployments.

Application Scenarios

  • Industrial Automation: Used in production line control, robot control, and logistics management systems to enhance efficiency and precision.
  • Process Control: Powers data acquisition and monitoring systems (SCADA) in power, oil, and gas industries for real-time equipment monitoring and remote management.
  • Traffic Control: Supports traffic signal control and automatic train control systems, ensuring safety and smooth operation.
  • Medical Devices: Provides a stable and reliable computing platform for medical imaging equipment and automated testing devices.
  • Telecommunications: Deployed in base station controllers and network routers for efficient communication infrastructure management.
  • Energy Management: Integrates into renewable energy systems for efficient power conversion and distribution.
  • Military and Aerospace: Suitable for defense and aerospace applications due to its high reliability and compliance with MIL-STD-810G standards.




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