Description
Motorola MVME2604-3461
Technical Specifications
- Core Architecture: Based on the 400 MHz MPC604 PowerPC processor.
- Coprocessor: Optional floating-point coprocessor to accelerate complex mathematical computations.
- Memory Configuration: Supports 0 to 512MB ECC DRAM with programmable parity checking.
- Non-Volatile Storage: Equipped with a battery-backed real-time clock and 9MB Flash.
Functional Features
- Floating-Point Support: The floating-point coprocessor makes it ideal for industrial control requiring extensive scientific computing or complex algorithms.
- Large Capacity Memory: Up to 512MB of DRAM meets the operational needs of large real-time control programs.
- VME System Control: Features A32/D32 VMEbus master/slave interface and system controller functionality.
Application Scenarios
Suitable for scientific research and data acquisition, high-precision industrial automation testing equipment, and embedded systems requiring complex mathematical computations.
Performance Parameters
- Timers: Includes two 16-bit timers and a watchdog timer.
- Interrupt Handling: Supports 4-level requesters, 7-level interrupters, and 7-level interrupt handlers.
Material Composition
Constructed with high-quality electronic components and industrial-grade multi-layer PCB, ensuring long lifespan and high reliability in harsh industrial and military environments.
Structural Characteristics
Standard 6U VME module size. Integrates DRAM arrays and various interface controllers on the front panel or board, communicating with the backplane via P1/P2 connectors at the rear.
Operating Principle
The MPC604 main processor and floating-point coprocessor work collaboratively to handle complex floating-point operations and logical control, transmitting processing results at high speeds to other system modules via the VME bus.
Installation Requirements
Ensure the VME chassis is equipped with a forced air cooling system to guarantee heat dissipation for high-power-density integrated circuits.
Usage Precautions
Regularly check the status of the on-board backup battery to ensure data in non-volatile RAM and the real-time clock is not lost after power-off. Avoid operating without shielding in environments with strong electromagnetic interference.




