Motorola MVME2604-1321

Product Introduction
The MVME2604-1321 is a high-performance VMEbus single-board computer powered by the 333 MHz MPC604 PowerPC microprocessor. Designed for demanding industrial control and embedded systems, this module offers extensive I/O expansion capabilities and supports flexible PMC mezzanine card integration.

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Description

Motorola MVME2604-1321

Technical Specifications

  • Processor: 333 MHz MPC604 PowerPC microprocessor.
  • Memory: Supports 16MB to 256MB ECC DRAM.
  • Flash Memory: On-board 9MB Flash storage.
  • Non-Volatile Storage: 8KB NVRAM with Real-Time Clock (RTC) and battery backup.

Functional Features

  • PCI Bus Support: Features a PCI local bus supporting IEEE P1386.1 PMC mezzanine cards.
  • VME System Control: Supports VMEbus system controller functions and VME-to-local-bus interface.
  • Ethernet Interface: Integrated DECchip 21140 PCI Fast Ethernet controller.
  • SCSI Interface: Utilizes the Symbios 53C825A SCSI I/O controller for high-capacity storage devices.

Application Scenarios
Widely deployed in telecommunications equipment, industrial automation control, data acquisition systems, and real-time computing platforms in the aerospace sector.

Performance Parameters

  • Power Requirements: +5V DC (±5%), typical current 6A, maximum 8A.
  • Operating Temperature: 0°C to 55°C with forced-air cooling.
  • Storage Temperature: -40°C to +85°C.
  • Relative Humidity: 5% to 90% (non-condensing).

Material Composition
Manufactured with high-reliability industrial-grade electronic components and a multi-layer PCB design, offering excellent anti-interference capabilities and signal integrity.

Structural Characteristics
Standard Double-high VME board dimensions. Base board only height is 9.2 inches (233 mm) and depth is 6.3 inches (160 mm). With front panel and connectors, height is 10.3 inches (262 mm) and depth is 7.4 inches (188 mm), with a front panel width of 0.8 inches (20 mm).

Operating Principle
The MPC604 processor manages on-board peripherals and PMC expansion cards via the PCI local bus, while exchanging high-speed data with the chassis backplane through the VME interface to execute complex real-time logic operations and control tasks.

Installation Requirements
An ESD (Electrostatic Discharge) wrist strap must be worn and grounded. The system must be powered off before inserting or removing the module. Ensure the module is fully seated on the backplane connectors without bending any pins.

Usage Precautions
Never insert or remove the module while the system is powered on, as this will damage internal components. Ensure the chassis provides adequate forced-air cooling (typically requiring 10 CFM airflow).