Motorola MVME167-004B

Product Introduction:
The Motorola MVME167-004B is an enhanced, hardware-revised version of the high-capacity VME processor module. It combines massive memory resources with upgraded component reliability for mission-critical data processing.

Category:

Description

Motorola MVME167-004B

Technical Specifications:

  • Brand: Motorola
  • Model: MVME167-004B
  • Product Positioning: Enhanced High-Capacity VME SBC
  • Core Configuration: MC68040 33MHz Processor with 128MB ECC DRAM

Functional Features:

  • Seamless Upgrade: Direct drop-in replacement for the 004A model with no system reconfiguration required.
  • Deep Diagnostics: Comprehensive self-test and fault logging capabilities for rapid troubleshooting.
  • Hardware Watchdog: Built-in independent hardware watchdog timer automatically resets the system in case of a deadlock.

Application Scenarios:
Deployed in critical infrastructure monitoring, large-scale automated testing platforms, and precision medical laboratory automation equipment.

Performance Parameters:

  • Processing Redundancy: Higher instruction execution throughput with microsecond-level interrupt response latency.
  • System Uptime: Maximized Mean Time Between Failures (MTBF) in harsh conditions.

Material Composition:
Industrial-grade components with strict impedance control and signal integrity testing on the PCB.

Structural Characteristics:
6U VME standard size with front panel debug serial ports, status indicator LEDs, and physical control switches.

Working Principle:
Acts as the core node in a distributed control system, periodically scanning field I/O states, executing PID regulation or sequential logic control programs, and distributing control results via the backplane bus.

Installation Requirements:
Ensure proper alignment with chassis guides and secure tightening of front panel screws. Configure I/O scaling parameters strictly to prevent output signal over-limiting.

Usage Precautions:
Always wear an anti-static wrist strap during handling. Never insert or remove the module while power is applied to avoid catastrophic component damage.