Motorola MVME712/M

Product Introduction:
The Motorola MVME712/M is a critical VME-to-IndustryPack transition carrier board. It does not contain a processor itself but provides a standardized I/O expansion interface for VME systems.

Category: SKU: Motorola MVME712/M

Description

Motorola MVME712/M

Technical Specifications:

  • Brand: Motorola
  • Model: MVME712/M
  • Type: IndustryPack Carrier Board
  • Slot Quantity: Supports up to 4 single-width or 2 double-width IndustryPack modules

Functional Features:

  • Flexible I/O Expansion: Allows users to freely combine serial, parallel, CAN bus, or A/D conversion modules based on specific needs.
  • Space Saving: Consolidates multiple I/O functions into a single VME slot, maximizing backplane resource utilization.
  • Plug-and-Play: Provides standard VME address mapping to simplify system integration.

Application Scenarios:
Any VME control system requiring extensive field I/O connections, such as data acquisition stations and PLC expansion racks.

Performance Parameters:

  • Data Transmission: Supports VME A16/A24 addressing and D16/D32 data transfers
  • Isolation Protection: Select I/O channels provide optoelectronic isolation

Material Composition:
Utilizes high-reliability connectors to ensure contacts are not damaged during frequent insertion and extraction of IndustryPack modules.

Structural Characteristics:
Standard 6U VME size with front panel cutouts precisely aligned to IndustryPack module interfaces.

Working Principle:
Receives read/write commands from the master controller via the VME bus and routes them to the designated IndustryPack slot. Simultaneously provides necessary interrupt arbitration and DMA channels.

Installation Requirements:
When installing IndustryPack modules, align them with the guide rails and apply even pressure to avoid bending pins. Secure screws must be tightened to the appropriate torque.

Usage Precautions:
Different IndustryPack modules may require different VME address spaces; consult the manual carefully during configuration to avoid address conflicts.