Description
Model: MVME162-010A
Brand: MOTOROLA
Series: Motorola MVME162 VMEbus Embedded Controller Series
Core Function: Executes real-time computing and control for embedded industrial systems
Type: VMEbus Embedded CPU Controller Board
Key Specs: 25MHz MC68LC040 CPU, 4MB onboard DRAM, VMEbus interface support
Supply Status: In stock
Stock: Available
Warranty: 1 year
Ship From: China

MOTOROLA MVME162-010A
Product System Integration Overview
The MOTOROLA MVME162-010A is a rugged single-board embedded controller built on the standard VMEbus architecture, serving as a standalone core computing unit for industrial embedded control systems. Designed for long-term stable operation in mission-critical industrial scenarios, this board integrates processor, memory, bus interface and serial communication circuits in a compact single-board layout. It supports seamless hardware compatibility with standard VMEbus rack systems and peripheral expansion modules, enabling flexible construction of modular industrial control platforms. Widely adopted in traditional industrial automation, aerospace testing, transportation control and military-grade embedded systems, it remains a reliable core replacement component for legacy industrial equipment maintenance, system renovation and stable operation upgrade projects.
Detailed Product Functionalities
This embedded CPU controller board undertakes full-cycle real-time operation, data processing and system scheduling tasks for industrial embedded systems. Powered by a 25MHz MC68LC040 32-bit microprocessor with built-in MMU and 8KB cache, it delivers stable real-time computing capability to execute industrial control programs and logical operation tasks efficiently. Equipped with standard 4MB onboard DRAM and expandable flash storage, it supports stable program operation and industrial data caching during long-term system running. The board integrates multiple serial communication ports compliant with EIA-232 and EIA-422/485 standards, realizing bidirectional data interaction with field sensors and executive devices. It also completes core functions such as system bus signal transmission, equipment status monitoring and fault self-diagnosis, ensuring continuous and reliable operation of embedded control systems.

MOTOROLA MVME162-010A
Product Features & Technical Strengths
The MOTOROLA MVME162-010A embedded controller features mature industrial design, ultra-high operational stability and excellent compatibility, standing out as a classic mainstream VMEbus core control board. Adopting the mature MC68LC040 processor architecture, it boasts low failure rate and strong program compatibility, perfectly adapting to various legacy industrial real-time operating systems and control programs. The standardized VMEbus interface ensures universal expandability, supporting free docking with various industry-standard expansion modules to enrich system functions. Its compact single-board integrated structure simplifies system hardware layout and reduces on-site wiring complexity. With strict industrial component screening and anti-interference circuit design, it features strong vibration resistance, temperature adaptability and electromagnetic interference resistance, capable of maintaining stable computing performance in harsh industrial and special working environments.
Industrial Application Scenarios
This rugged VMEbus embedded CPU board is widely applied in industrial scenarios that require high stability and long-term continuous embedded control operation. It is mainly used in industrial automation production control systems, aerospace test and measurement equipment, railway transportation control devices, military standard embedded systems and precision mechanical processing control platforms. As a classic core control component of Motorola MVME162 series, it provides stable real-time computing and system scheduling support for various legacy and special industrial control equipment. It effectively ensures the continuity and accuracy of industrial control logic operation, reduces equipment failure rates caused by core computing anomalies, and guarantees safe and stable long-term operation of special industrial embedded systems.
