The Motorola MVME162-210 is a VME single board computer engineered to meet the performance and stability requirements of industrial and embedded control applications. As part of the widely adopted MVME162 family, this board integrates a powerful Motorola 68040 processor with a flexible system architecture that supports real-time processing, system control, and data-intensive tasks within VMEbus-based platforms.
Designed for long-term deployment in complex systems, the MVME162-210 provides a balanced combination of processing capability, memory scalability, and I/O flexibility. Its architecture allows seamless integration into existing VME infrastructures, making it suitable for upgrades, system expansions, or new embedded designs where consistency and reliability are critical.
At the core of the MVME162-210 is the Motorola 68040 microprocessor, a 32-bit CPU known for its integrated floating-point unit and memory management unit. This processor enables efficient handling of computational workloads, multitasking operating systems, and real-time control logic. The CPU architecture supports deterministic performance, which is essential for industrial automation, instrumentation, and control systems.
The board supports multiple memory configurations, allowing system designers to tailor RAM and non-volatile memory resources according to application requirements. This flexibility ensures that the MVME162-210 can support both memory-intensive applications and streamlined control tasks without unnecessary complexity. Memory management features contribute to system stability and protection, especially in multi-process environments.
The Motorola MVME162-210 is fully compliant with VMEbus standards, ensuring compatibility with a wide range of VME chassis, backplanes, and peripheral modules. Its VMEbus interface supports efficient communication between the CPU board and other system components, enabling high-throughput data transfer and coordinated operation across the system. This makes the board suitable for distributed control systems and modular industrial platforms.
A comprehensive set of onboard I/O interfaces enhances the versatility of the MVME162-210. These interfaces support communication with external devices, subsystems, and operator interfaces, reducing the need for additional expansion modules. The integrated I/O design contributes to a compact system layout while maintaining the flexibility required for diverse application environments.
The board is designed to support a variety of real-time and embedded operating systems commonly used in VME-based systems. This software compatibility allows developers to leverage established development tools, middleware, and application frameworks, reducing integration time and supporting long-term system maintenance. The stable hardware platform ensures predictable behavior under continuous operation.
In industrial control environments, the Motorola MVME162-210 is well-suited for tasks such as process automation, machine control, and system monitoring. Its reliable processing and deterministic response enable precise control of industrial equipment, while the VME architecture allows easy expansion as system requirements evolve.
For test and measurement systems, the MVME162-210 provides the processing foundation needed to manage data acquisition, signal processing, and system coordination. Its ability to interface with multiple VME modules supports scalable system designs that can adapt to changing testing requirements.
The MVME162-210 is also used in transportation, energy, and infrastructure systems where long operational life and system stability are essential. Its proven architecture and robust design make it suitable for environments where continuous operation and consistent performance are required.
From a system integration perspective, the Motorola MVME162-210 offers a clear advantage through its standardized design and well-documented architecture. Engineers familiar with VMEbus systems can integrate the board with minimal adaptation, preserving existing investments in hardware and software.
The combination of processing power, memory flexibility, and VMEbus compatibility makes the MVME162-210 a dependable solution for embedded computing tasks. Its design reflects Motorola’s approach to industrial computing, emphasizing reliability, modularity, and long-term usability in demanding environments.
Overall, the Motorola MVME162-210 stands as a versatile VME single board computer that supports a wide range of industrial and embedded applications. Its balanced architecture and proven performance continue to make it a valuable component in VME-based control and computing systems.



