MOTOROLA MVME162-353A

Technical Specifications

  • Processor: It can be equipped with a 25 MHz MC68LC040 enhanced 32 - bit microprocessor with 8 KB of cache and MMU (Memory Management Unit). An optional 25 MHz MC68040 32 - bit microprocessor with 8 KB of cache, MMU, and FPU (Floating - Point Unit) is also available.
  • Memory: It has 1 MB, 4 MB, or 8 MB of shared DRAM, which can be programmed for parity. There is 512 KB of SRAM with battery backup, which can prevent data loss during power - off. In addition, there is a 32 - pin JEDEC standard PLCC EPROM socket, and 8 k x 8 NVRAM with a battery - backed real - time clock.
  • Interface: It is equipped with two serial communication ports. One is a console port configured as EIA - 232 - D DTE, and the second port can be configured by the user as EIA - 232 - D/EIA - 422 (V.36) DTE/DCE. It has two Industry Pack® ports, which are convenient for function expansion. It also has an optional SCSI bus interface with 32 - bit local bus burst DMA and an optional Ethernet transceiver interface with 32 - bit local bus DMA.
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  • VMEbus Interface: It has a 32/D64 VMEbus master/slave interface with system controller functionality, supporting high – performance DMA, and being compatible with VMEbus D64 and local bus memory burst cycles. It has a four – stage requester, a seven – stage interruptor, and a seven – stage interrupt handler for VMEbus.
  • Timers: It is equipped with six 32 – bit timers, including four non – VMEbus timers and a watchdog timer, which can be used for timing control and system monitoring.

Function Features

  • Powerful Computing Performance: The optional MC68040 microprocessor with FPU can handle complex floating – point operations, which is suitable for applications with high – precision calculation requirements. The MC68LC040 also has good general – purpose computing capabilities, and the cache and MMU can improve the processing speed and data access efficiency.
  • Reliable Memory Protection: The parity – protected DRAM can ensure the integrity of data during operation. The battery – backed SRAM and NVRAM can save important data and system configuration information, enabling the system to quickly resume normal operation after power – on, which is very important for applications that require high reliability, such as industrial control and military equipment.
  • Flexible Expansion Capability: Although there are only two Industry Pack ports, they can still meet the basic function expansion needs. Users can select different Industry Pack modules according to actual needs to expand functions such as I/O, control, and analog – digital conversion. The optional SCSI and Ethernet interfaces can realize high – speed data transmission and network connection, facilitating the integration of the device into larger – scale systems and data exchange with other devices.
  • Excellent VMEbus Compatibility: Its VMEbus interface has strong compatibility and can be well integrated into VME – based systems. It can realize fast data transfer between the local bus and the VMEbus through high – performance DMA, which is conducive to the expansion and upgrade of the system, and can cooperate with other VME – compatible devices to jointly complete complex tasks.
  • Convenient Debugging and Monitoring: The on – board debugger and diagnostic firmware are convenient for users to debug the system, which can quickly locate and solve problems. The remote reset/abort/status control functions allow users to remotely monitor and control the device, improving the efficiency of system maintenance and management.

Application Scenarios

  • Industrial Automation: It is suitable for various industrial control scenarios, such as the control of automated production lines, the monitoring of industrial robots, and the adjustment of process parameters. It can receive sensor data in real – time, perform data processing and analysis, and issue control commands to ensure the stable operation of the production process.
  • Military and Aerospace: Due to its high – reliability design and excellent performance, it can be applied to military command and control systems, missile guidance systems, and satellite on – board data processing systems. It can work stably in harsh environments such as high temperature, high humidity, and strong electromagnetic interference, providing reliable support for military and aerospace applications.
  • Telecommunications: It can be used in telecommunications base stations, central offices, and other equipment, responsible for data processing, protocol conversion, and network management in telecommunications networks. It can ensure the stable operation of telecommunications services and the smooth transmission of data.
  • Medical Equipment: In medical imaging equipment such as CT, MRI, and ultrasonic diagnosis equipment, it can be used for image data processing and system control. It can also be applied to medical monitoring equipment to realize real – time monitoring and analysis of patient vital signs, providing technical support for medical diagnosis and treatment.




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