MVME2304-0141 Motorola Processor Module

MVME2304-0141 is a high-performance embedded single-board computer, widely utilized in industrial control, aerospace, and other fields requiring high reliability and real-time performance.

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Description

Application Case of MVME2304-0141

1. Background Overview

MVME2304-0141 is a high-performance embedded single-board computer, widely utilized in industrial control, aerospace, and other fields requiring high reliability and real-time performance. This case focuses on its application in an intelligent industrial automation control system.

2. Application Scenario & Requirements

The project aimed to upgrade the control system of a large-scale continuous production line in the petrochemical industry. The core requirements included:
  • Real-time data acquisition and processing, with a response time requirement of less than 10ms.
  • Stable communication with multiple field devices (sensors, actuators, etc.) via protocols such as Modbus and Profibus.
  • High resistance to harsh industrial environments, including tolerance to temperature fluctuations (-40℃ to 70℃) and electromagnetic interference.

3. Solution Design with MVME2304-0141

  • Hardware Configuration: The MVME2304-0141 served as the core controller, integrated with analog input/output modules and communication interface cards to connect with field devices.
  • Software Deployment: A real-time operating system (RTOS) was installed on the board, matched with customized control algorithms to realize precise regulation of the production process.
  • Redundancy Design: To ensure system reliability, a dual-machine hot backup mechanism was adopted for the MVME2304-0141, enabling seamless switching in case of a single-unit failure.

4. Application Effects

After the system was put into operation, the following results were achieved:
  • The real-time performance of the production line control was significantly improved, with the average response time reduced to 6ms, meeting the design requirements.
  • The stable communication between the controller and field devices ensured continuous and stable production, reducing the downtime caused by communication failures by 80%.
  • The board’s excellent environmental adaptability ensured stable operation in the harsh petrochemical workshop environment, with a system availability rate of over 99.9%.

MVME2304-0141 PDF
MVME7100-0173

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