MOTOROLA MVME761-001 channel thermoelectric embedded industrial computer module

Model Number
MVME761 – 001
Brand
MOTOROLA
Type
VMEbus Single – Board Computer Module
Input Voltage
5V DC (Typical operating voltage range may have specific tolerances)
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Description

MOTOROLA MVME761-001 channel thermoelectric embedded industrial computer module

 

 

In the competitive arena of industrial automation and control, the MOTOROLA MVME761 – 001 emerges as a highly capable and reliable solution. This advanced VMEbus single – board computer module is specifically crafted to meet the diverse and demanding requirements of modern industrial systems. Whether it’s deployed in large – scale manufacturing plants, complex power generation facilities, or sophisticated process control setups, the MOTOROLA MVME761 – 001 is designed to be a cornerstone of efficient operation, enabling seamless data processing, control, and communication within industrial environments.

Label
Specification
Model Number
MVME761 – 001
Brand
MOTOROLA
Type
VMEbus Single – Board Computer Module
Input Voltage
5V DC (Typical operating voltage range may have specific tolerances)
Operating Temp
-40°C to +85°C
Communication Method
VMEbus interface for high – speed data transfer within the system, supports Ethernet for external communication
Mounting
Designed for VMEbus chassis installation
Weight
Approximately 1.2 kg
Certifications
CE, UL, and other relevant industrial certifications
Dimensions
Standard VME form factor dimensions
IP Rating
Suitable for indoor industrial environments (IP rating details may vary based on installation enclosure)
Protocols Supported
TCP/IP, UDP, and other common network protocols for Ethernet communication, VMEbus – specific communication protocols

The MOTOROLA MVME761 – 001 is packed with functional strengths and design advantages that make it stand out in the industrial landscape. Its powerful processing capabilities allow for rapid data handling, ensuring that industrial processes can operate at peak efficiency. In applications where real – time data analysis and decision – making are critical, such as in high – speed production lines or complex power grid monitoring systems, this module’s ability to quickly process information gives it a distinct edge.
The module’s resilience is another notable feature. Built to withstand the harsh conditions often found in industrial settings, including extreme temperatures, electrical interference, and mechanical vibrations, the MVME761 – 001 offers exceptional reliability. This durability minimizes the risk of unexpected system failures and downtime, saving businesses both time and money. Its compatibility with the VMEbus standard ensures seamless integration with a wide range of existing VME – based systems and peripherals. This not only simplifies system expansion but also allows for easy upgrades, enabling industries to stay at the forefront of technological advancements without having to overhaul their entire infrastructure.
Moreover, the high – quality build of the MVME761 – 001, with its use of top – grade components, guarantees consistent performance over an extended period. Industrial engineers can rely on this module to deliver stable operation, day in and day out, even in the most challenging industrial environments.
The MOTOROLA MVME761 – 001 has a wide range of industrial use cases. In the manufacturing industry, it can be used to control and monitor automated production lines. By precisely managing the movement of machinery, regulating the flow of materials, and coordinating different production processes, it helps increase production output while maintaining strict quality control standards. In the energy sector, especially in power plants, this module plays a crucial role in monitoring and controlling power generation and distribution systems. It enables real – time data collection from various components such as generators, transformers, and circuit breakers, facilitating proactive maintenance and ensuring the stable and efficient operation of the power grid.
In process control applications, like those in chemical plants or refineries, the MVME761 – 001 is essential for accurately regulating chemical reactions, temperature, pressure, and other critical parameters. This precision is vital for ensuring safety, product quality, and compliance with industry regulations. By providing reliable data processing and control capabilities, the module effectively addresses the challenges of maintaining process reliability and minimizing operational disruptions in industrial settings.
There are several models closely related to the MOTOROLA MVME761 – 001, each with its own unique features and applications. The MOTOROLA MVME712 – 001 offers a different set of processing capabilities and I/O configurations, making it suitable for applications with specific performance requirements. The MVME5100 series provides a more compact form factor, which can be an ideal choice for installations where space is limited. The MVME2434 is known for its enhanced data communication speeds, making it a great option for systems that require high – speed data transfer. The MVME6100 series offers advanced features and higher performance levels, catering to more complex industrial control and computing tasks. And the MVME167 is designed with a focus on cost – effectiveness while still providing reliable performance, suitable for budget – conscious industrial applications.
When it comes to setting up the MOTOROLA MVME761 – 001, proper installation within a VMEbus chassis is essential for optimal performance. It’s crucial to ensure that the module is correctly seated in the chassis slots and that all connections, including power and VMEbus communication links, are securely fastened. Grounding the chassis properly helps prevent electrical interference and ensures the stability of the system. Adequate ventilation around the chassis should also be maintained to prevent the module from overheating, especially during continuous operation in high – workload environments.
For long – term operation, regular maintenance is recommended. Engineers should periodically inspect the module for any signs of physical damage, such as cracks or loose components. Monitoring the module’s temperature, power consumption, and data transfer rates can help detect potential issues early. Additionally, keeping the VMEbus communication interfaces clean and free from dust or debris, and ensuring that all connected peripherals are functioning properly, is key to maintaining seamless operation. By following these maintenance practices, businesses can extend the lifespan of the MVME761 – 001 and continue to rely on its reliable performance in their industrial systems.

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