Vibro meter VM600 MPC4 monitoring and protection controller

The Vibro meter VM600 MPC4 can flexibly adapt to various industrial automation architectures. It can seamlessly integrate with mainstream control systems such as PLC and DCS, and achieve efficient data transmission between different devices through commonly used industrial communication protocols such as PROFINET and Modbus TCP.

Model Number VM600 MPC4
Brand Vibro – meter
Type Monitoring and Protection Controller
Input Voltage 110 – 240 V AC
Operating Temp Range – 20°C to 60°C
Mounting Style Rack – mount
Dimensions 482.6mm x 261mm x 132.5mm
Weight 5kg
Interface/Bus Ethernet, RS – 485
Compliance CE, UL
Supported Protocols PROFINET, Modbus TCP, Modbus RTU
Typical Power Draw 35W

 

Description

The Vibro meter VM600 MPC4 can flexibly adapt to various industrial automation architectures. It can seamlessly integrate with mainstream control systems such as PLC and DCS, and achieve efficient data transmission between different devices through commonly used industrial communication protocols such as PROFINET and Modbus TCP.

VM600 MPC4

VM600 MPC4

As the core component of device status monitoring, it preprocesses and analyzes the collected raw data, converts it into intuitive device health information, and transmits it to the upper control system, providing powerful basis for decision-making. The controller has a redundant design, and when the main module fails, the backup module can automatically take over the work to ensure uninterrupted monitoring; The built-in intelligent diagnostic function can quickly locate the root cause of the fault, help technicians repair it in a timely manner, and ensure the stable operation of the system.

VM600 MPC4

VM600 MPC4

Technical specifications:
Model Number VM600 MPC4
Brand Vibro – meter
Type Monitoring and Protection Controller
Input Voltage 110 – 240 V AC
Operating Temp Range – 20°C to 60°C
Mounting Style Rack – mount
Dimensions 482.6mm x 261mm x 132.5mm
Weight 5kg
Interface/Bus Ethernet, RS – 485
Compliance CE, UL
Supported Protocols PROFINET, Modbus TCP, Modbus RTU
Typical Power Draw 35W

 

 

Contact Us
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VM600 MPC4

VM600 MPC4

 

Main features and advantages:
Its high-precision data collection and analysis capabilities have transformed equipment maintenance from passive repair to proactive prevention, significantly reducing maintenance costs. Strong compatibility reduces the complexity of system integration, shortens project implementation cycles, and lowers engineering investment. Redundancy and intelligent diagnostic functions significantly improve system reliability, ensuring the accuracy and continuity of equipment status monitoring even in complex and harsh industrial environments, reducing economic losses caused by equipment failures, and safeguarding enterprise production.

VM600 MPC4

VM600 MPC4

Application areas:
In aerospace manufacturing, it is used to monitor the operating status of precision machining equipment and ensure the machining accuracy of components; In the field of mining, large equipment such as crushers and conveyor belts can be monitored in real-time to ensure safe and efficient mining operations; In the shipbuilding and shipping industry, continuous monitoring of key equipment such as engines and propellers on board is carried out to ensure safe and stable navigation.

VM600 MPC4

VM600 MPC4

Related products:
VM600 MPC2: Suitable for small industrial scenarios with relatively simple equipment monitoring requirements.
VM600 MPC6: Expansion type, with more monitoring channels and stronger data processing capabilities, suitable for large and complex industrial systems.
VM600 MPC4- EX: Designed specifically for flammable and explosive hazardous environments such as oil and natural gas.
VM600 MPC4-H: Can operate stably in high-temperature industrial environments.
VM600 MPC4-S: Supports special communication protocols for easy integration with specific industrial equipment.

VM600 MPC4

VM600 MPC4

Installation and maintenance:
Before installing the Vibro meterVM600 MPC4, it is necessary to confirm that the input voltage matches the on-site power supply to avoid damaging the equipment due to voltage issues; Check whether the communication interface and protocol are compatible with other system devices to ensure normal data transmission; At the same time, sufficient installation space should be reserved to ensure good heat dissipation of the equipment.

During daily maintenance, regularly check the status of the controller indicator lights to promptly detect any abnormalities; Check whether the communication cable connection is stable to prevent looseness from affecting data transmission; Conduct comprehensive functional testing on the controller every six months to ensure its performance remains at its optimal level.

 

 

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