VIBRO-METER VM600 MPC4 200-510-070-113 Technical Specifications

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VIBRO-METER VM600 MPC4 200-510-070-113: Industrial-Grade Monitoring Module

The VIBRO-METER VM600 MPC4 200-510-070-113 represents cutting-edge technology in industrial module components for condition monitoring and automation engineering solutions. Engineers across multiple industries rely on this robust system for precise vibration measurement and machinery protection.

Technical Specifications

General Parameters

  • Model Number: VM600 MPC4 200-510-070-113
  • Input Channels: 4 independent channels
  • Signal Processing: 24-bit resolution
  • Sampling Rate: Up to 100 kHz per channel

Performance Characteristics

  • Frequency Range: 0.5 Hz to 20 kHz
  • Dynamic Range: 100 dB typical
  • Operating Temp: -40°C to +85°C
  • Power Supply: 18-36 VDC

Communication & Interfaces

  • Ethernet Port: 10/100 Mbps TCP/IP
  • Protocol Support: Modbus TCP, OPC UA
  • Isolated Outputs: 4 relay outputs
  • Analog Outputs: 4 configurable 4-20 mA

Industrial Applications

The VIBRO-METER VM600 MPC4 200-510-070-113 delivers exceptional performance in demanding environments. Consequently, it has become the preferred choice for numerous automation engineering solutions across multiple sectors.

Power Generation

Turbine monitoring systems benefit from the module’s high-accuracy vibration measurements and robust construction.

Oil & Gas

Offshore platforms utilize these industrial module components for critical pump and compressor monitoring.

Manufacturing

Production lines implement the VM600 MPC4 for predictive maintenance of rotating equipment.

System Integration

When implementing the VIBRO-METER VM600 MPC4 200-510-070-113 specifications into existing systems, engineers appreciate the module’s flexible configuration options. Moreover, the comprehensive protocol support ensures seamless integration with most industrial control systems.

The advanced diagnostic capabilities combined with real-time monitoring features provide maintenance teams with actionable insights. As a result, organizations achieve higher equipment availability and reduced downtime across their operations.