The Allen-Bradley 1440-VDRP06-00RH Vibration Measurement Module, also known as the XM-162, is designed to monitor overall vibration levels in industrial machinery, providing critical data for predictive maintenance and operational efficiency. It features six input channels and integrated proximity probe power, facilitating comprehensive vibration analysis.
Manufacturer | Rockwell Automation |
Brand | Allen-Bradley |
Product Type | Vibration Measurement Module |
Part Number | 1440-VDRP06-00RH |
Inputs | Six dynamic input channels |
Voltage Ranges | Input: ±24V; Supply: 24V DC |
Communication Types | DeviceNet, RS-232 |
XM Bus Communication Rate | 125 Kbps, 250 Kbps, or 500 Kbps (autobaud) |
Thermal Dissipation | 8.7 W maximum |
Field Power | 24V DC, 190 mA |
Status Indicator | Module, Network, Channel Status |
Input Power | 24V DC, 190 mA |
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The Allen-Bradley 1440-VDRP06-00RH Vibration Measurement Module (XM-162) is engineered to monitor overall vibration levels in industrial machinery, providing critical data for predictive maintenance and operational efficiency. It features six dynamic input channels capable of processing signals from various transducers, including accelerometers and velocity sensors, facilitating comprehensive vibration analysis.
Operating on a 24V DC power supply with a current draw of 190 mA, the XM-162 module communicates via DeviceNet and RS-232 interfaces, ensuring seamless integration into existing control systems. The XM bus supports autobaud rates of 125 Kbps, 250 Kbps, or 500 Kbps, enhancing adaptability to different network configurations.
The module is equipped with status indicators for Module, Network, and Channel Status, providing real-time visual feedback on operational conditions. Its compact design and robust functionality make it suitable for a wide range of industrial applications, including turbines, motors, pumps, and compressors. By delivering accurate vibration monitoring and protection features, the XM-162 module contributes to enhanced operational efficiency and reduced downtime in critical machinery systems.