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  • EPRO MMS6210 Dual Channel Shaft Displacement Monitor
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  • EPRO MMS6210 Dual Channel Shaft Displacement Monitor

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    EPRO MMS6210 Dual Channel Shaft Displacement Monitor

    • ¥22000.00
      ¥24520.00
      ¥22000.00
      ¥22000.00
    • Satisfaction:

      Sales: 0

      Review: 0

    Weight:3.600KG
    • Quantity:
    • (Inventory: 36)
Description

EPRO MMS6210 Dual Channel Shaft Displacement Monitor


EPRO MMS6210 Dual Channel Shaft Displacement Monitor

Product Overview

The EPRO MMS6210 Dual Channel Shaft Displacement Monitor is a high performance industrial monitoring device from EPRO. It adopts a dual-channel design, capable of monitoring the shaft displacement data of two channels at the same time, providing users with comprehensive and accurate information on the operation of the equipment. The monitor is widely used in a variety of industrial applications that require shaft displacement monitoring, such as turbines, compressors, fans, centrifuges and other turbomachinery.

Main Features

Dual-channel design:

MMS6210 is equipped with two independent monitoring channels, which can monitor the displacement of two shafts at the same time, improving the accuracy and reliability of monitoring.

High-precision measurement:

Adopting advanced eddy current displacement sensor, it can accurately measure the shaft displacement and convert the displacement signal to standard signal output.

Multiple functions:

In addition to shaft displacement monitoring, the monitor also provides alarm, self-test, redundant power input and other functions to ensure the stable operation of the equipment.

Easy integration:

The MMS6210 supports a variety of interfaces and network connections, making it easy for users to integrate it into existing monitoring systems for remote monitoring and data transmission.

Expandability:

Users can set the working mode and parameters, read all the measured values, and carry out spectrum analysis and other operations through the on-site portable machine or remote communication bus according to the actual needs.

Technical specifications

Input:

Turbine sensor PR6422/... to PR6426/....

Output:

AC voltage signal proportional to shaft vibration superimposed on DC voltage.

Accuracy:

Linearity error depends on the type of sensor connected, e.g. ≤ 1.5% when sensor PR6422 is connected, ≤ 6.0% when sensor PR6425 is connected.

Supply Voltage:

Redundant power inputs are usually used to ensure stable operation of the device.

Communication interface:

RS232/RS485 interfaces are provided for communication with epro's analysis and diagnostic system MMS6850, etc.

Dimensions and weight:

Dimensions according to DIN 41494 (100x160 mm), width 30.0 mm, height 128.4 mm, length 160.0 mm. Net weight approx. 320 g, gross weight approx. 450 g.

Application Scenarios

EPRO MMS6210 Dual Channel Shaft Displacement Monitor is widely used in a variety of industrial applications where shaft displacement needs to be monitored, including but not limited to:

Power industry:

Used to monitor the shaft displacement of turbines, generators and other equipment to ensure the safe and stable operation of the equipment.

Petrochemical industry:

Used to monitor the shaft displacement of compressors, pumps and other equipment to prevent equipment failure and shutdown.

Iron and steel metallurgy industry:

Used to monitor the shaft displacement of rolling mills, fans and other equipment to improve production efficiency and product quality.

Rail transport:

Monitor track displacement and deformation in railway and underground systems to ensure normal operation of the track.

Operation and Maintenance

Operation guide:

Users should read the product manual carefully to understand the operation method and precautions of the monitor. In the operation process, safety norms should be observed to ensure the safety of people and equipment.

Maintenance Recommendations:

Regularly check the installation and connection of the sensor to ensure that the clearance between the sensor and the shaft is within the specified range.

Clean the surface of the sensor and monitor to avoid the influence of dust and dirt on the measurement accuracy.

Regularly check the power supply and signal lines of the monitor to ensure that the connections are reliable and free from looseness or damage.


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