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EPRO MMG1070/02TS Eddy Current Displacement Sensor

EPRO MMG1070/02TS Eddy Current Displacement Sensor

  • Manufacturer: EPRO

  • Product No.: MMG1070/02TS

  • Condition:1000 en stock

  • Product Type: Eddy Current Displacement Sensor

  • Product Origin: USA

  • Payment: T/T, Western Union

  • Weight: 200g

  • Shipping port: Xiamen

  • Warranty: 12 months

  • 24/7 Support
  • 30-Day Returns
  • Fast Shipping

Product Overview

The EPRO MMG1070/02TS is an Eddy Current Displacement Sensor designed for non-contact measurement of displacement, vibration, and speed in rotating machinery. Manufactured by EPRO (now under Emerson), this sensor uses the eddy current principle to monitor critical parameters such as shaft displacement, shaft vibration, and rotational speed. It is typically used in industrial applications like turbines, compressors, pumps, and generators in sectors such as power generation, oil & gas, and manufacturing, where precise condition monitoring is essential for equipment reliability.

Technical Specifications

The MMG1070/02TS has the following specifications based on standard characteristics for this model:

Item Specification
Model/Part Number MMG1070/02TS
Manufacturer EPRO (Emerson)
Description Eddy Current Displacement Sensor
Model Type Eddy Current Displacement Sensor
Measurement Range 2 mm
Linear Range 0.2 to 2.2 mm
Cable Length 3 meters (standard, unarmored)
Output Compatible with signal converters (e.g., CON041) for -24 V DC to 0 V DC or 4-20 mA
Operating Temperature -35°C to 180°C (-31°F to 356°F) at measuring tip
Thread M10 x 1
Weight Approximately 0.2 kg (0.44 lbs) including cable

Additional Details

The MMG1070/02TS includes the following additional information based on its standard use and documentation:

Category Details
Function Measures shaft displacement, vibration, and speed via eddy current principle
Mounting Threaded installation (M10 x 1) near rotating machinery
Compatibility EPRO signal converters (e.g., CON041), MMS 3000/6000 monitoring systems
Features Non-contact measurement, high interference immunity, integrated electronics in transducer housing
Certifications ATEX/IEC-Ex certified when paired with appropriate barriers
Part Type New, surplus, or refurbished 


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Product Description

Product Overview

The EPRO MMG1070/02TS is an Eddy Current Displacement Sensor designed for non-contact measurement of displacement, vibration, and speed in rotating machinery. Manufactured by EPRO (now under Emerson), this sensor uses the eddy current principle to monitor critical parameters such as shaft displacement, shaft vibration, and rotational speed. It is typically used in industrial applications like turbines, compressors, pumps, and generators in sectors such as power generation, oil & gas, and manufacturing, where precise condition monitoring is essential for equipment reliability.

Technical Specifications

The MMG1070/02TS has the following specifications based on standard characteristics for this model:

Item Specification
Model/Part Number MMG1070/02TS
Manufacturer EPRO (Emerson)
Description Eddy Current Displacement Sensor
Model Type Eddy Current Displacement Sensor
Measurement Range 2 mm
Linear Range 0.2 to 2.2 mm
Cable Length 3 meters (standard, unarmored)
Output Compatible with signal converters (e.g., CON041) for -24 V DC to 0 V DC or 4-20 mA
Operating Temperature -35°C to 180°C (-31°F to 356°F) at measuring tip
Thread M10 x 1
Weight Approximately 0.2 kg (0.44 lbs) including cable

Additional Details

The MMG1070/02TS includes the following additional information based on its standard use and documentation:

Category Details
Function Measures shaft displacement, vibration, and speed via eddy current principle
Mounting Threaded installation (M10 x 1) near rotating machinery
Compatibility EPRO signal converters (e.g., CON041), MMS 3000/6000 monitoring systems
Features Non-contact measurement, high interference immunity, integrated electronics in transducer housing
Certifications ATEX/IEC-Ex certified when paired with appropriate barriers
Part Type New, surplus, or refurbished