• Epro PR6424/001-000 16mm Eddy Current Sensor
  • Epro PR6424/001-000 16mm Eddy Current Sensor
  • Epro PR6424/001-000 16mm Eddy Current Sensor
  • Epro PR6424/001-000 16mm Eddy Current Sensor
Product Overview The Epro PR6424/001-000 16mm Eddy Current Sensor is a non-contact proximity sensor used for monitoring the position and movement of conductive targets in rotating machinery. It is commo……
Epro PR6424/001-000 16mm Eddy Current Sensor
  • Epro
  • PR6424/001-000
  • 16mm Eddy Current Sensor
  • Germany
  • 16 mm
  • 0.2 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
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Our advantage

Epro PR6424/001-000 16mm Eddy Current Sensor

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Epro PR6424/001-000 16mm Eddy Current Sensor

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Epro PR6424/001-000 16mm Eddy Current Sensor

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Epro PR6424/001-000 16mm Eddy Current Sensor

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
WeChat 15980777398

Product Overview

The Epro PR6424/001-000 16mm Eddy Current Sensor is a non-contact proximity sensor used for monitoring the position and movement of conductive targets in rotating machinery. It is commonly applied where the condition of a shaft or other rotating component needs to be monitored without physically contacting the machine surface.

The sensor is installed near the monitored target and works as part of an eddy-current measurement channel. As the distance between the probe and conductive target changes, the sensor response changes accordingly. The associated signal-conditioning electronics then convert this information into a usable measurement for a machinery monitoring or protection system.

In turbine, compressor, pump, and generator applications, this type of sensor can be used where shaft movement, displacement, or proximity information is required. Its non-contact measurement principle avoids mechanical wear at the sensing point and allows the probe to operate continuously while the machine is running.

The PR6424/001-000 should be considered as one part of a complete monitoring channel. Probe positioning, target condition, cable integrity, signal conditioning, and the downstream monitoring input all affect the quality of the final measurement.


Technical Specifications

Parameter Specification
Manufacturer Epro
Model / Part Number PR6424/001-000
Product Type 16mm Eddy Current Sensor
Series PR6424
Measurement Principle Eddy current / non-contact displacement measurement
Application Rotating machinery shaft displacement and position monitoring
Sensor Head Diameter 16 mm
Weight 0.2 kg

Product Features

  • Uses non-contact eddy-current technology to detect conductive targets.
  • Suitable for rotating machinery proximity and displacement monitoring.
  • Supports shaft-related position and movement measurements.
  • Can be integrated with appropriate Epro signal-conditioning electronics.
  • Suitable for continuous machinery monitoring applications.
  • Useful in turbine, compressor, pump, generator, and other rotating equipment systems.
  • Provides a practical sensing method where mechanical contact with the monitored target is undesirable.

Working Principle

The PR6424/001-000 generates an electromagnetic field at the sensing tip and detects changes caused by a nearby conductive target. When the target moves closer to or farther from the probe, the electrical response of the sensor changes.

A simplified measurement path is:

Rotating Shaft / Conductive Target → PR6424/001-000 Sensor → Signal Converter → Machinery Monitoring System → Protection / Control System

The signal converter conditions the sensor output before it is processed by the monitoring equipment. In a shaft-monitoring application, changes in the sensor signal can represent changes in the relative position between the probe and the rotating target.

Correct installation is essential because the measurement depends directly on the probe-to-target relationship. Probe movement, unsuitable target geometry, contamination, or cable problems can all affect the resulting measurement.


Role in a Machinery Protection and Monitoring Architecture

The PR6424/001-000 forms the sensing element at the front of a proximity monitoring channel:

Machine Shaft → PR6424/001-000 → Signal Converter → Monitoring / Protection System → Control Room

System Element Function
Rotating Shaft Provides the conductive target whose movement is monitored
PR6424/001-000 Detects changes in target distance without physical contact
Signal Converter Conditions the probe signal for downstream processing
Machinery Monitoring System Processes and displays the measured proximity information
Protection System Uses configured measurement limits for alarms or protective functions
DCS / Control System Provides plant-level monitoring and supervision

The probe supplies the initial measurement information, while the converter and monitoring system complete the signal chain needed for practical machinery protection and condition monitoring.


Industrial Applications

Application Typical Use
Steam Turbines Monitors shaft movement and proximity-related mechanical conditions
Gas Turbines Provides non-contact sensing for rotating machinery monitoring
Compressors Supports shaft displacement and position monitoring
Pumps Provides proximity information for rotating shaft monitoring
Generators Used in rotating equipment monitoring arrangements
Machinery Protection Systems Supplies proximity measurements for condition monitoring and protection

Installation and Maintenance

  1. Verify the sensor model
    Confirm that the PR6424/001-000 is appropriate for the intended monitoring channel and signal-conditioning arrangement.
  2. Check the conductive target
    Make sure the monitored shaft or target surface is suitable for eddy-current measurement.
  3. Set the correct probe position
    Install the sensor at the required distance from the monitored target according to the monitoring system configuration.
  4. Secure the probe firmly
    Prevent mechanical movement of the sensor caused by vibration or equipment operation.
  5. Inspect the sensing tip
    Check for contamination, deposits, scratches, or other physical damage.
  6. Inspect the sensor cable
    Look for cuts, crushing, excessive bending, or other conditions that could affect signal integrity.
  7. Verify signal-converter compatibility
    Confirm that the connected signal-conditioning electronics are suitable for the installed PR6424 sensor.
  8. Check cable routing
    Keep the sensor cable properly supported and avoid unnecessary mechanical stress.
  9. Verify the measurement signal
    Compare the observed output with expected operating conditions during commissioning or maintenance.
  10. Investigate abnormal readings systematically
    Check probe position, target condition, wiring, converter operation, and machine behavior before replacing the sensor.
  11. Inspect during planned machinery service
    Check sensor mounting, cable condition, and the sensing area whenever the associated machine is serviced.
  12. Perform a complete channel test
    After sensor replacement or adjustment, verify the sensor, converter, and monitoring system together before returning the machine to normal operation.

Compatible System Components

Component Role in the System
Epro Signal Converters Conditions the eddy-current sensor signal
Epro Machinery Monitoring Systems Processes and displays proximity measurements
Machinery Protection Systems Uses sensor measurements for configured alarms and protection functions
Rotating Machinery Shafts Provides the conductive target for non-contact measurement
Sensor Connection Components Provides the required connection between the probe and signal-conditioning electronics
DCS / Control Systems Provides plant-level supervision of machinery condition information

Recommended Related Models

Model Product Type Typical Relationship
Epro PR6424/001-000 16mm Eddy Current Sensor Specified sensor model
Epro PR6424/000-130 16mm Eddy Current Sensor Related PR6424 sensor model
Epro PR6423 Series Eddy Current Sensor Related proximity sensing family
Epro PR6422 Series Eddy Current Sensor Related non-contact displacement sensing family
Epro CON021 Series Eddy Current Signal Converter Related signal-conditioning hardware

Key Advantages

  • Provides non-contact measurement of conductive machinery targets.
  • Suitable for shaft displacement and proximity monitoring.
  • Supports continuous monitoring of rotating equipment.
  • Can be integrated with Epro signal-conditioning and monitoring equipment.
  • Useful for turbine, compressor, pump, and generator applications.
  • Avoids physical contact between the probe and monitored machine target.

Technical FAQs

What is the Epro PR6424/001-000 used for?

The PR6424/001-000 is an eddy-current proximity sensor used to detect changes in the distance between the sensor and a conductive target. In rotating machinery, it can be used for shaft position or displacement monitoring.

Does the PR6424/001-000 require a signal converter?

The sensor forms the sensing portion of a complete measurement channel and is normally used with appropriate signal-conditioning electronics before the measurement is connected to a monitoring system.

Why is the probe-to-target gap important?

Eddy-current measurement depends on the relationship between the probe and conductive target. An incorrect gap can alter the sensor response and affect the accuracy of the resulting machinery measurement.

What should be checked if the sensor output changes unexpectedly?

Inspect the probe position, mounting, target surface, cable connections, signal converter, and monitored machine condition. If the sensor has moved mechanically or the target condition has changed, the resulting signal can also change.



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