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Epro PR6423/004-010 8 mm Eddy Current Sensor

Epro PR6423/004-010 8 mm Eddy Current Sensor

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Brand:Epro PLC
Item No.:PR6423/004-010
Product Origin:Germany
Product Dimensions:Sensor Head Diameter: 8 mm
Product Weight:0.1 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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Product Introduction

The Epro PR6423/004-010 8 mm Eddy Current Sensor is a precision industrial monitoring device engineered for rotating machinery protection and condition monitoring systems. It provides accurate non-contact measurement of shaft dynamics, enabling reliable real-time monitoring in demanding industrial environments.

Built with robust industrial-grade construction, the sensor ensures stable performance under continuous vibration, temperature variation, and electrical interference. Its compact probe design supports flexible installation in confined machinery layouts while maintaining high measurement accuracy.

This model is widely adopted in critical industries for improving equipment reliability, reducing unplanned downtime, and supporting predictive maintenance strategies.


Technical Specifications

ParameterSpecification
Product ModelPR6423/004-010
Product TypeEddy Current Sensor
ManufacturerEpro
Sensor Head Diameter8 mm
Measurement PrincipleEddy Current Technology
Measurement TypeNon-contact Displacement Monitoring
Signal OutputDynamic Monitoring Signal
Installation TypeThreaded Mount
Housing MaterialStainless Steel
Cable TypeShielded Industrial Cable
Operating EnvironmentIndustrial Duty
Weight0.1 kg (0.22 lb)


Industrial Applications

The Epro PR6423/004-010 Eddy Current Sensor is designed for high-precision non-contact measurement of shaft vibration, displacement, and position in rotating machinery. Its 8 mm probe head provides stable performance in compact installation environments, making it suitable for continuous monitoring of critical industrial assets.

Typical applications include:

  • Steam and gas turbine monitoring systems
  • Compressor shaft vibration and displacement tracking
  • Industrial pump condition monitoring
  • Generator rotor eccentricity detection
  • High-speed motor protection systems
  • Gearbox and bearing diagnostics
  • Petrochemical rotating machinery monitoring
  • Predictive maintenance systems in heavy industry

The sensor is widely used in environments where early fault detection and high measurement stability are essential.



Key Advantages

  • High-accuracy eddy current non-contact sensing
  • Stable dynamic response for rotating machinery monitoring
  • Compact 8 mm probe for restricted installation spaces
  • Strong immunity to industrial electromagnetic interference
  • Reliable long-term operation in harsh environments
  • Continuous-duty industrial monitoring capability
  • Low maintenance due to contact-free measurement
  • Seamless integration with protection and monitoring systems 


Technical FAQs

1. What is the measurement principle of PR6423/004-010?

It uses eddy current technology to measure shaft displacement and vibration without physical contact.

2. Is this sensor suitable for turbines and compressors?

Yes, it is commonly used in turbine and compressor monitoring systems.

3. Can it operate in continuous industrial conditions?

Yes, it is designed for 24/7 industrial monitoring applications.

4. Does it require physical contact with the shaft?

No, it performs fully non-contact measurement.

5. What industries typically use this sensor?

Power generation, oil & gas, petrochemical, and heavy manufacturing industries.

6. Is the sensor resistant to electrical noise?

Yes, it is designed for stable operation in electrically noisy environments.

7. Can it be used in predictive maintenance systems?

Yes, it is widely integrated into condition monitoring platforms.

8. What is the benefit of an 8 mm probe head?

It allows installation in tight mechanical spaces while maintaining accurate sensing performance.

9. What parameters can it measure?

It measures vibration, displacement, eccentricity, and shaft position.

10. Why is eddy current technology preferred?

Because it enables precise, real-time measurement without mechanical wear.


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