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Epro PR9600/014-000 Eddy Current Sensor

Epro PR9600/014-000 Eddy Current Sensor

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Brand:Epro PLC
Item No.:PR9600/014-000
Product Origin:Germany
Product Dimensions:Sensor Head Diameter: Optional
Product Weight:Shipping Weight: 3 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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Introduction

The Epro PR9600/014-000 Eddy Current Sensor is an industrial-grade proximity measurement device used in critical machinery protection systems. It enables accurate detection of shaft displacement and vibration, helping operators identify early signs of imbalance, misalignment, or bearing degradation.

Its rugged design and stable signal characteristics make it suitable for power generation plants, oil & gas facilities, and heavy industrial environments where precision monitoring is essential for operational safety.


Technical Specifications

ParameterSpecification
Product ModelPR9600/014-000
BrandEpro
Sensor TypeEddy Current Sensor
Measurement MethodNon-contact eddy current displacement sensing
Sensor Head DiameterOptional
Shipping Weight3 kg (6.61 lb)
ApplicationVibration and shaft displacement monitoring
Operating EnvironmentIndustrial rotating machinery systems
System CompatibilityEpro monitoring systems
Installation TypeFixed industrial mounting

Recommended Related Models

  • PR9600/011-000
  • PR9670/000-000
  • PR6423/000-101
  • PR6424/014-111
  • PR6426/010-141

Popular Related Models

  • PR9600/014-000
  • PR9600/011-000
  • PR9670/001-000
  • PR6423/016-000
  • PR6424/001-000 


Applications

The Epro PR9600/014-000 Eddy Current Sensor is designed for high-precision non-contact measurement of shaft displacement, vibration, and position in industrial rotating machinery. It is commonly used in turbomachinery protection and condition monitoring systems where reliability and signal stability are critical.

  • Steam turbine shaft vibration monitoring
  • Gas turbine rotor displacement and eccentricity measurement
  • Compressor radial and axial position monitoring
  • Pump shaft alignment and bearing condition diagnostics
  • Industrial gearbox vibration monitoring
  • Power generation predictive maintenance systems
  • Heavy industrial rotating equipment condition monitoring


Advantages

This sensor provides robust performance for demanding industrial environments where continuous monitoring is required.

  • High-precision eddy current displacement measurement
  • Stable signal behavior under high vibration conditions
  • Strong compatibility with turbomachinery monitoring systems
  • High resistance to electromagnetic interference (EMI)
  • Long-term measurement stability with low drift characteristics
  • Suitable for harsh industrial operating environments
  • Designed for continuous 24/7 monitoring applications 


Technical FAQs (10 Questions)

Q1: What measurement principle does this sensor use?
It uses eddy current technology to measure displacement without physical contact.

Q2: What is the main application of this sensor?
It is used for shaft vibration and displacement monitoring in rotating machinery.

Q3: Does this sensor require contact with the target surface?
No, it is a non-contact measurement system.

Q4: What kind of machinery is it typically used on?
It is used on turbines, compressors, pumps, and other rotating equipment.

Q5: What type of output does it provide?
It provides analog displacement-related signals through a compatible system.

Q6: Can it operate in harsh environments?
Yes, it is designed for industrial environments with vibration and EMI.

Q7: What is the sensor head configuration?
The sensor head diameter is optional depending on configuration.

Q8: Is it suitable for continuous monitoring?
Yes, it is designed for continuous industrial condition monitoring.

Q9: Does it require frequent calibration?
No, it offers stable long-term performance with minimal recalibration.

Q10: What systems is it commonly integrated with?
It is typically used with Epro monitoring and protection systems.


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