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Epro PR6424/115-000 16 mm Eddy Current Sensor

Epro PR6424/115-000 16 mm Eddy Current Sensor

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Brand:Epro PLC
Item No.:PR6424/115-000
Product Origin:Germany
Product Dimensions:Sensor Head Diameter: 16 mm
Product Weight:0.2 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 PR6424/115-000 is a 16mm eddy current proximity sensor used for precise shaft displacement monitoring in critical rotating machinery. It belongs to the PR6424 series and is widely applied in power generation, oil & gas, and heavy industry where continuous and reliable measurement is essential for machinery protection and predictive maintenance.

Using non-contact electromagnetic induction technology, the sensor delivers accurate real-time displacement signals without mechanical wear, making it ideal for long-term deployment in turbines, compressors, and other high-value rotating systems.


Technical Specifications

ParameterSpecification
Product ModelPR6424/115-000
Sensor TypeEddy current non-contact probe
Sensor Head Diameter16 mm
Measurement TypeShaft displacement, vibration, position
Operating PrincipleElectromagnetic induction
Shaft Compatibility≥80 mm diameter
Output TypeRequires external CON signal converter
Operating Temperature-35°C to +180°C
Shock & Vibration ResistanceUp to 5g @ 60 Hz
Linearity±1.5%
Long-term Drift<0.3%
Target MaterialFerromagnetic steel
Weight0.2 kg / 0.44 lb


Applications

The Epro PR6424/115-000 16mm Eddy Current Sensor is designed for high-precision, non-contact measurement of shaft displacement, vibration, and position in critical rotating machinery. It is widely used in industrial condition monitoring systems that demand long-term stability, high accuracy, and robust performance in harsh operating environments.

Typical applications include:

  • Steam, gas, and hydro turbines
  • Centrifugal and axial compressors
  • Industrial pump systems and feedwater pumps
  • Large industrial fans and blowers
  • Turbomachinery radial and axial vibration monitoring
  • Shaft eccentricity and position measurement systems
  • Speed and keyphasor-related monitoring applications

It is commonly integrated into API 670-compliant protection and monitoring systems for continuous machinery health evaluation.


Advantages

  • Non-contact eddy current sensing eliminates mechanical wear and improves service life
  • High measurement stability for continuous industrial monitoring
  • Strong resistance to vibration, temperature variation, and harsh environments
  • High linearity ensures reliable diagnostic-grade output
  • Compatible with EPRO CON series signal conditioning modules
  • Suitable for both static and dynamic shaft displacement measurement
  • Optimized for large shaft turbomachinery applications (≥80 mm diameter)
  • Proven reliability in power generation and heavy industrial environments 



Technical FAQs

Q1: What does the PR6424/115-000 measure?
It measures shaft displacement, vibration, eccentricity, and axial/radial position.

Q2: What technology does it use?
It uses eddy current non-contact sensing technology.

Q3: Does it require physical contact with the shaft?
No, it operates without contact, preventing wear and mechanical damage.

Q4: What systems is it compatible with?
It is typically used with EPRO CON series signal converters such as CON021, CON031, or CON041.

Q5: What shaft size is required?
Generally ≥80 mm diameter for stable and accurate measurement.

Q6: Can it operate in high-temperature environments?
Yes, it is designed for turbine-grade high-temperature conditions.

Q7: Is it suitable for continuous monitoring?
Yes, it supports 24/7 condition monitoring systems.

Q8: Does it measure both static and dynamic signals?
Yes, it measures both steady position and dynamic vibration.

Q9: Is it resistant to industrial vibration?
Yes, it is engineered for harsh mechanical environments.

Q10: Does it require frequent calibration?
No, it has long-term stability with minimal drift.


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