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Epro PR6423/011-000+CON011 8 mm Eddy Current Sensor

Epro PR6423/011-000+CON011 8 mm Eddy Current Sensor

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Brand:Epro PLC
Item No.:PR6423/011-000+CON011
Product Origin:Germany
Product Dimensions:Sensor Head Diameter: 8 mm
Product Weight:0.7 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 PR6423/011-000 + CON011 8 mm Eddy Current Sensor System is engineered for precise, non-contact monitoring of shaft displacement and vibration in industrial machinery. With the integrated CON011 signal conditioner, it delivers calibrated and stable outputs, making it ideal for predictive maintenance and continuous condition monitoring in turbines, compressors, pumps, and other critical rotating equipment.


Technical Specifications

SpecificationDetails
ModelPR6423/011-000 + CON011
BrandEpro (EPRO / Emerson)
System TypeEddy Current Displacement Measurement System
Sensor Head Diameter8 mm
Measurement PrincipleNon-contact eddy current
ApplicationShaft vibration, displacement, and position monitoring
Signal ConditionerCON011 included
Output Signal0–10 V / 4–20 mA via CON011
Operating TemperatureIndustrial-grade range (system-dependent)
Protection ClassIndustrial rugged design (IP65/IP66 system level)
Cable TypeShielded industrial cable
Mounting TypeThreaded probe installation
Weight0.7 kg (1.54 lb)


Applications

The Epro PR6423/011-000 + CON011 Eddy Current Sensor System is a complete industrial monitoring solution, combining a high-precision 8 mm sensor with the CON011 signal conditioner. It is designed for continuous, non-contact measurement of vibration and shaft displacement in critical rotating machinery.

Typical applications include:

  • Turbine and generator shaft vibration and displacement monitoring
  • Industrial pump and compressor condition analysis
  • Gearbox alignment and wear detection
  • Detection of misalignment, eccentricity, and bearing defects
  • Predictive maintenance systems in power generation and manufacturing
  • OEM machinery requiring fully integrated displacement sensing systems

This system ensures reliable data for early fault detection, reducing downtime and improving operational efficiency.


Advantages

  • Integrated Measurement System — Combines PR6423 sensor with CON011 signal conditioning
  • Non-Contact Technology — Reduces mechanical wear and extends operational life
  • High-Precision Output — Detects micro-level vibration and displacement changes
  • Industrial-Grade Durability — Resistant to vibration, temperature, and harsh environments
  • Conditioned Signal Output — CON011 provides stable 0–10 V or 4–20 mA outputs
  • Compact Sensor Head — 8 mm probe suitable for confined spaces
  • Easy Integration — Compatible with monitoring and predictive maintenance systems 


Technical FAQs

  1. What is the role of the CON011 module?
    It conditions the raw sensor signal to provide stable analog outputs for monitoring systems.
  2. Does the sensor make contact with the shaft?
    No, it uses non-contact eddy current measurement.
  3. Can it monitor high-speed machinery?
    Yes, it is suitable for high-RPM rotating equipment.
  4. What measurement range does it cover?
    Typically up to 8 mm displacement depending on system configuration.
  5. Is it suitable for continuous operation?
    Yes, it is designed for 24/7 industrial monitoring.
  6. Can it detect misalignment or eccentricity?
    Yes, displacement trends reveal mechanical faults.
  7. Is it compatible with predictive maintenance systems?
    Yes, it provides precise data for condition-based maintenance.
  8. What environments can it withstand?
    It is industrial-grade, resistant to vibration, dust, and wide temperature ranges.
  9. Does it integrate easily with monitoring systems?
    Yes, it provides conditioned outputs compatible with standard monitoring hardware.
  10. Can the sensor operate without the CON011 module?
    No, the CON011 is required for proper signal conditioning and output. 


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