Epro PR6423/019-030+CON021 8 mm Eddy Current Sensor
Epro PR6423/019-030+CON021 8 mm Eddy Current Sensor
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Brand:Epro PLC Item No.:PR6423/019-030+CON021 Product Origin:Germany Product Dimensions:Sensor Head Diameter: 8 mm Product Weight:0.22 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
The Epro PR6423/019-030 + CON021 8 mm Eddy Current Sensor System is a precision non-contact measurement solution designed for critical rotating machinery applications. It provides reliable monitoring of shaft vibration and displacement, enabling early fault detection and improved equipment reliability. With robust industrial construction and integrated signal conversion, it is widely used in power generation and heavy industrial environments where continuous monitoring is essential.
Technical Specifications
Category
Specification
Product Series
EPRO PR6423 + CON021
Model
PR6423/019-030 + CON021
Sensor Type
Eddy Current Displacement Sensor System
Sensor Head Diameter
8 mm
Measurement Principle
Non-contact eddy current
Linear Measurement Range
2 mm
Initial Air Gap
0.5 mm
Sensitivity
8 V/mm ± 5%
Frequency Response
Up to ~20 kHz (system dependent)
Signal Converter
CON021 included
Operating Temperature
-35 °C to +180 °C (sensor dependent)
Protection Class
IP66 (sensor)
Target Material
Ferromagnetic steel (e.g., 42CrMo4)
Minimum Shaft Diameter
≥ 25 mm
Connector Type
Industrial LEMO-type interface
Weight
0.22 kg
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Applications
• Turbomachinery shaft vibration monitoring
Used for continuous non-contact measurement of shaft displacement, vibration, and eccentricity in turbines, compressors, and high-speed rotating equipment.
• Power generation condition monitoring systems
Applied in steam, gas, and hydro turbine units for real-time mechanical stability and fault detection.
• Oil & gas rotating machinery protection
Commonly installed in compressors and pumps operating under high temperature and harsh industrial conditions.
• Industrial predictive maintenance systems
Supports early detection of imbalance, misalignment, and bearing wear through continuous vibration tracking.
• Heavy process industry equipment monitoring
Used in refinery, steel, and chemical plants where long-term operational reliability is critical.
• Rotor dynamics analysis systems
Provides high-accuracy non-contact measurement for dynamic shaft behavior analysis in engineering applications.
Key Advantages
• High-precision eddy current sensing technology
Delivers accurate displacement and vibration measurement without physical contact or mechanical wear.
• Integrated probe and CON021 signal converter
Ensures stable signal conditioning and standardized output for monitoring systems.
• Strong performance in harsh environments
Designed to operate reliably under high temperature, vibration, and contamination conditions.
• Wide dynamic frequency response
Supports high-speed rotating machinery diagnostics and transient vibration analysis.
• Stable industrial signal output
CON021 module provides consistent conversion for protection and monitoring systems.
• Proven compatibility with turbomachinery standards
Widely used in API 670-compliant condition monitoring architectures.
Technical FAQs
1. What does the PR6423/019-030 + CON021 system measure?
It measures shaft vibration, displacement, eccentricity, and position.
2. What sensing technology is used?
It uses non-contact eddy current displacement measurement.
3. What is the probe size?
The sensor head diameter is 8 mm.
4. What is the typical measurement range?
Typically up to 2 mm linear displacement depending on configuration.
5. What environments is it designed for?
It is used in turbines, compressors, pumps, and heavy industrial machinery.
6. Can it operate under high temperature conditions?
Yes, it is designed for harsh industrial thermal environments.
7. Does it require physical contact with the shaft?
No, it is a fully non-contact measurement system.
8. What is the role of CON021?
It converts sensor signals into standardized industrial output signals.
9. Is it used in predictive maintenance systems?
Yes, it is widely applied in condition monitoring solutions.
10. Can it be integrated into protection systems?
Yes, it is commonly used in machinery protection architectures.