Brand:Epro PLC Item No.:PR6423/00H-030 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
The Epro PR6423/00H-030 8 mm Eddy Current Sensor is a precision-engineered industrial monitoring device developed for advanced rotating machinery applications. Utilizing reliable eddy current sensing technology, it delivers accurate non-contact measurement of shaft vibration and displacement for critical equipment protection systems.
Its compact 8 mm sensor head allows flexible installation while maintaining excellent signal stability under harsh operating conditions. Designed for industrial durability, the sensor operates reliably in environments exposed to vibration, oil contamination, temperature variation, and electrical interference.
Widely deployed in turbine monitoring, compressor protection, and predictive maintenance systems, this model helps improve machinery reliability, optimize maintenance schedules, and minimize unplanned downtime.
Technical Specifications
Parameter
Specification
Product Model
PR6423/00H-030
Product Type
Eddy Current Sensor
Brand
Epro
Sensor Head Diameter
8 mm
Measurement Principle
Non-contact eddy current sensing
Application
Shaft vibration and displacement monitoring
Installation Type
Industrial fixed mounting
Environmental Resistance
Oil, dust, and vibration resistant
Weight
0.1 kg (0.22 lb)
Industrial Applications
The Epro PR6423/00H-030 8 mm Eddy Current Sensor is specifically engineered for accurate non-contact monitoring of rotating machinery operating in demanding industrial environments. It provides dependable vibration and displacement measurement for critical assets where continuous monitoring and machinery protection are essential.
Typical applications include:
Steam turbine shaft vibration monitoring
Gas turbine displacement measurement
Compressor rotor position monitoring
Industrial pump shaft movement detection
Generator vibration analysis systems
Bearing condition monitoring applications
Petrochemical rotating machinery diagnostics
Power generation machinery protection systems
This sensor is widely utilized in predictive maintenance and condition monitoring systems to improve machinery reliability and reduce unexpected operational interruptions.
Product Advantages
Advanced 8 mm eddy current sensing technology
Stable non-contact measurement performance
Compact probe structure for easy installation
Excellent resistance to vibration, oil, and contamination
Fast signal response for dynamic machinery monitoring
Reliable performance under continuous industrial operation
Strong immunity to industrial EMI interference
Durable design for long-term service life
Technical FAQs
1. What is the primary function of this sensor?
It measures shaft vibration, displacement, and position using eddy current sensing technology without physical contact.
2. What does the 8 mm specification refer to?
It refers to the sensor head diameter used for sensing capability and installation compatibility.
3. What machinery commonly uses this sensor?
It is commonly installed on turbines, compressors, pumps, generators, and other rotating industrial equipment.
4. Is the sensor suitable for continuous-duty applications?
Yes, it is designed for long-term continuous industrial monitoring.
5. Does the sensor touch the monitored surface?
No, it performs measurement using non-contact eddy current technology.
6. Can it be integrated into machinery protection systems?
Yes, it is widely used in predictive maintenance and machinery protection platforms.
7. Is it resistant to industrial electrical noise?
Yes, it is engineered for stable operation in EMI-intensive environments.
8. Which industries typically use this product?
Power generation, petrochemical, oil & gas, mining, and heavy manufacturing industries.
9. What types of measurements can it perform?
It can measure shaft vibration, radial displacement, axial movement, and dynamic position changes.
10. Why is non-contact sensing beneficial?
It prevents mechanical wear while ensuring highly accurate and reliable long-term monitoring.