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The Epro PR6423/01M-030 is an 8 mm eddy current sensor used for non-contact monitoring of shaft movement in rotating machinery. It detects changes in the relative position between the sensor tip and a conductive target, allowing mechanical movement to be measured without placing the sensing element in contact with the rotating component.
The sensor is typically installed near a shaft or rotor at a defined sensing position. During machine operation, changes in the target-to-sensor distance produce corresponding changes in the eddy current response. The resulting signal can be passed to compatible signal-conditioning equipment for further processing.
Applications include monitoring radial shaft movement, axial displacement, and vibration-related motion on turbines, compressors, generators, pumps, motors, and other rotating equipment. The sensor can form part of a machinery protection or condition-monitoring channel where continuous shaft observation is required.
The probe installation should be treated as part of the overall measurement system. Sensor alignment, target surface condition, mounting rigidity, cable connections, and compatibility with the associated signal converter all affect the quality of the final measurement.
| Parameter | Specification |
|---|---|
| Manufacturer | Epro |
| Model | PR6423/01M-030 |
| Product Family | PR6423 Series |
| Product Type | 8mm Eddy Current Sensor |
| Primary Function | Non-contact displacement measurement |
| System Role | Rotating machinery displacement and vibration sensing |
| Typical Application | Turbine, compressor, generator, pump and motor monitoring |
| Sensor Head Diameter | 8 mm |
| Weight | 0.1 kg |
The PR6423/01M-030 generates an electromagnetic sensing field at the probe tip. When a conductive shaft or target enters this field, eddy currents are induced in the target. The electrical response changes as the distance between the sensor and target changes.
This changing response is converted by the associated measurement electronics into a usable displacement signal. A monitoring system can then evaluate the signal for shaft position, movement, or vibration-related behavior.
Conductive Shaft / Target → PR6423/01M-030 Sensor → Signal Conditioning → Machinery Monitoring System → Alarm / Protection
The sensing gap is a critical part of the measurement arrangement. A mechanically loose probe, incorrect alignment, unsuitable target surface, or damaged cable can alter the sensor response and produce misleading monitoring values.
The PR6423/01M-030 forms the field sensing stage of an Epro eddy current monitoring channel. It detects physical movement at the rotating machine and sends the corresponding sensor response to compatible signal-conditioning electronics.
Rotating Machinery → PR6423/01M-030 → Signal Converter / Conditioning → Monitoring System → Alarm / Protection
| System Element | Function |
|---|---|
| Rotating Shaft / Rotor | Provides the conductive target being monitored |
| PR6423/01M-030 | Detects changes in target-to-sensor distance |
| Signal Converter | Conditions the sensor response for downstream equipment |
| Monitoring System | Evaluates displacement and vibration-related information |
| Alarm System | Indicates configured abnormal machine conditions |
| Protection System | Initiates configured protective actions when required |
The sensor itself performs the physical detection; final measurement interpretation and protection decisions are handled by the associated electronics and monitoring system.
| Application | Typical Use |
|---|---|
| Steam Turbine Monitoring | Shaft position and vibration measurement |
| Gas Turbine Monitoring | Rotor movement and machinery condition monitoring |
| Compressor Protection | Shaft displacement monitoring |
| Generator Monitoring | Rotor position and movement observation |
| Pump Condition Monitoring | Continuous shaft movement measurement |
| Motor Monitoring | Detection of abnormal shaft movement |
| Turboexpander Systems | High-speed rotating machinery monitoring |
| Process Plant Machinery | Monitoring of critical rotating equipment |
| Component | Function |
|---|---|
| Epro PR6423 Series Sensor | Provides non-contact displacement measurement |
| Epro Signal Converter | Conditions the eddy current sensor response |
| Epro CON021 | Eddy current signal-conditioning interface |
| Epro CON031 | Eddy current signal-conditioning interface |
| Proximity Sensor Cable | Transfers the sensor signal to associated electronics |
| Machinery Monitoring System | Processes displacement and vibration-related information |
| Alarm / Protection System | Provides configured machine-condition response |
| Probe Mounting Hardware | Maintains sensor position relative to the monitored target |
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| Epro PR6423 Series | Eddy Current Sensor Series | Shaft displacement measurement |
| Epro PR6423/01M-010 | 8mm Eddy Current Sensor | Non-contact shaft movement monitoring |
| Epro PR6423/01M-010+CON021 | Eddy Current Sensor + Signal Converter | Complete measurement channel |
| Epro PR6423/01M Series | 8mm Eddy Current Sensor Family | Rotating machinery monitoring |
| Epro CON021 | Eddy Current Signal Converter | Sensor signal conditioning |
| Epro CON031 | Eddy Current Signal Converter | Sensor signal conditioning |
| Epro PR6424 Series | Eddy Current Sensor Series | Machinery displacement monitoring |
| Epro Machinery Monitoring Components | Monitoring Interface Equipment | Machinery condition monitoring |
The probe should be mounted securely and aligned with the intended conductive target. The operating gap must be established according to the requirements of the complete sensor and signal-conditioning system rather than inferred from the sensor head diameter.
The sensor can be used in arrangements that monitor relative shaft movement, but the actual measurement direction depends on how the probe is installed and what mechanical movement the monitoring system is intended to observe.
The signal converter conditions the electrical response generated by the eddy current sensor so that compatible monitoring equipment can process the measurement. The sensor and converter therefore form complementary stages of the measurement channel.
Probe movement, an incorrect sensing gap, target-surface changes, damaged cabling, poor connections, or problems in the associated signal-conditioning electronics can all affect the measurement. These parts should be checked as a complete signal chain during troubleshooting