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The model 330105-02-12-05-02-01 is an 8mm eddy current proximity probe designed for high-precision measurement of shaft vibration, radial displacement, and axial position in rotating machinery systems.
It is a non-contact sensing device that continuously measures the gap between the probe tip and a conductive rotating shaft surface, providing real-time monitoring signals for machinery protection systems.
This model belongs to a standardized proximity transducer architecture widely used in industrial condition monitoring and predictive maintenance applications.
The configuration code defines probe length, case structure, cable assembly type, connector specification, and calibration version.
Brand: Industrial rotating machinery condition monitoring instrumentation manufacturer
This product line is widely used in:
This model belongs to the 3300 XL 8mm Proximity Probe Series.
The series is engineered for:
The probe operates using eddy current electromagnetic induction technology.
A high-frequency electromagnetic field is generated at the probe tip. When a conductive shaft rotates within this field, eddy currents are induced on the shaft surface.
These variations are converted into a proportional analog voltage signal.
This signal is used to measure:
It provides continuous real-time condition monitoring for rotating machinery health analysis.
| Parameter | Specification |
|---|---|
| Model | 330105-02-12-05-02-01 |
| Technology | Eddy current proximity sensing |
| Measurement Type | Shaft vibration / displacement |
| Probe Diameter | 8 mm |
| Measurement Range | 0 – 2 mm linear range |
| Operating Principle | Electromagnetic induction |
| Output Signal | Analog voltage output |
| Frequency Response | Up to 10 kHz (system dependent) |
| Operating Temperature | -52°C to +177°C |
| Cable Type | Shielded coaxial cable |
| Connector Type | Industrial miniature coaxial connector |
| Mounting Type | Threaded installation |
| Material | Stainless steel probe housing |
| Environmental Resistance | Oil, dust, vibration resistant |
| Dimensions | Approx. 130–160 mm length × 8 mm diameter |
| Weight (kg) | 0.33 – 0.42 kg |
This probe is widely used in rotating machinery monitoring systems, including:
It is particularly important in predictive maintenance systems where early detection of abnormal vibration prevents equipment failure.
| Parameter | Value |
|---|---|
| Model Number | 330105-02-12-05-02-01 |
| System Type | Proximity probe system |
| Sensing Method | Eddy current technology |
| Probe Size | 8 mm |
| Measurement Range | 0–2 mm |
| Signal Output | Analog voltage |
| Temperature Range | -52°C to +177°C |
| Cable Structure | Shielded coaxial cable |
| Signal Stability | High long-term stability |
| Installation Type | Threaded mounting |
| Probe Length | ~130–160 mm |
| Connector Type | Coaxial industrial connector |
| Dimensions | Cylindrical probe |
| Weight (kg) | 0.33–0.42 kg |
| Model |
|---|
| 330105-02-12-05-02 |
| 330105-02-12-05-02-00 |
| 330105-02-12-05-00-01 |
| 330105-02-10-05-02-01 |
| 330104-02-12-05-02-01 |
These models belong to the same 3300 XL 8mm probe family, with variations in probe length, cable configuration, and calibration settings.
| Model |
|---|
| 3300 XL 8mm Standard Proximity Probe Series |
| 3300 XL 11mm Extended Range Probe Series |
| 3300 XL Proximitor Sensor Module Series |
| 3300 XL Extension Cable Assembly Series |
| 3300 XL High Temperature Probe Series |
These are widely used in industrial machinery protection and rotating equipment condition monitoring systems.
A: It measures shaft vibration and displacement without physical contact.
A: Eddy current electromagnetic induction sensing technology.
A: No, it is a non-contact sensor.
A: Power generation, oil & gas, petrochemical, marine, and heavy industry.
A: Typically 0–2 mm linear displacement range.
A: Yes, up to approximately 177°C depending on configuration.
A: Analog voltage proportional to displacement.
A: Yes, it supports 24/7 industrial operation.
A: No, it is designed for long-term stability.
A: It enables early detection of mechanical faults before equipment failure occurs.