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The 330104-12-17-10-01-05 is an 8 mm eddy current proximity probe designed for high-accuracy measurement of shaft vibration, axial displacement, and rotor position in rotating machinery.
It is part of the 3300 XL 8 mm proximity transducer system, widely used in machinery protection and condition monitoring applications for critical rotating equipment in industrial environments.
This probe provides stable, non-contact measurement even under harsh operating conditions such as high temperature, vibration, oil contamination, and dust exposure, making it suitable for turbines, compressors, pumps, and generators.
Brand: Bently Nevada
A globally recognized manufacturer specializing in machinery protection systems, vibration monitoring, and predictive maintenance solutions for power generation, oil & gas, petrochemical, and heavy industrial sectors.
Series: 3300 XL 8 mm Proximity Transducer System
Key features:
Typical engineering characteristics:
| Parameter | Specification |
|---|---|
| Model | 330104-12-17-10-01-05 |
| Measurement Principle | Eddy current proximity sensing |
| Probe Diameter | 8 mm |
| System Series | 3300 XL 8 mm |
| Unthreaded Length | 12 mm |
| Case Length | 170 mm |
| Cable Length | 1.0 m system configuration (typical for 01 option) |
| Output Signal | Linear voltage proportional to gap |
| Operating Temperature | -40°C to +125°C (typical industrial range) |
| Housing Material | Stainless steel |
| Probe Tip Material | PPS engineering polymer |
| Cable Type | Coaxial shielded cable |
| Connector Type | ClickLoc miniature coaxial |
| Environmental Protection | Oil, dust, vibration resistant industrial sealing |
| Weight | ~0.20–0.33 kg (assembly dependent, typical 8 mm probe range) |
| Dimensions | ~170 mm body length configuration (variant dependent) |
| Installation Type | Threaded mounting |
| Application Mode | Radial / axial shaft monitoring |
The 330104-12-17-10-01-05 probe is widely used in rotating machinery condition monitoring systems, including:
It is especially valuable for detecting early mechanical faults such as imbalance, misalignment, shaft looseness, and rotor instability before failure occurs.
| Model | Type | Key Parameter |
|---|---|---|
| 330104-10-17-10-01-05 | Standard variant | 10 mm unthreaded length |
| 330104-12-17-10-01-00 | Non-05 version | 170 mm case |
| 330104-12-19-10-01-05 | Extended case | 190 mm variant |
| 330104-08-17-10-01-05 | Compact probe | 8 mm shortened body |
| 330105-12-17-10-01-05 | High sensitivity | Enhanced resolution model |
| Model | Type | Key Specification |
|---|---|---|
| 330104-12-17-10-01-05 | Proximity Probe | 8 mm eddy current probe |
| 330780-90-00 | Proximitor Sensor | Signal conditioning module |
| 330130-080-00-00 | Extension Cable | Standard probe cable |
| 3500/42M | Vibration Monitor Module | Multi-channel machinery monitoring system |
| 3500/15 | Power Supply Module | Rack system power distribution unit |
Q1: What is the main function of this probe?
A1: It measures shaft vibration and displacement using eddy current non-contact sensing technology.
Q2: What equipment is it used for?
A2: It is used in turbines, compressors, pumps, and generators.
Q3: What does the “05” suffix mean?
A3: It typically indicates a configuration or option variant within the probe build code.
Q4: Can it operate continuously?
A4: Yes, it is designed for continuous 24/7 industrial monitoring.
Q5: What is the measurement principle?
A5: It uses eddy current technology to detect distance changes to conductive metal surfaces.
Q6: Is it suitable for harsh environments?
A6: Yes, it resists vibration, oil contamination, dust, and high temperature.
Q7: What signal does it output?
A7: It outputs a linear voltage proportional to shaft displacement.
Q8: Does it require calibration?
A8: It is factory calibrated and typically requires no field calibration.
Q9: What materials can it measure?
A9: It is optimized for conductive metallic targets such as steel shafts.
Q10: What maintenance is required?
A10: Only periodic inspection of cable condition and mechanical installation is needed.