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330105-02-12-15-02-05 3300 XL 8 mm Reverse Mount Proximity Probe
This product belongs to a globally recognized industrial condition monitoring and machinery protection technology brand widely applied in vibration monitoring, shaft displacement measurement, and rotating equipment diagnostics.
3300 XL 8 mm Proximity Transducer System (Reverse Mount Type)
This series is designed for high-accuracy non-contact measurement of shaft vibration and position in critical rotating machinery such as turbines, compressors, pumps, and motors.
The 330105-02-12-15-02-05 is an 8 mm reverse mount proximity probe designed for industrial shaft vibration and displacement measurement.
It uses eddy current non-contact sensing technology, which detects changes in distance between the probe tip and conductive metal surfaces (typically rotating shafts).
The reverse mount design is used where installation space is restricted or where axial mounting is not feasible, making it suitable for compact machinery layouts.
This probe is normally part of a complete 3-component system:
Together, these components form a stable vibration monitoring chain used in predictive maintenance systems.
| Parameter | Specification |
|---|---|
| Model | 330105-02-12-15-02-05 |
| Series | 3300 XL 8 mm Reverse Mount System |
| Measurement Principle | Eddy current non-contact displacement |
| Probe Diameter | 8 mm |
| Mounting Type | Reverse mount configuration |
| Output Signal | Analog voltage proportional to vibration/displacement |
| Linear Range | ~2.0 mm (system dependent) |
| Operating Frequency | ~50 kHz excitation system |
| Cable Type | Integrated coaxial cable |
| Connector Type | ClickLoc miniature coaxial |
| Material | Stainless steel probe housing |
| Tip Material | PPS (Polyphenylene Sulfide) |
| Operating Temperature Range | -51°C to +177°C |
| Dimensions | ~8–10 cm probe body + cable assembly |
| System Length Options | Typically 0.5 m – 1.5 m configuration |
| Weight (kg) | 0.323 kg |
Verified reference value: 0.323 kg typical assembly weight.
This probe is widely used in industries requiring continuous monitoring of rotating machinery health.
Accurate detection of shaft vibration without physical contact.
Ideal for compact or restricted installation environments.
Stable operation up to 177°C.
Reliable output in high electromagnetic noise environments.
Stainless steel body ensures long-term reliability.
Works with matched extension cables and signal modules.
Designed for 24/7 critical machinery protection.
The probe operates using the eddy current displacement principle:
This enables real-time machinery condition monitoring.
A complete system includes:
| Model | Description | Key Parameter |
|---|---|---|
| 330105-02-12-10-12-00 | Reverse mount probe variant | Standard configuration |
| 330105-02-12-10-02-00 | OEM configuration probe | Industrial baseline model |
| 330105-02-12-05-02-00 | Standard reverse mount probe | General application |
| 330105-02-12-10-02-CN | Region-certified version | Compliance variant |
| 330105-02-12-05-12-05 | Extended cable version | Flexible installation length |
| Model | Category | Key Parameter |
|---|---|---|
| 3300 XL 8 mm Proximitor Sensor | Signal module | Converts probe signal to monitoring output |
| 3300 XL 11 mm Proximity Probe | Probe system | Extended measurement range |
| 3500/42M Vibration Monitor | Protection module | Multi-channel vibration monitoring |
| 3500/32 Relay Module | Control system | Alarm and shutdown logic |
| 1900/65 Condition Monitoring System | Diagnostic platform | Multi-asset monitoring capability |
A1: It measures shaft vibration and displacement without physical contact.
A2: Eddy current non-contact displacement sensing technology.
A3: It allows installation in restricted or inverted mechanical positions.
A4: Power generation, oil & gas, petrochemical, and heavy industry.
A5: From -51°C to +177°C.
A6: No, it operates fully non-contact.
A7: Analog voltage proportional to displacement or vibration.
A8: Approximately 0.323 kg.
A9: No, it is part of a full 3-component monitoring system.
A10: No wear and higher long-term measurement stability.