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This product belongs to a high-precision industrial vibration and displacement monitoring solution used for rotating machinery protection.
It is part of a well-established monitoring technology family designed for continuous measurement of shaft vibration, axial movement, and radial displacement in critical industrial equipment.
The system is commonly associated with the industrial monitoring ecosystem of Bently Nevada, which is widely recognized in turbine and compressor condition monitoring applications.
The model 330902-00-95-05-02-05 is part of the 3300 XL 8mm Proximity Probe Series.
This series is designed for:
The system typically includes:
This model is a precision eddy current proximity probe used for measuring the distance between the probe tip and a conductive rotating target, usually a shaft.
It provides real-time electrical signals proportional to shaft position and vibration, enabling predictive maintenance and machine protection strategies.
The probe is engineered for harsh industrial environments such as power generation, oil refining, and heavy mechanical processing plants.
The system operates using the eddy current displacement measurement principle:
This method ensures:
| Parameter | Specification |
|---|---|
| Model | 330902-00-95-05-02-05 |
| Measurement Type | Eddy current non-contact displacement probe |
| System Type | Proximity probe system (probe + cable + driver) |
| Measurement Range | 2 mm – 4 mm typical linear range |
| Sensitivity | ~7.87 V/mm (system dependent) |
| Output Signal | Voltage proportional to displacement |
| Operating Temperature | -35°C to +177°C |
| Frequency Response | Up to kHz-level dynamic response |
| Probe Material | Stainless steel sensing tip |
| Cable Type | High-temperature coaxial armored cable |
| Electrical Shielding | Integrated EMI protection |
| Installation Type | Fixed mounting in machinery housing |
| Dimensions (Probe) | 8 mm diameter × 50 mm length (approx.) |
| Cable Length | Standard industrial configurable length |
| Weight | 0.12 kg (approx.) |
The 330902-00-95-05-02-05 model is designed for high-reliability machinery monitoring applications where precision and stability are critical.
It is typically installed in proximity to rotating shafts to continuously monitor displacement changes caused by vibration, imbalance, misalignment, or bearing wear.
The system is engineered for long service life and stable signal output under extreme industrial conditions.
This probe system is widely used in:
It is especially valuable in systems requiring 24/7 condition monitoring and early fault detection.
| Model | Description | Measurement Type | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| 330901-00-95-05-02-05 | Standard proximity probe variant | Eddy current displacement | 8 × 50 | 0.11 |
| 330903-00-95-05-02-05 | Extended sensitivity version | Eddy current displacement | 8 × 60 | 0.13 |
| 330904-00-95-05-02-05 | High-temperature reinforced model | Eddy current displacement | 8 × 55 | 0.14 |
| 330905-00-95-05-02-05 | Heavy-duty industrial probe | Eddy current displacement | 8 × 65 | 0.15 |
| 330906-00-95-05-02-05 | Compact installation version | Eddy current displacement | 6 × 45 | 0.10 |
| Model | Function | Application | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| 3500/42M | Dual channel vibration monitor | Shaft vibration protection | 170 × 110 × 45 | 0.50 |
| 3500/40M | Proximitor signal processing module | Displacement monitoring | 160 × 100 × 40 | 0.45 |
| 3500/22M | Rack interface module | System integration unit | 150 × 100 × 35 | 0.40 |
| 3500/92 | Communication gateway module | Data transmission | 180 × 120 × 50 | 0.60 |
| 3500/15 | Power supply module | Industrial system power support | 200 × 130 × 60 | 0.75 |
The model 330902-00-95-05-02-05 is a high-precision proximity probe designed for continuous displacement monitoring in rotating machinery.
It delivers stable, non-contact measurement performance under harsh industrial conditions and is widely used in critical equipment protection systems.
Its durability, accuracy, and compatibility with industrial monitoring architectures make it a key component in predictive maintenance and machinery reliability programs.