Product Overview
The 330102-00-96-05-02-05 3300 XL 8 mm proximity probe from Bently Nevada is designed for precision shaft vibration and position measurement in rotating machinery protection systems. The probe is widely used in turbines, compressors, pumps, generators, and large industrial motors operating in refinery, petrochemical, power generation, and mining environments where continuous condition monitoring is required to prevent mechanical failure and unplanned downtime.
This 8 mm proximity probe is part of the 3300 XL transducer system and provides stable non-contact measurement of shaft displacement and vibration. It supports high accuracy signal transmission through its miniature coaxial ClickLoc connector system and is engineered for long-term stability in electrically noisy industrial environments. The configuration includes CSA, ATEX, and IECEx approvals, making it suitable for hazardous area installations where compliance and operational reliability are mandatory.
Suffix Breakdown
| Code Segment |
Description |
| 330102 |
3300 XL 8 mm Proximity Probe series |
| 00 |
Unthreaded length 0 in |
| 96 |
Overall case length 9.6 in |
| 05 |
Total cable length 0.5 m (1.6 ft) |
| 02 |
Miniature coaxial ClickLoc connector, standard cable |
| 05 |
CSA, ATEX, IECEx approvals |
Measurement Design and System Configuration
The 3300 XL 8 mm probe operates as part of a proximity transducer system that includes probe, extension cable, and proximitor sensor. It generates an eddy current-based signal used to measure shaft vibration, axial position, and radial displacement without physical contact.
The ClickLoc connector system ensures stable electrical coupling and reduces installation errors during field replacement. The probe is designed for high resistance to oil contamination, humidity, vibration stress, and electromagnetic interference commonly present in turbine halls and compressor stations.
Its standardized geometry allows integration into existing Bently Nevada 3300 XL monitoring systems without modification to signal conditioning hardware or calibration parameters.
Technical Specifications
| Parameter |
Specification |
| Model |
330102-00-96-05-02-05 |
| Brand |
Bently Nevada |
| Product Type |
3300 XL 8 mm Proximity Probe |
| System Type |
Eddy current proximity transducer |
| Probe Diameter |
8 mm |
| Origin |
U.S.A |
| Overall Case Length |
9.6 in |
| Cable Length |
0.5 m (1.6 ft) |
| Connector Type |
Miniature coaxial ClickLoc |
| Agency Approvals |
CSA, ATEX, IECEx |
| Operating Temp |
-51 to +177 deg C (system dependent) |
| Storage Temp |
-51 to +177 deg C |
| Weight |
0.3 kg (typical probe assembly) |
| Power Consumption |
Passive sensor, no power required |
| Application |
Turbines, compressors, pumps, motors |
Frequently Asked Questions
Is the 330102 probe compatible with existing 3300 XL systems?
Yes. The probe is fully compatible with Bently Nevada 3300 XL proximity transducer systems without requiring hardware modification.
What is the function of the ClickLoc connector?
The ClickLoc connector provides secure locking, stable signal transmission, and reduced installation errors in field environments.
Can this probe be used in hazardous areas?
Yes. The unit carries CSA, ATEX, and IECEx approvals for use in certified hazardous industrial zones.
What machinery types typically use this probe?
It is commonly installed on turbines, compressors, pumps, generators, and other rotating equipment requiring continuous vibration monitoring.
Installation and Engineering Guidelines
Install the probe using rigid mounting structures to ensure stable shaft alignment and accurate gap measurement. Avoid mounting on flexible or vibrating brackets that may distort signal output.
Maintain correct probe gap calibration during commissioning using system-specific proximitor settings. Incorrect gap adjustment may result in unstable vibration readings or false alarm conditions.
Use shielded extension cables and route wiring away from high-voltage motor cables and VFD outputs to minimize electromagnetic interference in the measurement circuit.
For high-temperature turbine applications, ensure proper thermal spacing and avoid direct exposure to radiant heat sources to preserve long-term probe stability and accuracy.