The Bently Nevada 330103-00-05-05-02-CN serves as the primary 330103 Proximity Probe utilized to execute vibration and displacement monitoring across 3300 XL Transducer System platforms. This passive inductive sensor monitors the physical gap variations between its unarmored 8 mm probe tip and a moving conductive metal surface, generating high-frequency radio frequency modulation loops to output accurate electrical signals without mechanical contact.
| Parameter | Specification |
|---|---|
| Model | 330103-00-05-05-02-CN |
| Brand | Bently Nevada |
| Origin | USA |
| Weight | 0.32 kg |
| Dimensions | 8 mm probe tip diameter, 5 mm case length, M10 x 1 metric thread |
| Operating Temp | -40 deg C to 120 deg C |
| Power Consumption | Passive sensor driven exclusively by external Proximitor loop supply |
| Measurement Range | 0-4 mm typical displacement |
| Frequency Response | Up to 15 kHz |
| Connector Type | ClickLoc miniature coaxial interface |
| System Compatibility | 3300 XL Proximity Transducer System |
The transducer requires strict matching to a verified target metallurgy to sustain linear eddy-current probe scaling accuracy across the measured spectrum. During mechanical commissioning, field engineers must execute a gap voltage validation protocol, adjusting the physical depth of the metric body until the quiescent DC level measures exactly -10 VDC at the geometric center of the linear calibration envelope. Proper physical alignment tracks real-time rotor dynamics under high velocity while filtering thermal errors. Cross-talk suppression is maintained via continuous internal coaxial shielding braid, mitigating electrical interference when multiple probe channels route through close-proximity machine penetrations.
Q: Can this 5 mm short-case probe be mounted directly through a machine casing without a bracket?
A: No, due to the 5 mm short-case geometry, a dedicated reverse-mount bracket or external housing assembly is required to secure the probe body and prevent structural collision with the shaft.
Q: How does a layer of non-conductive synthetic oil on the probe tip affect raw output calibration?
A: Because the probe tip material is non-conductive, the presence of clean, non-conductive lubrication oils does not interfere with the high-frequency eddy-current path or alter the physical gap measurements.
Q: What is the purpose of the -CN suffix on this specific proximity sensor module?
A: The -CN suffix indicates specialized regional industrial standard approvals for deployment within hazardous zone locations, enforcing strict safety loop parameter monitoring.
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