Bently Nevada 330104-00-08-50-02-00 3300 XL 8 mm Eddy Current Proximity Probe The Bently Nevada 330104-00-08-50-02-00, also cataloged as the 330104...
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Bently Nevada 330104-00-08-50-02-00 3300 XL 8 mm Eddy Current Proximity Probe
The Bently Nevada 330104-00-08-50-02-00, also cataloged as the 330104 3300 XL 8 mm Eddy Current Proximity Probe, operates as a dedicated hardware component for shaft displacement and vibration measurement within the 3300 XL Proximity Transducer System.
Suffix Breakdown & Model Matrix
Option Code
Specification
Base Model
330104 - 3300 XL 8 mm Eddy Current Proximity Probe
Thread Configuration
M10 x 1 metric threaded case
Unthreaded Length
00 - 0 mm unthreaded case section
Case Length
08 - 80 mm overall case length
Total Length
50 - 5.0 meters system length
Connector Option
02 - Miniature coaxial ClickLoc connector with standard cable
Agency Approval
00 - No agency approval option
Hardware Specifications
Parameter
Specification
Model
330104-00-08-50-02-00
Brand
Bently Nevada
Product Type
3300 XL 8 mm Eddy Current Proximity Probe
Origin
USA
Weight
0.2kg
Dimensions
80 mm case length, 8 mm probe tip diameter
Operating Temp
-35 deg C to +177 deg C
Power Consumption
Powered by compatible 3300 XL Proximity Transducer System driver
Measurement Principle
Eddy current non-contact displacement measurement
Linear Range
2.0 mm (80 mils)
Scale Factor
7.87 V/mm (200 mV/mil) nominal
Target Material
AISI 4140 steel calibration target
Linear Range Start
Approximately 0.25 mm (10 mils) from target
Linear Range End
Approximately 2.3 mm (90 mils) from target
Probe Tip Diameter
8 mm
Thread Size
M10 x 1 metric
System Cable Length
5.0 meters
Connector Type
Gold-plated miniature coaxial ClickLoc connector
Cable Protection
Standard unarmored cable
Cable Pull Strength
Up to 330 N (75 lbf) using CableLoc design
Humidity Limit
100% condensing, non-submersible
Interchangeability
Compatible with other 3300 XL 8 mm system components without recalibration
Eddy Current Measurement and Rotor Dynamics Characteristics
The 330104-00-08-50-02-00 probe uses eddy-current sensing technology to convert shaft displacement into electrical signals. Therefore, the connected Proximity Transducer System can process radial vibration, axial position, and mechanical gap measurements.
The probe maintains a nominal 7.87 V/mm scale factor across the calibrated measurement range. In addition, the system requires correct gap voltage validation, where a typical -10 VDC target condition confirms proper probe positioning and driver operation.
The 3300 XL 8 mm architecture supports rotor dynamics monitoring by providing stable displacement feedback for rotating machinery analysis. Furthermore, the miniature coaxial ClickLoc connection reduces installation variation and maintains signal integrity between the probe and extension cable.
Frequently Asked Questions
Q: What measurement principle does the Bently Nevada 330104-00-08-50-02-00 use? A: The probe uses eddy-current technology to measure shaft displacement without physical contact with the rotating target.
Q: Does the probe require recalibration when replacing another 3300 XL 8 mm probe? A: The probe is designed for interchangeability within the 3300 XL 8 mm system and does not require recalibration when compatible system components are used.
Q: What cable and connector configuration does this model include? A: The model includes a 5.0 meter standard cable with a miniature coaxial ClickLoc connector and unarmored cable construction.
Field Installation Guidelines
Install the probe with the M10 x 1 threaded section securely mounted in the machine housing while maintaining the specified sensing gap between the probe tip and shaft target.
Route the coaxial cable away from high-current power conductors, variable frequency drive output cables, and strong electromagnetic interference sources. Maintain proper cable support to prevent mechanical stress at the probe connector.
Connect the probe to the compatible 3300 XL Proximity Transducer System driver. Verify the gap voltage output before operation and confirm the expected -10 VDC target condition during calibration checks.
Ensure the probe tip remains free from contamination, mechanical impact, and conductive debris that may affect eddy-current measurement accuracy.