Products Description
The Bently Nevada 330104-00-06-10-02-00 Proximity Probe is a high-precision, non-contact displacement sensor from the trusted 3300 XL Series. It is designed to measure shaft vibration, axial position, and radial displacement in rotating machinery. Using eddy-current sensing technology, the probe delivers stable and repeatable measurements even under demanding industrial conditions.
This model is commonly used as part of a complete proximity transducer system, working in conjunction with compatible extension cables and proximitor modules. Its robust construction and proven performance make it suitable for continuous monitoring and machinery protection applications.
Products Description
Thank you for your interest in our products. For more product information, technical support, or business cooperation, please feel free to contact us through the following methods. We will provide you with professional support as soon as possible.
Our address
32D, Hubin South Road No.388, Xiamen 361009, Fujian, China
Phone Number

Technical Specifications

Product Type: Proximity Probe
Series: Bently Nevada 3300 XL
Model Number: 330104-00-06-10-02-00
Probe Diameter: 8 mm
Thread Size: M10 × 1
Probe Body Length: 60 mm
Cable Length: 1.0 m
Housing Material: Stainless steel
Sensing Technology: Eddy current, non-contact
Operating Temperature Range: Approximately –40 °C to +177 °C
Functional Capabilities
Continuous monitoring of shaft vibration and displacement
Real-time detection of abnormal shaft movement
Support for machinery protection and condition monitoring systems
Stable signal output suitable for long-term trending and diagnostics
Key Features

Eddy-current sensing principle for precise non-contact measurement
Stainless steel probe housing for corrosion resistance
Compact design for installations with limited space
Secure connector interface for reliable signal transmission
Proven design widely used in critical rotating equipment
Working Principle
The Bently Nevada 330104 proximity probe operates on the eddy-current principle. When the probe is energized, it generates an electromagnetic field at its sensing tip. As a conductive target, such as a rotating shaft, enters this field, eddy currents are induced on the target surface. Changes in the distance between the probe and the target alter the strength of these eddy currents, which in turn changes the probe's electrical output.
This variation is processed by the proximitor system and converted into a precise measurement of displacement or vibration, enabling accurate real-time monitoring of rotating machinery behavior.
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