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Bently Nevada 330910-00-11-10-02-05 Proximity Probe

Bently Nevada 330910-00-11-10-02-05 Proximity Probe

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Brand:Bently Nevada PLC
Item No.:330910-00-11-10-02-05
Product Origin:USA
Product Dimensions:108 × 7.2 × 7.2 mm
Product Weight:0.36 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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330903-6330903-5330903-7330903-8

Product Overview

The Bently Nevada 330910-00-11-10-02-05 Proximity Probe is an armored metric proximity probe designed for accurate non-contact shaft vibration and position monitoring in industrial rotating machinery.

This model features an M10 × 1 threaded configuration, 110 mm case length, 1.0-meter cable length, and FluidLoc cable design, providing a reliable solution for machinery where compact installation and enhanced cable protection are required. The 3300 NSv family is designed for applications requiring dependable shaft measurement in rotating equipment monitoring systems.

The probe is suitable for compressors, turbines, pumps, and other critical rotating equipment used in power generation, oil and gas, petrochemical, and industrial processing applications.


Technical Specifications

ParameterSpecification
Product Model330910-00-11-10-02-05
Product TypeProximity Probe
Product Series3300 NSv
ManufacturerBently Nevada
Probe ConfigurationArmored Proximity Probe
Thread TypeM10 × 1 Metric Thread
Measurement TechnologyEddy Current Non-Contact Sensing
Unthreaded Length0 mm
Case Length110 mm
Total Length1.0 m
Connector TypeMiniature Coaxial ClickLoc Connector
Cable TypeFluidLoc Cable
Approval OptionMultiple Approvals
Compatible System3300 NSv Proximity Transducer System
DimensionsApprox. 110 mm probe body length with 1.0 m cable configuration
WeightApprox. 0.14 kg

Recommended Companion Models

ModelProduct Name
330980-70-053300 XL NSv Proximitor Sensor
330930-010-00-003300 NSv Extension Cable
3500/40MProximitor and Seismic Monitor
3500/25Enhanced Keyphasor Module

Frequently Selected Alternatives

ModelProduct Name
330910-00-11-10-01-053300 NSv M10 × 1 Armored FluidLoc Proximity Probe
330910-00-11-50-02-053300 NSv M10 × 1 Armored FluidLoc Proximity Probe
330909-00-11-10-02-053300 NSv 3/8-24 UNF Armored FluidLoc Proximity Probe
330905-00-11-10-02-053300 NSv M10 × 1 Non-Armored Proximity Probe


Where It Excels in Industrial Use

  • Rotating Machinery Condition Monitoring
    Designed for continuous shaft vibration and position measurement on compressors, turbines, pumps, and other critical rotating equipment requiring reliable monitoring performance.
  • High-Reliability Machinery Protection Systems
    Provides stable shaft displacement measurement for equipment where accurate condition monitoring is essential for operational safety and maintenance planning.
  • Process Compressor Applications
    Suitable for centrifugal compressors and industrial machinery requiring compact installation and dependable non-contact measurement.
  • Power Generation Equipment Monitoring
    Supports turbine and generator protection applications by delivering consistent shaft movement data for equipment condition evaluation.
  • Oil, Gas and Petrochemical Operations
    Designed for demanding industrial environments where long-term monitoring stability and equipment reliability are important.
  • Predictive Maintenance Programs
    Helps maintenance teams analyze machinery health trends and optimize inspection and service schedules.


Key Strengths at a Glance

  • M10 × 1 Metric Thread Configuration
    Designed for equipment requiring metric mounting compatibility and flexible installation options.
  • 110 mm Case Length Design
    Provides an extended probe body configuration for applications requiring additional mounting flexibility.
  • 1.0 Meter Cable Length
    Offers a compact cable arrangement suitable for installations where the probe is positioned close to monitoring electronics.
  • FluidLoc Cable Option
    Helps improve cable reliability in environments where oil or fluid exposure may affect long-term performance.
  • Non-Contact Eddy Current Technology
    Enables accurate shaft vibration and position measurement without physical contact with rotating components.
  • Multiple Approval Configuration
    Supports industrial installations requiring additional approval options for machinery monitoring systems.


Technical FAQs

1. What is the primary function of the Bently Nevada 330910-00-11-10-02-05 proximity probe?

It is designed to measure shaft vibration and position using non-contact sensing technology in rotating machinery applications.


2. Which product series does this proximity probe belong to?

This model belongs to the Bently Nevada 3300 NSv proximity probe series.


3. What sensing technology is used in this probe?

The probe uses eddy current sensing technology to detect shaft displacement without direct mechanical contact.


4. What is the advantage of the M10 × 1 threaded configuration?

The metric thread design provides compatibility with machinery using metric mounting standards.


5. What types of machinery commonly use this proximity probe?

It is commonly installed on compressors, turbines, pumps, motors, generators, and other rotating equipment requiring continuous monitoring.


6. Why is the FluidLoc cable configuration beneficial?

The FluidLoc design helps improve cable protection in applications where fluid exposure may affect sensor system reliability.


7. What is the purpose of the 1.0 meter cable length?

The shorter cable configuration provides a practical installation solution for systems where the sensor and monitoring electronics are located nearby.


8. What components are required for a complete monitoring system?

A complete system normally includes the proximity probe, compatible Proximitor Sensor, extension cable when required, and monitoring module.


9. What factors influence proximity probe measurement accuracy?

Correct installation, proper probe gap adjustment, target surface condition, and compatible monitoring components affect measurement reliability.


10. Can this probe support predictive maintenance applications?

Yes. The collected shaft condition data helps maintenance teams evaluate equipment performance and plan maintenance activities.


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