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Bently Nevada 330102-00-48-05-02-05 3300 XL 8 mm Proximity Probe

Bently Nevada 330102-00-48-05-02-05 3300 XL 8 mm Proximity Probe

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Brand:Allen Bradley PLC
Item No.:330102-00-48-05-02-05
Product Origin:USA
Product Dimensions:Total Length: 0.5 meters
Product Weight:0.162 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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Introduction

The Bently Nevada 330102-00-48-05-02-05 3300 XL 8 mm Proximity Probe is a high-reliability industrial sensor engineered for precise measurement of shaft vibration and position in rotating machinery. It plays a critical role in machine protection systems by delivering accurate, real-time data that helps prevent equipment failure.

Built for demanding environments such as power plants, oil refineries, and heavy industry, this probe ensures stable performance and long-term durability, making it a trusted component in modern condition monitoring systems.


Technical Specifications

SpecificationDetails
Product TypeProximity Probe (Eddy Current)
Series3300 XL
Model Number330102-00-48-05-02-05
Sensing TypeNon-contact eddy current
Probe Diameter8 mm
Total Length0.5 meters
Weight0.162 kg (0.36 lb)
MaterialStainless steel housing
ApplicationVibration and shaft position monitoring
Operating EnvironmentIndustrial machinery systems
System CompatibilityBently Nevada 3300 XL monitoring systems


Applications

The Bently Nevada 330102-00-48-05-02-05 3300 XL 8 mm Proximity Probe is designed for high-precision non-contact vibration and position monitoring in critical industrial machinery. It is widely used in condition monitoring systems where accurate shaft displacement measurement is essential for safe and efficient operation.

  • Turbomachinery vibration and shaft position monitoring
  • Compressors, pumps, and steam turbine condition monitoring
  • Industrial rotating equipment protection systems
  • Oil & gas and power generation machinery diagnostics
  • Predictive maintenance and asset reliability programs
  • High-speed rotating equipment in harsh industrial environments

This probe is a key component in 3300 XL monitoring systems, helping detect early mechanical issues before failure occurs.


Advantages

  • High-precision 8 mm eddy-current sensing technology
  • Reliable non-contact measurement of shaft vibration and position
  • Robust stainless-steel construction for harsh environments
  • Stable performance under high temperature and industrial vibration
  • Designed for integration with Bently Nevada 3300 XL monitoring systems
  • Excellent long-term stability for continuous condition monitoring
  • Supports predictive maintenance strategies and early fault detection

The 330102-00-48-05-02-05 delivers consistent measurement accuracy that helps protect high-value rotating equipment and reduce unplanned downtime.


Technical FAQs

  1. What is the main function of this proximity probe?
    It measures shaft vibration and position without physical contact using eddy-current technology.
  2. Which systems is it compatible with?
    It is designed for use with Bently Nevada 3300 XL monitoring systems.
  3. Can it be used for turbine monitoring?
    Yes, it is commonly used in steam, gas, and hydro turbine condition monitoring.
  4. Is it suitable for harsh industrial environments?
    Yes, it is built for high-temperature and high-vibration industrial applications.
  5. Does it require physical contact with the shaft?
    No, it operates as a non-contact sensor.
  6. What type of measurement does it provide?
    It provides displacement, vibration, and position measurement of rotating shafts.
  7. Can it support predictive maintenance systems?
    Yes, it is widely used in predictive maintenance and asset protection systems.
  8. Is special calibration required during installation?
    Yes, proper gap setting and system calibration are required for accurate readings.
  9. Can it operate continuously?
    Yes, it is designed for continuous monitoring in industrial environments.
  10. What happens if installation is incorrect?
    Incorrect gap or alignment can lead to inaccurate readings or false vibration data. 


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