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Bently Nevada 330102-00-70-10-02-05 3300 XL 8 mm Proximity Probe

Bently Nevada 330102-00-70-10-02-05 3300 XL 8 mm Proximity Probe

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Brand:Allen Bradley PLC
Item No.:330102-00-70-10-02-05
Product Origin:USA
Product Dimensions:Total Length: 1 meter
Product Weight:0.323 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 330102-00-70-10-02-05 3300 XL 8 mm Proximity Probe is a high-performance sensor engineered to provide reliable shaft vibration and displacement measurements for critical rotating machinery. As part of the renowned 3300 XL series, it offers exceptional measurement stability, durability, and accuracy.

Built for demanding industrial applications, this probe enables maintenance teams to monitor machinery health in real time, helping prevent unexpected failures and supporting long-term asset management strategies. Its proven design makes it an excellent choice for modern machine protection systems.


Technical Specifications

SpecificationDetails
Product TypeProximity Probe
Series3300 XL
Model Number330102-00-70-10-02-05
Probe Diameter8 mm
Sensing TechnologyEddy Current
Total Length1 meter
Measurement FunctionShaft Vibration and Position Monitoring
Housing MaterialStainless Steel
Installation TypeThreaded Mount
System Compatibility3300 XL Monitoring Systems
Weight0.323 kg (0.71 lb)


Industry Applications

The Bently Nevada 330102-00-70-10-02-05 3300 XL 8 mm Proximity Probe is developed for precise shaft vibration and position monitoring in critical rotating equipment. Featuring a 1-meter total length, this probe provides installation flexibility while maintaining exceptional measurement accuracy in demanding industrial environments.

  • Turbine protection and monitoring systems
  • Centrifugal compressor vibration measurement
  • Industrial motor condition monitoring
  • Generator shaft position supervision
  • Pump health monitoring applications
  • Petrochemical and refinery rotating assets
  • Power generation machinery protection programs

Its dependable performance makes it a valuable component for facilities focused on maximizing equipment reliability and operational efficiency.


Core Advantages

  • Advanced 8 mm eddy-current sensing technology
  • Non-contact operation eliminates mechanical wear
  • Consistent signal quality for accurate diagnostics
  • Suitable for continuous online monitoring systems
  • Rugged construction for industrial applications
  • Reliable performance under challenging operating conditions
  • Supports predictive maintenance strategies
  • Helps reduce unexpected machinery shutdowns

This probe delivers the accuracy and stability required for modern machinery condition monitoring systems.


Technical FAQs

1. What is the primary purpose of this proximity probe?

It is used to monitor shaft vibration, displacement, and relative position in rotating machinery.

2. What sensing principle does the probe use?

The probe operates using eddy-current measurement technology.

3. Is the probe suitable for high-speed equipment?

Yes, it is designed for high-speed rotating machinery applications.

4. Can it be installed in continuous monitoring systems?

Yes, it is intended for permanent installation and continuous operation.

5. What industries commonly use this probe?

Power generation, oil and gas, petrochemical, manufacturing, and process industries.

6. Does the probe require physical contact with the shaft?

No, all measurements are performed without contacting the rotating surface.

7. Can the probe help identify developing machinery faults?

Yes, vibration and position data can reveal early-stage mechanical issues.

8. Is it suitable for predictive maintenance programs?

Yes, it is widely utilized in condition-based maintenance systems.

9. What machinery types are typically monitored?

Turbines, compressors, generators, pumps, and industrial motors.

10. Does installation accuracy affect measurement quality?

Yes, proper probe positioning and gap adjustment are critical for optimal performance.


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