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Bently Nevada 330173-00-17-10-02-CN 3300 5 mm Eddy Current Probe

Bently Nevada 330173-00-17-10-02-CN 3300 5 mm Eddy Current Probe

Brand Name: Bently Nevada
Model Number: 330930-045-02-00
MOQ: 1
Price: Negotiation
Detail Information
Place of Origin:
OEM
Product Type:
3300 5mm Eddy Current Probe
Sensing Principle:
Eddy Current Non-contact Measurement Technology
Probe Diameter:
5mm Sensing Tip Design
Measurement Function:
Shaft Vibration, Displacement, And Position Monitoring
Measurement Method:
Non-contact Gap Measurement Between Probe Tip And Shaft Surface
Non-contact Gap Measurement Between Probe Tip And Shaft Surface:
Bentley Nevada 3300 Series Monitoring System
Signal Type:
Dynamic Displacement Measurement Signal
Monitoring Capability:
Radial Vibration And Shaft Displacement Detection
Application Category:
Monitoring And Protection Of Rotating Machinery Status
Connection Type:
Compatible With Bently Nevada 3300 System Configuration
Total Length;:
1 Meter
Packaging Details:
New original box
Highlight:

Bently Nevada 3300 eddy current probe

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5 mm eddy current sensor

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330173-00-17-10-02-CN probe with warranty

Product Description
Bently Nevada 330173-00-17-10-02-CN 3300 5 mm Eddy Current Probe
Product Overview

The Bently Nevada 330173-00-17-10-02-CN 3300 Eddy Current Probe is a high-quality sensing component designed for reliable machinery condition monitoring and protection applications. Developed by Bently Nevada, a globally recognized leader in industrial asset monitoring technologies, this probe provides dependable performance for organizations seeking to improve equipment reliability, enhance predictive maintenance programs, and protect critical rotating machinery.

Built on proven eddy current sensing technology, this probe delivers stable and consistent monitoring performance in demanding industrial applications. It works as an important part of a complete machinery protection system, helping detect equipment changes and supporting early identification of potential mechanical concerns.

Applications
  • Turbine Condition Monitoring: Used for steam turbines, gas turbines, and other rotating equipment to continuously monitor shaft vibration and displacement changes during operation.
  • Compressor Protection System: Provides accurate shaft motion information to help identify abnormal mechanical conditions such as imbalance, misalignment, or excessive vibration.
  • Generator Monitoring Application: Applied to large generators, providing reliable shaft position and vibration data for mechanical protection systems.
  • Industrial Pump Monitoring: Helps monitor the condition of the pump shaft and supports early detection of mechanical issues that may affect equipment performance.
  • Rotating Equipment Diagnosis: Provides real-time measurement data for mechanical analysis, fault detection, and operational evaluation.
  • Predictive Maintenance System: Supports state-based maintenance strategies by providing continuous device health information to make maintenance decisions.
Key Advantages
Accurate Non-Contact Measurement: Eddy current sensing technology provides precise axial displacement measurement without direct contact with rotating components.
Stable Signal Performance: Designed to provide consistent measurement signals for continuous mechanical monitoring and protection applications.
Reliable Industrial Operation: Suitable for harsh environments that require precise and reliable vibration monitoring.
Rapid Detection of Mechanical Changes: Enables the monitoring system to quickly identify changes in shaft motion and vibration behavior.
Excellent System Compatibility: Designed specifically for integration with Bently Nevada 3300 series monitoring systems, supporting reliable mechanical protection solutions.
Improved Equipment Reliability: Continuous monitoring helps operators detect potential mechanical issues early and reduce the likelihood of unexpected equipment downtime.
Industrial Benefits

The probe supports condition-based maintenance strategies, allowing organizations to use real equipment information to better understand machine health and plan service activities more effectively. This approach helps reduce unnecessary maintenance, improve resource utilization, and minimize the risks associated with unexpected equipment downtime.

By providing better visibility into machinery conditions, the probe supports a more efficient and reliable industrial environment, contributing to safer operations, improved efficiency, and long-term industrial success.