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Bently Nevada 330851-01-000-020-90-01-05 3300 XL 25 mm Proximity Probe

Bently Nevada 330851-01-000-020-90-01-05 3300 XL 25 mm Proximity Probe

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Brand:Bently Nevada PLC
Item No.:330851-01-000-020-90-01-05
Product Origin:USA
Product Dimensions:Total Length: 9 meters
Product Weight:1.57 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 330851-01-000-020-90-01-05 3300 XL 25 mm Proximity Probe is a precision industrial sensor designed for accurate measurement of shaft vibration and displacement in rotating machinery systems with extended installation requirements.

It is widely used in large-scale industrial plants where sensing points are physically distant from monitoring systems. By ensuring stable signal transmission over long distances, it plays a key role in maintaining reliable machinery protection and early fault detection in critical assets.


Technical Specifications

ParameterSpecification
Product TypeProximity Probe (Eddy Current Sensor)
SeriesBently Nevada 3300 XL
Model Number330851-01-000-020-90-01-05
Sensing Diameter25 mm
Total Length9 meters
Output SignalAnalog displacement signal
Installation TypeFixed industrial probe system
Application EnvironmentRotating machinery monitoring systems
Weight1.57 kg (3.46 lb)


Applications

The Bently Nevada 3300 XL 25 mm proximity probe with extended 9-meter total length is engineered for large-scale industrial machinery where sensing points are located far from monitoring modules.

It is commonly used in steam turbines, large compressors, hydro turbines, generators, and heavy rotating equipment in power plants and petrochemical facilities. The extended cable configuration makes it suitable for centralized monitoring rack installations where sensors must cover long physical distances.

In industrial condition monitoring systems, it supports continuous measurement of shaft vibration, axial position, and dynamic displacement. It is also widely deployed in predictive maintenance architectures where long-run signal stability is required across complex plant layouts.


Advantages

This proximity probe system is optimized for long-distance installation without compromising measurement accuracy or signal integrity.

It maintains stable eddy current sensing performance even across extended cable runs, ensuring consistent vibration and displacement data in centralized monitoring systems. The design reduces signal degradation over distance, which is critical in large industrial plants.

Its shielding architecture improves resistance to electromagnetic interference, making it suitable for high-noise environments such as turbine halls and compressor stations.

The system is fully compatible with Bently Nevada 3300 XL monitoring platforms, enabling seamless integration into existing machinery protection architectures. It is engineered for long-term stability with minimal drift, supporting continuous industrial operation.



Technical FAQs

Q1: What is the primary measurement function of this probe?
It measures shaft displacement and vibration using eddy current technology.

Q2: Is it suitable for long-distance installation?
Yes, it is designed with a 9-meter total length for extended signal routing.

Q3: Does signal quality degrade over long cable runs?
It is engineered to maintain stable signal integrity over extended distances.

Q4: Is it compatible with 3300 XL systems?
Yes, it is fully compatible with the Bently Nevada 3300 XL platform.

Q5: Can it be used in continuous monitoring systems?
Yes, it supports 24/7 industrial condition monitoring applications.

Q6: What environments is it designed for?
It is designed for power generation, oil and gas, and heavy industrial environments.

Q7: Does it support high-speed rotating machinery?
Yes, it is suitable for high RPM turbine and compressor monitoring.

Q8: How does it handle electrical interference?
It uses shielding design to minimize electromagnetic noise impact.

Q9: Is it suitable for predictive maintenance systems?
Yes, it is widely used in condition-based monitoring architectures.

Q10: Does it require frequent recalibration?
No, it is factory-calibrated for long-term stable operation.


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