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Bently Nevada 9200-01-02-02-00 Dual Linear Velocity Seismic Sensor

Bently Nevada 9200-01-02-02-00 Dual Linear Velocity Seismic Sensor

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Brand:Bently Nevada PLC
Item No.:9200-01-02-02-00
Product Origin:USA
Product Dimensions:Sensor Diameter: 41.4 mm
Product Weight:0.3 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 9200-01-02-02-00 Dual Linear Velocity Seismic Sensor is a rugged industrial vibration sensor designed for measuring absolute casing vibration in rotating machinery systems.

It operates as a seismic velocity sensor that provides reliable vibration data for machinery protection and condition monitoring. This makes it suitable for turbines, compressors, pumps, and other critical rotating equipment used in power generation, oil & gas, and industrial processing environments.


Technical Specifications

ParameterDescription
ModelBently Nevada 9200-01-02-02-00
Product TypeDual Linear Velocity Seismic Sensor
Measurement TypeAbsolute vibration (velocity)
Sensor Diameter41.4 mm
Operating PrincipleSeismic velocity sensing
Installation TypeMachine housing / structural mounting
Output SignalVelocity proportional signal
ApplicationMachinery vibration monitoring
CompatibilityIndustrial vibration monitoring systems
Operating EnvironmentHarsh industrial environments
DirectionalityDual linear measurement
Weight0.3 kg

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Applications

• Rotating machinery casing vibration monitoring
 Used to measure absolute vibration of machine housings in turbines, compressors, pumps, and motors.

• Industrial condition monitoring systems
 Provides reliable seismic velocity signals for continuous machinery health assessment.

• Power generation equipment protection
 Supports turbine and generator vibration monitoring for safe operating conditions.

• Oil & gas rotating equipment monitoring
 Applied in compressors and pumps where casing vibration measurement is required.

• Structural and foundation vibration analysis
 Helps evaluate vibration behavior of machine bases and supporting structures.

• Predictive maintenance programs
 Enables early detection of mechanical faults through vibration trend analysis.


Key Advantages

• Dual linear velocity sensing design
 Provides accurate measurement of absolute vibration in multiple directions.

• High stability under industrial conditions
 Maintains consistent output in harsh environments with vibration and temperature variation.

• No external power required for sensing element
 Operates as a self-generating seismic velocity sensor (system dependent configuration).

• Reliable long-term monitoring performance
 Designed for continuous use in critical machinery protection applications.

• Compact industrial sensor design
 Easy integration into existing machinery monitoring systems.

• Suitable for critical rotating assets
 Supports protection of high-value industrial equipment.


Technical FAQs

Q1: What is the main function of this sensor?
A: It measures absolute casing vibration velocity in rotating machinery and structural systems.

Q2: What type of measurement does it provide?
A: It provides seismic velocity (absolute vibration) measurement.

Q3: Where is it typically installed?
A: On machine housings, bearing pedestals, or structural mounting points.

Q4: What systems is it used with?
A: Industrial vibration monitoring and machinery protection systems.

Q5: Does it measure shaft vibration directly?
A: No, it measures casing or structural vibration, not direct shaft displacement.

Q6: Is it suitable for harsh environments?
A: Yes, it is designed for industrial temperature and vibration conditions.

Q7: What is the benefit of dual linear measurement?
A: It improves vibration detection accuracy across multiple directional axes.

Q8: Does it require calibration?
A: It is typically calibrated as part of the monitoring system setup.

Q9: What industries commonly use it?
A: Power generation, oil & gas, petrochemical, and heavy industry.

Q10: Can it detect bearing faults?
A: Yes, indirectly through changes in vibration patterns.


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