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Bently Nevada 9200-06-02-10-00 Earthquake Detection Velocity Sensor

Bently Nevada 9200-06-02-10-00 Earthquake Detection Velocity Sensor

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Brand:Bently Nevada PLC
Item No.:9200-06-02-10-00
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 9200-06-02-10-00 Earthquake Detection Velocity Sensor is a robust industrial velocity transducer designed for accurate measurement of absolute vibration in machinery and structural systems. Using proven moving-coil technology, it generates a self-powered signal proportional to vibration velocity, making it highly reliable for continuous monitoring applications. It is widely deployed in power generation, oil & gas, and heavy industrial environments where structural integrity and early fault detection are critical for safe operation.


Technical Specifications

CategorySpecification
Product SeriesBently Nevada 9200 Series
Model9200-06-02-10-00
Device TypeVelocity Sensor
Measurement PrincipleMoving-coil electromagnetic induction
Measured ParameterAbsolute vibration velocity
Output SignalAnalog voltage proportional to velocity
Power RequirementSelf-generating (no external power required)
Frequency ResponseLow-frequency structural vibration
Mounting TypeStud-mounted industrial configuration
Sensor Diameter41.4 mm
Housing MaterialIndustrial-grade metal enclosure
Operating EnvironmentIndustrial machinery and structural systems
ApplicationTurbines, compressors, pumps, generators
Weight0.3 kg

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Applications

• Industrial structural vibration monitoring
Used for continuous measurement of casing and foundation vibration in heavy industrial machinery systems.

• Turbine and compressor condition monitoring
Applied in steam and gas turbine installations to detect abnormal vibration behavior and mechanical instability.

• Power plant safety systems
Provides reliable vibration input for protection logic in critical generation equipment.

• Oil & gas rotating equipment monitoring
Installed on compressors, pumps, and structural supports for vibration trend analysis and fault detection.

• Heavy machinery diagnostics
Supports early detection of imbalance, looseness, resonance, and structural degradation.

• Industrial safety and alarm systems
Used to trigger alarms when vibration exceeds predefined safety thresholds in critical environments.


Key Advantages

• Moving-coil velocity sensing technology
Delivers accurate velocity-proportional output for structural vibration measurement.

• Self-powered operation
No external power required, improving system simplicity and reliability.

• High sensitivity to low-frequency vibration
Effective for detecting slow structural movement and foundation vibration trends.

• Rugged industrial-grade design
Built for harsh environments including vibration, temperature fluctuation, and contamination.

• Proven reliability in field applications
Widely used in legacy and industrial monitoring systems worldwide.

• Stable long-term signal output
Ensures consistent performance in continuous monitoring applications.


Technical FAQs

1. What is the 9200-06-02-10-00 sensor used for?
It is used for measuring absolute vibration velocity in industrial machinery and structures.

2. What technology does it use?
It uses a moving-coil velocity transducer principle.

3. Does it require external power?
No, it is a self-generating passive sensor.

4. What type of signal does it output?
It outputs a voltage proportional to vibration velocity.

5. What machinery is it typically installed on?
Turbines, compressors, pumps, motors, and structural equipment.

6. Is it suitable for low-frequency monitoring?
Yes, it is designed for low-frequency structural vibration detection.

7. Can it operate in harsh environments?
Yes, it is engineered for industrial-grade conditions.

8. What is its main application purpose?
It is used for casing and structural vibration monitoring.

9. Is it used in protection systems?
Yes, it is commonly integrated into vibration protection systems.

10. Does it support predictive maintenance?
Yes, it helps detect early mechanical and structural issues.


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