Bently Nevada 9200-09-01-01-00 Dual Linear Velocity Seismic Sensor
Bently Nevada 9200-09-01-01-00 Dual Linear Velocity Seismic Sensor
0.0
Points
Brand:Bently Nevada PLC Item No.:9200-09-01-01-00 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
The Bently Nevada 9200-09-01-01-00 is a dual linear velocity seismic sensor designed for industrial vibration monitoring applications. It is used to measure casing vibration velocity, which is a key parameter in evaluating the mechanical condition of rotating equipment.
This sensor is widely applied in turbines, compressors, pumps, and other critical machinery where continuous monitoring is required to ensure safe and stable operation. It converts mechanical vibration into a proportional electrical signal that can be used by monitoring and protection systems.
Technical Specifications
Parameter
Specification
Product Model
9200-09-01-01-00
Product Type
Dual Linear Velocity Seismic Sensor
Measurement Type
Casing vibration velocity
Technology
Self-generating velocity transducer
Sensor Diameter
41.4 mm
Weight
0.3 kg
Output Signal
Velocity proportional signal
Mounting Type
Stud mount
Operating Environment
Industrial machinery monitoring
Application Scope
Condition monitoring & machinery protection
Recommended Related Models
Model
Product Name
Bently Nevada 330500-02-04
Velomitor Velocity Sensor
Bently Nevada 330400-01-05
Accelerometer
Bently Nevada 330800-28-15-063-00-02
PROXPAC XL Proximity Sensor
Bently Nevada 3500/42M
Vibration Monitor Module
Popular Related Models
Model
Product Name
Bently Nevada 3300 XL Proximity Probe System
Shaft vibration monitoring system
Bently Nevada 3300 XL Extension Cable Series
Signal transmission cables
Bently Nevada 3300 XL Proximitor Sensor Series
Signal conditioning modules
Bently Nevada 3500 Series Machinery Protection System
Industrial monitoring platform
Applications
• Used for casing vibration velocity monitoring on rotating machinery.
• Commonly installed on turbines, compressors, pumps, motors, and gearboxes.
• Supports condition monitoring and predictive maintenance programs in industrial plants.
• Used in power generation, oil & gas, petrochemical, and heavy manufacturing industries.
• Suitable for measuring overall vibration severity on bearing housings and machine structures.
• Integrated into machinery protection systems for continuous vibration tracking.
• Helps identify early-stage mechanical issues such as imbalance, misalignment, and looseness.
Key Advantages
• Self-generating velocity sensor design eliminates the need for external power supply.
• Provides stable and direct velocity output for reliable condition monitoring.
• Dual linear sensing structure improves signal stability and measurement consistency.
• Strong resistance to industrial vibration, shock, and harsh operating environments.
• Compact 41.4 mm diameter design supports flexible mounting on machinery housings.
• Long-term stability suitable for continuous 24/7 industrial operation.
• Widely used in critical machinery protection applications worldwide.
Technical FAQs
1. What is the main function of this sensor?
It measures casing vibration velocity on rotating industrial equipment.
2. Does it require external power?
No, it is a self-generating sensor and does not require external power.
3. Where is it typically installed?
On machine housings such as turbines, compressors, pumps, and motors.
4. What type of signal does it output?
It outputs a velocity-proportional electrical signal.
5. What does it measure exactly?
It measures vibration velocity of bearing housings and machine structures.
6. Can it be used for continuous monitoring?
Yes, it is designed for continuous industrial monitoring applications.
7. Is it suitable for harsh environments?
Yes, it is built for high vibration, temperature, and industrial conditions.
8. Does it measure shaft vibration directly?
No, it measures casing or structural vibration, not direct shaft motion.
9. What industries commonly use it?
Power plants, oil & gas facilities, petrochemical plants, and heavy industry.
10. Why is it widely used in industry?
Because it provides reliable and stable velocity-based vibration data for machinery protection.