The Bently Nevada 330500-02-01 Piezo-Velocity Sensor is a highly specialized sensor designed for continuous vibration monitoring in
industrial applications. It is used to measure the velocity of vibrations, providing critical data for condition monitoring of rotating
machinery, such as motors, turbines, and pumps. The sensor converts mechanical vibrations into an electrical signal that can be
analyzed for early signs of equipment malfunction or wear.
Piezoelectric Technology: Utilizes advanced piezoelectric sensing technology to detect vibrations, offering high
sensitivity and precision in velocity measurements.
Velocity Measurement: Provides accurate measurement of vibration velocity in units such as inches per second (in/s)
or millimeters per second (mm/s), which is essential for monitoring the health of machinery.
Wide Frequency Range: Capable of measuring vibrations across a wide frequency range, making it suitable for a variety
of industrial applications, including high-speed machinery.
Durable Construction: Built to withstand harsh industrial environments, the sensor features a robust housing designed to
resist environmental factors such as high temperature, humidity, and mechanical stress.
Easy Integration: Designed for seamless integration with Bently Nevada’s monitoring systems and other condition monitoring
equipment, ensuring effective vibration analysis and system performance.
Low Power Consumption: Optimized for low power usage, ensuring energy efficiency while maintaining high performance
and reliability.
330500-02-01 Details
FAQ | |
Q1: What is the Bently Nevada 330500-02-01 Piezo-Velocity Sensor?The Bently Nevada 330500-02-01 is a piezoelectric vibration sensor designed to measure the velocity of mechanical vibrations in industrial machinery. It provides real-time data for condition monitoring and helps detect early signs of equipment failure.
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Q2: What types of measurements does this sensor provide?
The sensor measures vibration velocity in units such as inches per second (in/s) or millimeters per second (mm/s), providing accurate data for machinery health monitoring.
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Q3: What technology does the sensor use?
It uses advanced piezoelectric technology to convert mechanical vibrations into an electrical signal, which can be analyzed for diagnostic purposes.
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