330500-02-01 Product datasheet
Model number: |
330500-02-01 |
|
Module Type: |
Velomitor Piezo-velocity Sensor |
Manufacture: |
Bently Nevada |
|
Condition: |
Brand New |
Range of Product: |
Bently Nevada |
|
Lead time: |
In Stock |
Weight: |
0.16kg |
|
HS CODE: |
8537101190 |
Dimension: |
2.5x2.5x7.2cm |
|
MOQ: |
1 |
Product Origin: |
USA |
|
System: |
TSI |
Discontinued on: |
active |
|
Communication Service: |
Ethernet router |
330500-02-01 Functional Description
If you have other request contact our team to get customized service
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Bently Nevada Velomitor Piezo-velocity Sensor Overview
The Velomitor Piezo-velocity Sensor represents Bently Nevada's advanced solution for industrial vibration monitoring, specifically designed to measure absolute bearing housing and casing vibration in rotating machinery. This solid-state sensor combines piezoelectric crystal technology with integrated electronics to deliver highly reliable velocity measurements between 0.5-2000 Hz, covering the critical frequency range for most mechanical faults.
Featuring a standardized 100 mV/in/s (±5%) output sensitivity, the sensor provides consistent, repeatable measurements for condition monitoring systems. Its innovative design eliminates moving parts, ensuring exceptional durability with no mechanical wear over time. The unit maintains accuracy when mounted in any orientation - vertical, horizontal, or angled - making it versatile for various installation requirements.With a wide measurement range up to 50 in/s (1270 mm/s) peak and less than 5% transverse sensitivity, the Velomitor excels in detecting unbalance, misalignment, and other common machinery faults. The sensor's robust construction withstands harsh industrial environments while maintaining measurement integrity, even in the presence of electromagnetic interference.
Certified to CSA/US standards, this velocity transducer has become an industry benchmark for machinery protection systems, offering reliable performance in power generation, oil & gas, and heavy industrial applications. Its solid-state design requires minimal maintenance while providing critical vibration data for predictive maintenance programs.