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The 330930-060-07-05 is a dedicated extension cable for the 3300 NSv series eddy current sensor system, manufactured by Bentley Nevada, USA. This cable is used to connect the 3300 NSv proximity sensor to form a high-precision non-contact bearing condition monitoring system.
Axial (thrust) position measurements
Tachometer and zero speed measurements
Radial vibration and radial position measurements
The 3300 XL NSv Proximity Transducer system is intended for use with centrifugal air compressors, refrigeration compressors, process gas compressors, and other machines with tight installation requirements. The primary uses for the 3300 XL NSv Transducer System are for areas where counter bore, sideview, or rearview restrictions limit the use of standard Bently Nevada 3300 and 3300 XL 5 and 8 mm Transducer Systems. It is also ideal for small target applications, such as measuring radial vibration on shafts smaller than 51 mm (2 in) or axial position on flat targets smaller than 15 mm (0.6 in).
The 3300 XL NSv Transducer System design allows it to replace both the 3300 RAM Transducer Systems and the 3000-series or 7000-series 190 Transducer System. Upgrades from the 3300 RAM system to the 3300 XL NSv system may use the existing probe, extension cable, and monitoring system with 3300 XL NSv Proximitor Sensor. Upgrades from the 3000-series or 7000-series Transducer System must replace the probe, extension cable, and Proximitor Sensor with NSv components.
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description.
Bently Nevada 330930-060-07-05 Extension Cable Manuals, Datasheets, Drivers, Link
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description.
Oil & Gas
Monitoring shaft vibration of water injection pumps and multiphase transfer pumps on offshore drilling platforms and onshore oil wells.
Thermal Power
Monitoring shaft vibration of water injection pumps and multiphase transfer pumps on offshore drilling platforms and onshore oil wells.
Steel & Metallurgical
Monitoring bearing vibration of blast furnace blowers and large high-pressure dedusting fans, preventing signal distortion in high-temperature environments.
Hydroelectric Power
Monitoring the radial runout and swing of hydroelectric generator shafts to ensure stability under hydraulic impact.
Pulp & Paper
Monitoring bearing wear and operating vibration of large paper machine dryer section gearboxes and high-speed rewinder main shafts.
Petrochemical & Refining
Monitoring the axial displacement of critical process gas compressors and fluid catalytic cracking (FCC) blowers to prevent catastrophic failure due to bearing wear.
When using the Bently Nevada 330930-060-07-05 extension cable, you must ensure the total system length (cable + probe) strictly matches without cutting or splicing, comply with the minimum bend radius during routing without over-pulling or kinking, seal both connectors with dedicated protectors against oil/moisture, and secure it inside protective conduits away from sharp vibrating edges and high-voltage interference.
It is a dedicated extension cable for the 3300 XL NSv proximity transducer system manufactured by Bently Nevada.
What is the primary purpose of 330930-060-07-05?
Its primary purpose is to bridge the 3300 NSv proximity probe and the Proximitor sensor, transmitting critical dynamic signals.
What parameters does 330930-060-07-05 measure in machinery protection?
It does not measure directly, but transfers electrical signals used to calculate shaft vibration, axial position, and speed.
What is the working principle of 330930-060-07-05?
As an RF coaxial cable, it efficiently transmits eddy current impedance changes from the probe end with constant impedance and minimal loss.
Can 330930-060-07-05 be used in harsh environments?
Yes, it has excellent oil and chemical resistance, and the armored structure protects against mechanical wear.
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