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The Bently Nevada 330904-01-14-05-02-00 is a 3300 NSv Proximity Probe used for non-contact measurement of shaft position and vibration in rotating machinery monitoring systems.
The probe is installed close to a rotating shaft or other conductive target. As the target moves relative to the probe tip, the probe system detects the change in the gap between the probe and target. The resulting measurement is processed by the associated proximity system and used to monitor machine condition.
A proximity probe is particularly useful for machinery where direct contact with the rotating shaft is not practical. Typical measurements include radial shaft vibration and shaft position on rotating equipment such as turbines, compressors, pumps, and other high-speed machines.
The 3300 NSv family is associated with compact probe applications where installation space around the machine is limited. The probe works as part of a complete proximity measurement chain rather than as an independent monitoring instrument, so compatibility with the corresponding extension cable and Proximitor Sensor should be checked when selecting a replacement.
| Parameter | Specification |
|---|---|
| Manufacturer | Bently Nevada |
| Model | 330904-01-14-05-02-00 |
| Product Family | 3300 NSv |
| Product Type | Proximity Probe |
| Measurement Principle | Eddy-current proximity measurement |
| Application | Shaft vibration and position monitoring |
| Total Length | 0.5 meters |
| Weight | 0.15 kg |
The 330904-01-14-05-02-00 operates as part of an eddy-current proximity measurement system.
Rotating Shaft → 330904 NSv Probe → Extension Cable → Proximitor Sensor → Monitoring System
The probe is positioned near a conductive shaft target without making physical contact. The Proximitor Sensor supplies the probe system with the required high-frequency electrical signal and detects changes in the probe’s electrical characteristics as the shaft-to-probe gap changes.
When the shaft moves radially because of vibration, the gap between the shaft surface and probe tip changes. The resulting electrical variation is converted by the Proximitor Sensor into a measurement that represents shaft movement.
The same principle can be used to monitor shaft position. In thrust or axial-position applications, movement along the shaft axis changes the probe gap and produces a corresponding measurement.
The monitoring system can use these signals for vibration trending, alarm generation, shutdown protection, and machinery diagnostics. Correct probe installation and gap setting are therefore important because an incorrect mechanical position can affect the measurement range and signal quality.
The 330904-01-14-05-02-00 is the sensing element at the machine level of the proximity monitoring chain.
Rotating Shaft → Proximity Probe → Extension Cable → Proximitor Sensor → 3300 Monitoring System → Alarm / Protection / Plant System
| System Element | Function |
|---|---|
| Rotating Shaft | Provides the conductive target being monitored |
| 330904-01-14-05-02-00 | Detects changes in shaft-to-probe distance |
| Extension Cable | Connects the probe with the Proximitor Sensor |
| Proximitor Sensor | Powers the probe circuit and converts gap changes into an electrical output |
| 3300 Monitoring System | Processes and monitors vibration or position signals |
| Relay / Protection Logic | Generates alarms or shutdown actions when configured limits are exceeded |
| Plant Control System | Receives machinery condition information for monitoring and operational decisions |
The probe itself does not calculate vibration severity or generate machine protection decisions. Those functions are handled by the associated signal-conditioning and monitoring equipment.
| Application | Typical Use |
|---|---|
| Steam Turbines | Monitoring shaft vibration and position |
| Gas Turbines | Measuring rotating shaft movement |
| Centrifugal Compressors | Monitoring rotor vibration and shaft position |
| Pumps | Detecting radial shaft movement and mechanical condition |
| Expanders | Monitoring high-speed rotating components |
| Generators | Monitoring shaft behavior in critical rotating equipment |
| Industrial Motors | Measuring shaft vibration where proximity monitoring is required |
| Turbo Machinery | Supporting continuous machinery condition monitoring |
| Process Plants | Providing shaft measurements for predictive maintenance and protection systems |
| Component | Function |
|---|---|
| Bently Nevada Proximitor Sensor | Supplies and conditions the proximity probe signal |
| 3300 NSv Extension Cable | Connects the probe to the Proximitor Sensor |
| Bently Nevada 3300 Monitoring System | Processes vibration and position measurements |
| Monitoring Modules | Acquire and evaluate machinery condition signals |
| Relay / Protection Modules | Provide configured alarm and shutdown functions |
| Machinery Shaft | Conductive measurement target |
| Machinery Protection System | Uses proximity measurements for equipment protection |
| Model / Product | Product Type | Typical Application |
|---|---|---|
| Bently Nevada 330904-01-14-05-02-00 | 3300 NSv Proximity Probe | Shaft vibration and position measurement |
| Bently Nevada 3300 NSv Proximity Probes | Proximity Probe Family | Compact rotating-machinery monitoring |
| Bently Nevada 3300 XL Proximitor Sensors | Proximity Signal Conditioner | Conditioning eddy-current probe signals |
| Bently Nevada 3300 Monitoring System | Machinery Monitoring System | Vibration and position monitoring |
| Bently Nevada Extension Cables | Probe Extension Cable | Connecting proximity probes with Proximitor Sensors |
The 3300 NSv proximity probe detects changes in the distance between the probe tip and a conductive rotating target. Depending on the installation, the resulting measurement can be used for shaft vibration or shaft-position monitoring.
No. The probe is one part of a complete proximity measurement system. It normally works with a compatible extension cable, Proximitor Sensor, and monitoring system that supplies the probe circuit and processes the resulting signal.
The gap determines the operating point of the proximity measurement system. An incorrect gap can reduce usable measurement range or produce an abnormal signal, so the probe should be positioned according to the applicable system installation requirements.
Check the mechanical probe position and gap first, followed by the probe connection, extension cable, Proximitor Sensor, and monitoring channel. Mechanical movement of the probe mount, cable damage, or an incorrect installation gap can all affect the measured signal.