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The Bently Nevada 22811-00-03-05-02 is a 7200 Proximity Transducer Cable used to connect a compatible proximity probe with the associated Proximitor sensor in a machinery monitoring system. It forms part of the electrical signal path that carries the probe’s measurement information to the signal-conditioning electronics.
In a typical 7200 Series installation, the proximity probe is mounted near a rotating shaft or other conductive target. The transducer cable connects this sensing element to the Proximitor sensor, allowing the electrical characteristics generated by the probe to be transferred for further processing.
Cable selection is important in a proximity measurement system because the cable forms part of the overall transducer configuration. The cable type, connector arrangement, length, probe compatibility, and associated Proximitor sensor should all match the requirements of the installed system.
The 22811-00-03-05-02 is therefore relevant to both original machinery monitoring installations and maintenance work where an existing 7200 Series transducer cable needs to be replaced.
| Parameter | Specification |
|---|---|
| Product Brand | Bently Nevada |
| Product Series | 7200 Series |
| Model | 22811-00-03-05-02 |
| Product Type | Proximity Transducer Cable |
| Application | Machinery Condition Monitoring |
| System Type | 7200 Proximity Transducer System |
| Diameter | 8 mm |
| Weight | 0.59 kg |
The 22811-00-03-05-02 functions as the electrical connection between the proximity sensing element and the associated Proximitor sensor. It does not independently measure vibration or shaft position; instead, it carries the electrical signal generated by the proximity probe to the signal-conditioning device.
Proximity Probe → 22811-00-03-05-02 → Proximitor Sensor → Machinery Monitor
The signal path typically operates as follows:
Proper cable compatibility is essential because the cable is part of the overall electrical characteristics of the proximity transducer system.
The 22811-00-03-05-02 occupies the interconnection stage between the machine-side sensing element and the signal-conditioning electronics.
Machine Target → Proximity Probe → 22811-00-03-05-02 → Proximitor Sensor → Machinery Monitor
| System Element | Function |
|---|---|
| Machine Shaft / Target | Provides the conductive target for measurement |
| Proximity Probe | Detects changes in target-to-probe distance |
| 22811-00-03-05-02 | Transfers the proximity signal to the associated electronics |
| Proximitor Sensor | Conditions the transducer signal |
| Machinery Monitor | Processes displacement or vibration information |
| Machinery Protection System | Provides configured alarm and protection functions |
| Plant Monitoring System | Displays and trends equipment condition data |
| Application | Typical Use |
|---|---|
| Steam Turbines | Connecting shaft-monitoring transducers |
| Gas Turbines | Carrying proximity measurement signals |
| Compressors | Supporting shaft displacement monitoring |
| Centrifugal Pumps | Connecting proximity transducer systems |
| Electric Motors | Signal connection for shaft monitoring |
| Generators | Rotor and shaft condition monitoring |
| Industrial Blowers | Connecting machine-side proximity sensors |
| Rotating Machinery | General displacement and vibration monitoring |
| Machinery Protection Systems | Signal transmission between probe and monitoring electronics |
If the monitoring system reports an unstable or missing signal after cable replacement, inspect both cable connections and the associated probe and Proximitor sensor. A signal problem can originate anywhere along the transducer chain.
| Component | Function |
|---|---|
| Bently Nevada 7200 Proximity Probe | Detects shaft or target movement |
| Bently Nevada Proximitor Sensor | Conditions the proximity probe signal |
| 22811 Series Cables | Provides compatible proximity transducer connections |
| 7200 Series Transducer System | Complete proximity measurement arrangement |
| Machinery Monitor | Receives and evaluates the conditioned signal |
| Shaft / Rotor | Provides the monitored conductive target |
| Probe Mounting Hardware | Maintains the required probe position |
| Machinery Protection System | Provides alarm and protective functions |
| Monitoring Cabinet | Houses associated monitoring electronics |
| Signal Grounding Arrangement | Supports proper electrical installation |
| Model / Series | Product Type | Typical Application |
|---|---|---|
| Bently Nevada 7200 Series | Proximity Transducer System | General machinery monitoring |
| Bently Nevada 22810 Series | Proximity Probe | Shaft displacement and vibration measurement |
| Bently Nevada 22811 Series | Proximity Transducer Cable | Probe-to-Proximitor signal connection |
| Bently Nevada 22812 Series | Proximity System Component | 7200 Series transducer applications |
| Bently Nevada 18745 Series | Proximitor Sensor | Proximity signal conditioning |
| Bently Nevada 21504 Series | Proximity Probe | Machinery condition monitoring |
| Bently Nevada 21505 Series | Proximity Probe | Rotating-equipment monitoring |
| Bently Nevada 21747 Series | Extension Cable | Proximity transducer signal connection |
The 22811-00-03-05-02 functions as a proximity transducer cable within the 7200 Series system. It carries the electrical signal from the compatible proximity probe to the associated Proximitor sensor for signal conditioning and subsequent machinery monitoring.
No. The cable is a signal-transmission component and does not independently perform proximity measurement. The probe detects the physical movement, while the Proximitor sensor and monitoring equipment process the resulting electrical signal.
The probe, cable, and Proximitor sensor form an integrated transducer system with specific electrical characteristics. Using an incorrect cable configuration can affect signal transmission and may result in inaccurate or unavailable monitoring data.
Check the cable connections first, then inspect the proximity probe, Proximitor sensor, and monitoring input. The complete signal path should be verified because an open connection, damaged connector, incompatible component, or problem with the associated electronics can all produce a missing signal.