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The Bently Nevada 200200-05-05-CN Machinery Condition Monitoring unit is part of a machinery monitoring architecture used to observe the operating condition of rotating equipment. It is intended for applications where vibration and other machinery-condition information need to be collected and evaluated as part of a predictive maintenance strategy.
In an industrial plant, motors, pumps, compressors, fans, turbines, and gear-driven equipment are continuously exposed to mechanical stresses. Changes in vibration behavior can indicate developing problems such as bearing deterioration, imbalance, misalignment, looseness, or other mechanical changes. A machinery condition monitoring system allows these changes to be observed before maintenance personnel rely solely on periodic inspections.
The 200200-05-05-CN operates as part of the monitoring chain rather than as an isolated sensor. Field sensing devices collect machine information, monitoring hardware acquires the signals, and the condition-monitoring architecture makes the resulting data available for trend analysis and maintenance assessment.
For maintenance teams, the practical value is the ability to compare current machine behavior with historical operating conditions. This supports condition-based maintenance decisions and helps identify abnormal trends while equipment is still operating.
| Parameter | Specification |
|---|---|
| Product Model | 200200-05-05-CN |
| Product Type | Machinery Condition Monitoring |
| Product Family | Bently Nevada Machinery Condition Monitoring |
| Series | Bently Nevada |
| Equipment Type | Machinery Monitoring Unit |
| Monitoring Function | Machinery Condition Monitoring |
| Measurement Input | Machinery Condition Signals |
| Application | Rotating Equipment Monitoring |
| Target Equipment | Motors, Pumps, Compressors, Fans, Turbines |
| Monitoring Purpose | Predictive Maintenance |
| System Role | Condition Monitoring |
| Installation | Machinery Monitoring System |
| Dimensions | 100.9 × 52.9 × 86.2 mm |
| Weight | 0.545 kg |
The 200200-05-05-CN is used within a machinery condition monitoring chain in which information from operating equipment is acquired and evaluated to identify changes in machine behavior.
1. Machine operating condition
Rotating machinery generates mechanical behavior that changes with speed, load, alignment, bearing condition, lubrication, and other operating factors.
2. Field sensing
Appropriate machinery sensors detect physical parameters such as vibration or other condition-related signals. The selected sensors depend on the equipment and monitoring objective.
3. Signal acquisition
The monitoring architecture receives the sensor information and makes the measurements available for condition evaluation. Correct sensor installation, wiring, and configuration are essential to obtain meaningful data.
4. Condition monitoring
The monitoring system compares current measurements with established operating behavior. Changes that persist or develop over time can be investigated as potential indicators of changing machinery condition.
5. Maintenance assessment
Vibration trends and other condition information should be evaluated together with operating parameters and maintenance history. The monitoring system provides evidence for investigation; a specific mechanical fault should not be concluded from a single measurement alone.
The 200200-05-05-CN belongs to the monitoring layer of a machinery-condition architecture. Its function is connected to the larger measurement chain, where sensors observe the machine and the monitoring system turns those measurements into usable condition information.
| Architecture Layer | Function |
|---|---|
| Rotating Machinery | Produces the mechanical condition being monitored |
| Field Sensors | Detect vibration or other machinery-condition parameters |
| Signal Wiring | Transfers sensor information to monitoring hardware |
| 200200-05-05-CN | Participates in the machinery condition monitoring layer |
| Monitoring / Analysis System | Evaluates measurements and historical trends |
| Plant Control / Monitoring Interface | Presents condition information to operators and maintenance personnel |
| Maintenance Team | Investigates abnormal trends and determines appropriate maintenance action |
| Application | Typical Use |
|---|---|
| Motor Condition Monitoring | Tracking changes in rotating motor behavior |
| Pump Monitoring | Observing mechanical condition during continuous operation |
| Compressor Monitoring | Supporting predictive maintenance of compressor trains |
| Fan Monitoring | Monitoring bearings and rotating assemblies |
| Turbomachinery | Supporting machinery-condition assessment |
| Gearbox Monitoring | Tracking changes in mechanical transmission equipment |
| Power Generation | Monitoring critical rotating assets |
| Oil and Gas | Supporting condition-based maintenance of process machinery |
| Component | Function in the System |
|---|---|
| Bently Nevada Machinery Sensors | Capture vibration and other machine-condition information |
| Accelerometers | Measure machine vibration for condition monitoring |
| Proximity Sensors | Provide shaft-position and relative-vibration information in applicable systems |
| Sensor Wiring | Transfers field measurements to monitoring hardware |
| Machinery Monitoring Hardware | Acquires and evaluates condition-related signals |
| Condition Monitoring Software | Supports trend analysis and diagnostic review |
| Rotating Equipment | Provides the machinery condition being monitored |
| Model | Product Type | Typical Relationship |
|---|---|---|
| Bently Nevada 200150-18-CN | Trendmaster Pro Accelerometer | Related vibration sensing component |
| Bently Nevada 200157-22-CN | Trendmaster Pro Enveloping Accelerometer | Related bearing-condition sensing component |
| Bently Nevada 3500 Series Monitoring Modules | Machinery Protection / Monitoring Hardware | Related machinery monitoring platform |
| Bently Nevada 2300 Series Vibration Monitors | Machinery Condition Monitoring Hardware | Related vibration monitoring equipment |
| Bently Nevada 3300 Series Monitoring System | Machinery Monitoring System | Related machinery condition monitoring technology |
It can be incorporated into monitoring architectures for rotating equipment such as motors, pumps, compressors, fans, turbines, and gearboxes. The actual sensor arrangement depends on the machine and the condition parameters that need to be monitored.
No. Condition monitoring complements planned inspection and maintenance activities. Trend information can help prioritize investigations and maintenance work, while physical inspection remains necessary when equipment condition requires confirmation.
Review the vibration or condition trend together with machine speed, load, process conditions, temperature where available, lubrication status, recent maintenance, and historical measurements. This broader context helps separate genuine machine-condition changes from changes caused by operating conditions.
Start with the complete measurement path: verify the field sensor, mounting, wiring, connections, channel assignment, monitoring hardware, and configuration. If the signal path is correct, compare the measurement with historical data and investigate the machine’s current operating condition.