Tutto sui PLC: la CPU
A practical engineering guide to PLC CPU operation, from deterministic scan cycles and I/O image tables to memory, communications, diagnostics, redundancy, processor sizing, and reliable system...
The Bently Nevada 9200-01-05-10-00 is a two-wire moving-coil transducer engineered to evaluate absolute bearing housing, casing, or structural vibration relative to free space. Utilizing specialized electrodynamic moving-coil technology, this sensor output provides a voltage signal directly proportional to the mechanical casing vibration velocity. Due to its mechanical internal architecture, it displays lower susceptibility to localized structural impacts or impulsive excitation compared to conventional solid-state sensors, making it an excellent choice for continuous heavy machinery protection and field diagnostic assessments. Operating as a self-generating device, it functions entirely without external excitation power loops. The configuration code 9200-01-05-10-00 specifies a transducer optimized for horizontal mounting planes (0 ±2.5 degrees) with a low 4.5 Hz minimum operating frequency, an integrated top-mounted terminal block connector, and a circular M10X1 threaded mounting stud.
| Option Code | Selection Meaning | Technical Value / Detail |
|---|---|---|
| 9200 | Base Transducer Model | Two-Wire Seismoprobe Velocity Transducer |
| 01 | Mounting Angle / Minimum Frequency | 0 ±2.5 degrees, 4.5 Hz (270 cpm) |
| 05 | Connector Option | Terminal block top mount |
| 10 | Mounting Base Option | Circular base; M10X1 stud |
| 00 | Agency Approval Option | No approvals required |
| Parameter | Specification Value |
|---|---|
| Sensitivity | 20 mV/mm/s (500 mV/in/s) ±5% at calibration orientation |
| Frequency Response | 4.5 Hz to 1000 Hz (270 to 60,000 cpm); +0, -3 dB typical |
| Dynamic Operating Range | 2.54 mm (0.100 in) peak-to-peak maximum displacement |
| Velocity Range | ±5% tolerance from 0.254 to 127 mm/s (0.01 to 5.0 in/s) at 100 Hz |
| Coil Resistance | 1.25 kOhm ±5% |
| Locked Coil Inductance | 125 mH, typical value |
| Calibration Test Load | 10 kOhm across Terminal A and Terminal B |
| Sensitivity Temperature Coefficient | -0.02% per degC (-0.011% per degF) typical change |
| Transverse Sensitivity | Less than 10% maximum of sensitive axis amplitude at 100 Hz |
| Shock Resistance | Withstands 50 g peak maximum acceleration along non-sensitive axis |
| Operating Temperature Range | -29 degC to +121 degC (-20 degF to +250 degF) |
| Relative Humidity Range | Up to 95%, noncondensing environments |
| Maximum Use Altitude | 2000 meters (6,561 feet) above sea level |
| Housing & Seal Composition | Anodized aluminum A204 body; Neoprene gaskets |
| Mounting Torque Rating | 5.6 N-m (50 in-lb) maximum load on base threaded stud |
| Physical Dimensions | 102 mm total height, 41 mm outer diameter typical |
| Manufacturer | Bently Nevada (A Baker Hughes Company) |
| Country of Origin | U.S.A. |
| Shipping Weight (Calculated) | 2.0 Kg |
| Package Dimensions (Calculated) | 180 mm x 120 mm x 100 mm |
| Terminal Designation | Function / Circuit Assignment |
|---|---|
| Terminal A | Positive Signal Output (registers positive relative to Terminal B when motion moves toward connector) |
| Terminal B | Negative Signal Return / Reference common |
Isolate and completely power down all associated machine monitoring loops and field control machinery prior to performing any hardware installation or replacement. Working on active field systems in hazardous areas can generate electrical hazards, induce control loops faults, or trigger unintended machine trip sequences.
Field engineers must strictly observe the following technical sequence during field deployment:
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Returns & Warranty



The Bently Nevada 9200-01-05-10-00 is a two-wire moving-coil transducer engineered to evaluate absolute bearing housing, casing, or structural vibration relative to free space. Utilizing specialized electrodynamic moving-coil technology, this sensor output provides a voltage signal directly proportional to the mechanical casing vibration velocity. Due to its mechanical internal architecture, it displays lower susceptibility to localized structural impacts or impulsive excitation compared to conventional solid-state sensors, making it an excellent choice for continuous heavy machinery protection and field diagnostic assessments. Operating as a self-generating device, it functions entirely without external excitation power loops. The configuration code 9200-01-05-10-00 specifies a transducer optimized for horizontal mounting planes (0 ±2.5 degrees) with a low 4.5 Hz minimum operating frequency, an integrated top-mounted terminal block connector, and a circular M10X1 threaded mounting stud.
| Option Code | Selection Meaning | Technical Value / Detail |
|---|---|---|
| 9200 | Base Transducer Model | Two-Wire Seismoprobe Velocity Transducer |
| 01 | Mounting Angle / Minimum Frequency | 0 ±2.5 degrees, 4.5 Hz (270 cpm) |
| 05 | Connector Option | Terminal block top mount |
| 10 | Mounting Base Option | Circular base; M10X1 stud |
| 00 | Agency Approval Option | No approvals required |
| Parameter | Specification Value |
|---|---|
| Sensitivity | 20 mV/mm/s (500 mV/in/s) ±5% at calibration orientation |
| Frequency Response | 4.5 Hz to 1000 Hz (270 to 60,000 cpm); +0, -3 dB typical |
| Dynamic Operating Range | 2.54 mm (0.100 in) peak-to-peak maximum displacement |
| Velocity Range | ±5% tolerance from 0.254 to 127 mm/s (0.01 to 5.0 in/s) at 100 Hz |
| Coil Resistance | 1.25 kOhm ±5% |
| Locked Coil Inductance | 125 mH, typical value |
| Calibration Test Load | 10 kOhm across Terminal A and Terminal B |
| Sensitivity Temperature Coefficient | -0.02% per degC (-0.011% per degF) typical change |
| Transverse Sensitivity | Less than 10% maximum of sensitive axis amplitude at 100 Hz |
| Shock Resistance | Withstands 50 g peak maximum acceleration along non-sensitive axis |
| Operating Temperature Range | -29 degC to +121 degC (-20 degF to +250 degF) |
| Relative Humidity Range | Up to 95%, noncondensing environments |
| Maximum Use Altitude | 2000 meters (6,561 feet) above sea level |
| Housing & Seal Composition | Anodized aluminum A204 body; Neoprene gaskets |
| Mounting Torque Rating | 5.6 N-m (50 in-lb) maximum load on base threaded stud |
| Physical Dimensions | 102 mm total height, 41 mm outer diameter typical |
| Manufacturer | Bently Nevada (A Baker Hughes Company) |
| Country of Origin | U.S.A. |
| Shipping Weight (Calculated) | 2.0 Kg |
| Package Dimensions (Calculated) | 180 mm x 120 mm x 100 mm |
| Terminal Designation | Function / Circuit Assignment |
|---|---|
| Terminal A | Positive Signal Output (registers positive relative to Terminal B when motion moves toward connector) |
| Terminal B | Negative Signal Return / Reference common |
Isolate and completely power down all associated machine monitoring loops and field control machinery prior to performing any hardware installation or replacement. Working on active field systems in hazardous areas can generate electrical hazards, induce control loops faults, or trigger unintended machine trip sequences.
Field engineers must strictly observe the following technical sequence during field deployment:
Global Express Shipping
Returns & Warranty
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| Color pattern |
Black
Silver
|
| Country of origin |
United States
|