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Bently Nevada 9200-03-05-10-00 Seismoprobe Velocity Transducers
Item Number:9200-03-05-10-00
Brand:Bently Nevada
Price:$1
Lead Time: In stock
Description:Seismoprobe Velocity Transducers
Payment: T/T
Product Description
Bently Nevada 9200-03-05-10-00 Seismoprobe velocity sensor is part of the Seismoprobe family of velocity sensors designed to measure absolute vibration velocity of bearing housings, housings or structural components. The system uses moving coil technology and is ideal for continuous monitoring or periodic measurement applications. The 9200 Seismoprobe velocity sensor is a two-wire system, which means it does not require an external power source, making it particularly suitable for portable measurement applications and reducing installation complexity.
Fuctions & Features
Technology & Design
Moving Coil Technology: The 9200 Seismoprobe uses moving coil technology to provide a voltage output that is proportional to the vibration velocity. This design makes it less sensitive to pulse or shock excitation than solid-state velocity sensors that include an integrated accelerometer.
Two-wire Design: The sensor directly outputs a voltage proportional to the vibration velocity.
Connection optional
No External Power Required: The 9200 Seismoprobe does not require an external power source, making it convenient for portable or temporary setups, especially for field use.
Interconnect Cables: 9200 and 74712 sensors can be connected to other instruments using interconnect cables, which are available in a variety of lengths and configurations
Specifications
|
Parameter |
Specification |
|
Frequency Response |
4.5 to 1000 Hz (270 to 60,000 CPM); +0, -3 dB typical 10 to 1000 Hz (600 to 60,000 CPM); +0, -3 dB typical 15 to 1000 Hz (900 to 60,000 CPM); +0, -3 dB typical |
|
Dynamic Operating Range |
2.54 mm (0.100 in) peak-to-peak maximum displacement |
|
Velocity Range |
25 mm/s (1 in/s) at +22°C with 25 mm/s casing vibration at 100 Hz (6000 CPM) and a 10 kΩ load |
|
Coil Resistance |
1.25 kΩ ±5% |
|
Locked Coil Inductance |
125 mH (typical) |
|
Lead Wire Length |
Up to 305 meters (1,000 feet) maximum between transducer and monitor |
|
Case & Adapter Material |
Anodized aluminum A204 |
|
Gasket Material |
Neoprene (9200 model) |
|
Height |
102 mm (4 in) typical (varies by connector) |
|
Diameter |
41 mm (1.6 in) typical |
|
Weight |
9200: 300 g (10.5 oz) typical; 74712: 480 g (17 oz) typical |
application
Bently Nevada 9200-03-05-10-00 Seismoprobe is a vibration velocity sensor widely used in condition monitoring and fault diagnosis of industrial equipment. It helps users evaluate the operating status of equipment, predict potential failures, and optimize maintenance plans by measuring the vibration velocity of mechanical equipment. The following are its specific application scenarios and functions:
- Rotating machinery monitoring: used to monitor the vibration of rotating equipment such as motors, pumps, fans, compressors, and turbines. Helps identify common mechanical failures such as imbalance, misalignment, bearing wear, and shaft bending.
- Industrial equipment health management: As a key tool for predictive maintenance, it continuously monitors vibration data to detect equipment abnormalities in advance. Reduce unexpected downtime and extend equipment life.
- Oil and gas industry: Monitor the vibration of compressors, pumps, and pipeline systems to prevent leaks or accidents caused by mechanical failures.
Bently Nevada 9200-03-05-10-00 Seismoprobe Velocity Transducers
Item Number:9200-03-05-10-00
Brand:Bently Nevada
Price:$1
Lead Time: In stock
Description:Seismoprobe Velocity Transducers
Payment: T/T
Product Description
Bently Nevada 9200-03-05-10-00 Seismoprobe velocity sensor is part of the Seismoprobe family of velocity sensors designed to measure absolute vibration velocity of bearing housings, housings or structural components. The system uses moving coil technology and is ideal for continuous monitoring or periodic measurement applications. The 9200 Seismoprobe velocity sensor is a two-wire system, which means it does not require an external power source, making it particularly suitable for portable measurement applications and reducing installation complexity.
Fuctions & Features
Technology & Design
Moving Coil Technology: The 9200 Seismoprobe uses moving coil technology to provide a voltage output that is proportional to the vibration velocity. This design makes it less sensitive to pulse or shock excitation than solid-state velocity sensors that include an integrated accelerometer.
Two-wire Design: The sensor directly outputs a voltage proportional to the vibration velocity.
Connection optional
No External Power Required: The 9200 Seismoprobe does not require an external power source, making it convenient for portable or temporary setups, especially for field use.
Interconnect Cables: 9200 and 74712 sensors can be connected to other instruments using interconnect cables, which are available in a variety of lengths and configurations
Specifications
|
Parameter |
Specification |
|
Frequency Response |
4.5 to 1000 Hz (270 to 60,000 CPM); +0, -3 dB typical 10 to 1000 Hz (600 to 60,000 CPM); +0, -3 dB typical 15 to 1000 Hz (900 to 60,000 CPM); +0, -3 dB typical |
|
Dynamic Operating Range |
2.54 mm (0.100 in) peak-to-peak maximum displacement |
|
Velocity Range |
25 mm/s (1 in/s) at +22°C with 25 mm/s casing vibration at 100 Hz (6000 CPM) and a 10 kΩ load |
|
Coil Resistance |
1.25 kΩ ±5% |
|
Locked Coil Inductance |
125 mH (typical) |
|
Lead Wire Length |
Up to 305 meters (1,000 feet) maximum between transducer and monitor |
|
Case & Adapter Material |
Anodized aluminum A204 |
|
Gasket Material |
Neoprene (9200 model) |
|
Height |
102 mm (4 in) typical (varies by connector) |
|
Diameter |
41 mm (1.6 in) typical |
|
Weight |
9200: 300 g (10.5 oz) typical; 74712: 480 g (17 oz) typical |
application
Bently Nevada 9200-03-05-10-00 Seismoprobe is a vibration velocity sensor widely used in condition monitoring and fault diagnosis of industrial equipment. It helps users evaluate the operating status of equipment, predict potential failures, and optimize maintenance plans by measuring the vibration velocity of mechanical equipment. The following are its specific application scenarios and functions:
- Rotating machinery monitoring: used to monitor the vibration of rotating equipment such as motors, pumps, fans, compressors, and turbines. Helps identify common mechanical failures such as imbalance, misalignment, bearing wear, and shaft bending.
- Industrial equipment health management: As a key tool for predictive maintenance, it continuously monitors vibration data to detect equipment abnormalities in advance. Reduce unexpected downtime and extend equipment life.
- Oil and gas industry: Monitor the vibration of compressors, pumps, and pipeline systems to prevent leaks or accidents caused by mechanical failures.
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