330447-10-00 Hydro Stator End Winding Accelerometer Probe
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330447-10-00 Hydro Stator End Winding Accelerometer Probe
330447-10-00 Hydro Stator End Winding Accelerometer Probe
Manufacturers :Bently Nevada
Model(s) :330447-10-00
Additional Information :Hydro Stator End Winding Accelerometer Probe Estimated Shipping Size
Dimensions: 263 × 58 × 28mm
Weight:.4.3 kg
Country of Origin: United States of America
Essential details:330447-10-00 Hydro Stator End Winding Accelerometer Probe
The hydro Stator End Winding Accelerometer (SEW Accel) system provides a cost effective and reliable method for monitoring Stator End Winding vibration. This product utilizes a dual axis MEMS capacitive accelerometer encapsulated in a highly electrically insulated probe housing and mounting system. This unique sensor system provides flexibility and simplicity of installation. The hydro SEW Accel system is safe, reliable and durable for hydro applications.
The hydro SEW Accel system consists of two major components (Sold Separately):
l 330446 Accelerometer Sensor
l 330447 Accelerometer Probe
330447-10-00
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sunny He
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330447-10-00 Hydro Stator End Winding Accelerometer Probe
The Bently Nevada hydro SEW Accel system provides vibration monitoring suited for the high electric fields of hydro generators by being designed to resist electrical tracking, corona damage, partial discharge, magnetic field interference and electric field interference. The 330447 SEW Accelerometer probe is mounted to the ground wall system using epoxy and glass roving.
The hydro SEW Accel system is designed to interface to the Bently Nevada 3500 monitoring system using the 46M Hydro monitor. The 3500/46M Hydro monitor has been enhanced to provide Stator End Winding measurements and displays. A key feature is the measurement of the Pole Passing Frequency (or Forcing Frequency) amplitudes. Additionally, the 3500/46M will display the resultant acceleration measurements for the combined X and Y-axis to provide a complete vibration overview.
Monitoring of hydro stator end windings can prevent catastrophic failure and help determine proper maintenance cycles if used properly. Defects caused by prolonged exposure to electrical tracking and ozone will wear down