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We found 9 matches....
Model: 621B41

Model: 621B41

High freq. laboratory ceramic shear ICP® accel, 100 mV/g, 0.8 to 20k Hz, 316L SS case, top exit, 10-32 conn., frequency sweep ISO 17025 accredited calibration
  • Sensitivity: (±5%) 100 mV/g(10.2 mV/(m/s²))
  • Frequency Range: (±3dB) 48 to 1200000 cpm(0.8 to 20000 Hz)
  • Sensing Element: Ceramic
  • Measurement Range: ±50 g(±490 m/s²)
  • Weight: 1.06 oz(30 gm)

Model: 621B51

Model: 621B51

High freq. laboratory ceramic shear ICP® accel, 100 mV/g, 0.8 to 20k Hz, 316L SS case, side exit, 10-32 conn., frequency sweep ISO 17025 accredited calibration
  • Sensitivity: (±5%) 100 mV/g(10.2 mV/(m/s²))
  • Frequency Range: (±3dB) 48 to 1200000 cpm(0.8 to 20000 Hz)
  • Sensing Element: Ceramic
  • Measurement Range: ±50 g(±490 m/s²)
  • Weight: 1.06 oz(30 gm)

Model: 621C40

Model: 621C40

High freq ceramic shear ICP® accelerometer, 10 mV/g, 1.6 to 30k Hz, SS case, top exit, 5-44 connector, frequency sweep ISO 17025 acc cal
  • Sensitivity: (±10%) 10 mV/g(1.02 mV/(m/s²))
  • Frequency Range: (±3dB) 96 to 1800000 cpm(1.6 to 30000 Hz)
  • Sensing Element: Ceramic
  • Measurement Range: ±500 g(±4905 m/s²)
  • Weight: 0.167 oz(4.75 gm)

edv-aero-shockoffering_lowres.pdf

edv-aero-shockoffering_lowres.pdf

en-US SH OC K en-US ME A S U R E ME N T en-US O F F E R I N G F RO M

edv-aero-shockoffering_lowres.pdf

edv-aero-shockoffering_lowres.pdf

en-US SH OC K en-US ME A S U R E ME N T en-US O F F E R I N G F RO M

High Shock ICP® Triaxial Accelerometer

High Shock ICP® Triaxial Accelerometer

High Shock ICP® Triaxial Accelerometer

le on 621, 622, 623, 625, and 628 Series. en-US High Temperature Range en-US HT en-US Accelerometer’s operating temperature range is increased from +250 °F (+121°C) to +325 °F (+163 °C). en-US en-US Available on 622, 623, 624, 625, and 628 Series. en-US Metric Mou

wpl_46_magnet mounting techniques for machinery vibration monitoring.pdf

wpl_46_magnet mounting techniques for machinery vibration monitoring.pdf

en-US W r i t t en B y en en-US Gen e B r a d b u r y , P r a x a i r T

Magnet Mounting Techniques for Machinery Vibration Monitoring

Magnet Mounting Techniques for Machinery Vibration Monitoring

Overview of a case study where magnet-mounting techniques for accelerometers allowed an industrial manufacturing giant to institute a company-wide vibration data acquisition and analysis system that monitors machinery health at several hundred facilities worldwide.