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Case Isolated Accelerometer Acceleration Transducer GE 330400-01-05 Bently Nevada 330400/330425

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xSensitivity | 10.2 MV/m/s2 (100 MV/g) ±5% | Frequency Response | 10 Hz To 15 KHz |
---|---|---|---|
Temperature Sensitivity | -11% To +3% Typical Over The Operating Temperature Range | Transverse Sensitivity | Less Than 5% Of Axial |
Mounted Resonant Frequency | Greater Than 30 KHz | Amplitude Of Resonant Peak | 20 DB Maximum |
Maximum Cable Length | 305 Metres (1000 Ft) With No Degradation Of Signal | Input Voltage | Input Voltage |
Bias Current | 2 MA Nominal | Output Bias Voltage | -8.5 ± 0.5 Vdc |
Grounding | Case Isolated | Operating And Storage Temperature | Operating And Storage Temperature |
Shock Survivability | 49,050 M/s2 (5000 G) Peak, Maximum | Relative Humidity | 100% Condensing, Non-submerged |
IP Rating | IP 68 | Weight (no Cable) | 100 G (3.5 Oz), Typical |
Diameter | 23 Mm (0.93 In) | Height | 59 Mm (2.3 In), Including Mounting Stud |
Connector | 3-pin MIL-C-5015 Receptacle 316L Stainless Stee | Mounting Surface | 32 Minch Rms |
Case Material | 316L Stainless Steel | Mounting Angle | Any Orientation |
Highlight | Case Isolated Acceleration Transducer,GE 330400-01-05 Acceleration Transducer |
GE 330400-01-05 Bently Nevada 330400/330425 Accelerometer Acceleration Transducer With Three-Wire Piezoelectric Accelerometers
These accelerometers are intended for critical machinery applications where casing acceleration measurements are required, such as gear mesh monitoring. The 330400 is designed to address the requirements of American Petroleum Institute Standard 670 for accelerometers. It provides an amplitude range of 50 g peak and a sensitivity of 100 mV/g. The 330425 is identical except it provides a larger amplitude range (75 g peak) and a sensitivity of 25 mV/g.
If housing measurements are being made for overall protection of the machine, thought should be given to the usefulness of the measurement for each application. Most common machine malfunctions (imbalance, misalignment, etc.) originate at the rotor and cause an increase (or at least a change) in rotor vibration. In order for any housing measurement alone to be effective for overall machine protection, a significant amount of rotor vibration must be faithfully transmitted to the bearing housing or machine casing, or more specifically, to the mounting location of the transducer.
In addition, care should be exercised in the physical installation of the transducer. Improper installation can result in a degradation of the transducer’s performance, and/ or the generation of signals which do not represent actual machine vibration. Integration of the output to velocity can worsen this. Extreme caution should be exercised if integrating to velocity. For high quality velocity measurements the 330500 Velomitor Sensor should be used.
Upon request, we can provide engineering services to determine the appropriateness of housing measurements for the machine in question and/or to provide installation assistance.
Specification