The vibration of most rotating machines is often monitored using eddy current displacement sensors and vibration velocity sensors. For vibration monitoring and fault diagnosis of rolling bearings and gearbox machines, acceleration sensors must be used because their fault information is mostly reflected in high-frequency components. And acceleration sensors are very sensitive to high-frequency signals. The requirements for sensors in industrial sites are very high, requiring high reliability, strong anti-interference ability, and a wide range of applications. The RC6500 accelerometer has the above characteristics and is designed specifically for on-site fault diagnosis.
The vibration of most rotating machines is often monitored using eddy current displacement sensors and vibration velocity sensors. For vibration monitoring and fault diagnosis of rolling bearings and gearbox machines, acceleration sensors must be used because their fault information is mostly reflected in high-frequency components. And acceleration sensors are very sensitive to high-frequency signals. The requirements for sensors in industrial sites are very high, requiring high reliability, strong anti-interference ability, and a wide range of applications. The RC6500 accelerometer has the above characteristics and is designed specifically for on-site fault diagnosis.
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Application scope:
●Building vibration monitoring
●Bridge structure testing
●Ground vibration monitoring●Geological structure research●Ground vibration monitoring●Dam structure monitoring●Structural monitoring of sports venues●Earthquake warning
Features:
● Built in IEPE preamplifier Can be paired with ordinary coaxial shielded cables Simplify the testing system
Main technical indicators:
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dynamic characteristics
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Measurement range (peak value)
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±10g
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Sensitivity (25 ℃) ± 5%
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500mV/g (160Hz)
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Frequency response (± 1dB)
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0.5-4500Hz
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Install resonant frequency
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≥10,000Hz
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Lateral sensitivity ratio
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≤5%
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Electrical performance
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excitation voltage
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18VDC-28VDC (constant current source)
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Constant current source excitation (mA)
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2-10mA
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Output impedance
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<100 Ω
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Full range output (peak)
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±5V
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noise
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<50μV
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bias voltage
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+9-+12V
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Environmental characteristics
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Operating Temperature
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-40℃~+120℃
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Impact limit (peak value)
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±1000 g
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temperature response
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See attached figure
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physical properties
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structural form
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cut
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Shell material
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304 stainless steel
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output method
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Top M5
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Installation method
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M5
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piezoelectric material
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PZT-5
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weight
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~40 grams
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Attachment
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Install the bolt
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M5
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cable
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Dual ended M5 universal coaxial cable 2 meters
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