Features:
Complies with national standards;
Measures and displays the effective value, peak value, crest factor, kurtosis coefficient, real-time waveform, and spectrum for each frequency band;
Features fault diagnosis capabilities. Spectral analysis of vibration signals is performed to identify bearing fault locations based on the characteristic frequencies of bearing components for quality control;
Human-machine interaction and graphical data display.
The bearing vibration measuring instrument utilizes computer and digital signal processing technology, based on comprehensive evaluation and analysis in the time and frequency domains. It accurately identifies fault locations based on the characteristic frequencies of bearing components, helping to accurately evaluate bearing performance and quality. It complies with national standards for bearing vibration technology. This instrument has been awarded the Second Prize for Scientific and Technological Progress in the Machinery Industry.
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Product Model |
S0910C |
S9912C |
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Measuring range (mm) |
Inner diameter |
Φ10~Φ60 |
Φ65~Φ120 |
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Outer diameter |
Φ22~Φ105 |
Φ110~Φ260 |
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Width |
≤40 |
≤60 |
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Velocity measurement range |
0~8000mm/s |
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Acceleration measurement range |
0dB~90dB |
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Maximum load (N) |
Radial: 400
Axial: 900 |
Radial: 900
Axial: 2000 |
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Display parameter |
RMS value, peak value, crest factor, kurtosis, real-time waveform, spectrum analysis diagram |
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Analysis function |
Envelope analysis, wavelet analysis, cepstrum analysis, etc. |
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Outer dimension(mm) |
1100×550×1500 |
1400×800×1800 |
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Installation requirements |
Air pressure: 0.45-0.65 MPa
Power supply: 1200W (S0910C), 2000W (S9912C), AC 220V ± 10%, 50 Hz Temperature: (10-30)°C Relative humidity: ≤85% |
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