Title :
Quadrature oscillator with pre-distorted waveforms for application in MEMS-based mechanical spectrum analyser
Author :
de Graaf, G. ; Mol, L. ; Rocha, L. ; Cretu, E. ; Wolffenbuttel, R.F.
Author_Institution :
DIMES/IE, Delft Univ. of Technol., Netherlands
Abstract :
An AC-operated capacitive accelerometer with electrostatic force feedback is employed for direct mechanical spectrum analysis. A suitable electrostatic AC field is used to make the accelerometer selectively sensitive to only the coherent mechanical frequency component. By sweeping the frequency of the drive voltage over a selected range, the mechanical (vibration) spectrum is analysed in the mechanical domain. Operation requires the simultaneous generation of predistorted sine- and cosine-like waveforms. A DDFS with DAC, based on a specially scaled resistive string, is designed, fabricated in CMOS and tested. Spurious free dynamic range is 22 dB over a frequency range of DC up to 1 kHz. The spectral performance is comparable to FFT-based systems for spectral analysis on a time series supplied by a conventional accelerometer, while the overall system features a reduced complexity, simple spectral in-zooming and potential for low power consumption.
Keywords :
CMOS integrated circuits; accelerometers; capacitive sensors; digital-analogue conversion; direct digital synthesis; electrostatic devices; microsensors; spectral analysers; swept-frequency oscillators; vibration measurement; 0 Hz to 1 kHz; AC-operated capacitive accelerometer; CMOS; DAC; DDFS; MEMS-based mechanical spectrum analyser; cosine-like waveforms; direct mechanical spectrum analysis; drive voltage frequency sweeping; electrostatic AC field; electrostatic force feedback; micromachined capacitive accelerometer; predistorted waveforms; quadrature oscillator; scaled resistive string; selectively sensitive accelerometer; sine-like waveforms; spectral in-zooming; spurious free dynamic range; vibration analysis; Accelerometers; Dynamic range; Dynamic voltage scaling; Electrostatic analysis; Force feedback; Frequency; Oscillators; Spectral analysis; Testing; Vibrations;
Conference_Titel :
Solid-State Circuits Conference, 2004. ESSCIRC 2004. Proceeding of the 30th European
Print_ISBN :
0-7803-8480-6
DOI :
10.1109/ESSCIR.2004.1356704