TY - JOUR
T1 - A High-Performance Mode-Localized Accelerometer Employing a Quasi-Rigid Coupler
AU - Zhang, Hemin
AU - Sobreviela, Guillermo
AU - Chen, Dongyang
AU - Pandit, Milind
AU - Sun, Jiangkun
AU - Zhao, Chun
AU - Seshia, Ashwin
N1 - Publisher Copyright:
© 1980-2012 IEEE.
PY - 2020/10
Y1 - 2020/10
N2 - An ultra-sensitive mode-localized accelerometer is reported in this letter. In order to lower the coupling factor of the coupled resonators thus improving the parametric amplitude ratio sensitivity, a stiff anchor support is employed as a mechanical coupler between resonators. A coupling factor of 7.4\times 10^{-5} was obtained, which is so far the lowest mechanical coupling factor that has been reported for weakly coupled MEMS sensors. As a result, the proposed mode-localized accelerometer demonstrates an input-referred bias instability as high as 280ng within an integration time from 3s to 300s, and an input-referred noise floor of 250ng/ \surd Hz, without utilizing temperature control or other environmental compensation, benchmarking as the highest resolution mode-localized accelerometer to-date. These metrics are comparable to state-of-The-Art MEMS frequency-modulated resonant and capacitive accelerometers while exhibiting superior common-mode rejection to environmental effects.
AB - An ultra-sensitive mode-localized accelerometer is reported in this letter. In order to lower the coupling factor of the coupled resonators thus improving the parametric amplitude ratio sensitivity, a stiff anchor support is employed as a mechanical coupler between resonators. A coupling factor of 7.4\times 10^{-5} was obtained, which is so far the lowest mechanical coupling factor that has been reported for weakly coupled MEMS sensors. As a result, the proposed mode-localized accelerometer demonstrates an input-referred bias instability as high as 280ng within an integration time from 3s to 300s, and an input-referred noise floor of 250ng/ \surd Hz, without utilizing temperature control or other environmental compensation, benchmarking as the highest resolution mode-localized accelerometer to-date. These metrics are comparable to state-of-The-Art MEMS frequency-modulated resonant and capacitive accelerometers while exhibiting superior common-mode rejection to environmental effects.
KW - accelerometer
KW - coupled resonators
KW - MEMS resonators
KW - Vibration mode localization
UR - http://www.scopus.com/inward/record.url?scp=85092361924&partnerID=8YFLogxK
U2 - 10.1109/LED.2020.3020527
DO - 10.1109/LED.2020.3020527
M3 - 文章
AN - SCOPUS:85092361924
SN - 0741-3106
VL - 41
SP - 1560
EP - 1563
JO - IEEE Electron Device Letters
JF - IEEE Electron Device Letters
IS - 10
M1 - 9180273
ER -