DocumentCode :
1874160
Title :
A dynamically mode-matched piezoelectrically transduced high-frequency flexural disk gyroscope
Author :
Hodjat-Shamami, Mojtaba ; Norouzpour-Shirazi, Arashk ; Tabrizian, Roozbeh ; Ayazi, Farrokh
Author_Institution :
Georgia Inst. of Technol., Atlanta, GA, USA
fYear :
2015
fDate :
18-22 Jan. 2015
Firstpage :
789
Lastpage :
792
Abstract :
This paper presents, for the first time, the design, implementation, and characterization of a dynamically mode-matched high-frequency piezoelectrically transduced silicon disk gyroscope utilizing a unique pair of degenerate orthogonal in-plane flexural gyroscopic modes. To eliminate the need for submicron capacitive gaps and large DC polarization voltages that are needed for electrostatic tuning, a linear bidirectional frequency tuning scheme, compatible with all-piezoelectric transduction, is introduced to achieve dynamic mode-matching via active electromechanical feedback. A fabricated 4.34 MHz AlN-on-Silicon 1-mm-diameter solid disk gyroscope supported by a network of peripheral beams was frequency-tuned by 500 ppm (~2.2 kHz) and achieved a high measured sensitivity of 410 pA/°/s with an effective in-air quality factor of ~4000, corresponding to a large open-loop operation bandwidth of ~550 Hz under mode-matched conditions.
Keywords :
aluminium compounds; bulk acoustic wave devices; elemental semiconductors; gyroscopes; piezoelectric transducers; silicon; AlN; Si; active electromechanical feedback; degenerate orthogonal in-plane flexural gyroscopic modes; dynamic mode-matching; dynamically mode-matched flexural disk gyroscope; electrostatic tuning; frequency 4.34 MHz; high-frequency flexural disk gyroscope; large DC polarization voltages; linear bidirectional frequency tuning scheme; piezoelectrically transduced flexural disk gyroscope; silicon disk gyroscope; submicron capacitive gaps; Drives; Electrodes; Gyroscopes; Q-factor; Resonant frequency; Sensitivity; Tuning;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2015 28th IEEE International Conference on
Conference_Location :
Estoril
Type :
conf
DOI :
10.1109/MEMSYS.2015.7051077
Filename :
7051077
Link To Document :
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