DocumentCode :
2771274
Title :
Characteristics of the piezoelectric vibratory gyrosensor constructed using a trident tuning-fork resonator
Author :
Satoh, A. ; Ohnishi, K. ; Tourikawa, Y.
Author_Institution :
Mechatronic Device Div., Tohoku Alps Co Ltd, Miyagi, Japan
Volume :
1
fYear :
1998
fDate :
1998
Firstpage :
555
Abstract :
The vibratory gyrosensor is an instrument that detects angular velocity by the measurement of the Coriolis force. The authors have developed a compact and reliable vibratory gyrosensor using a trident tuning-fork resonator, which has high performance characteristics. The construction of an ideal vibratory gyrosensor requires solutions to problems associated with external shock and vibrations as well as energy loss through the mounting. Therefore, we developed a new vibratory gyrosensor that uses a trident tuning-fork. In developing the vibratory gyrosensor, the dimensional conditions necessary for a stable mounting of the trident tuning-fork were clarified, and the temperature drift characteristics of the gyrosensor more minimized. The present paper describes in detail the characteristics of proposed gyrosensor for practical use. The proposed vibratory gyrosensor using a trident tuning-fork resonator achieved high-performance and was found to be more practical than the beam type or ordinary tuning-fork type gyrosensors
Keywords :
Coriolis force; Q-factor; angular velocity measurement; compensation; gyroscopes; mechanical stability; piezoelectric oscillations; piezoelectric transducers; vibrations; Coriolis force; FEA; angular velocity detection; compact reliable sensor; dimensional conditions; equivalent circuit; high performance characteristics; high stability; mechanical Q factor; piezoelectric vibratory gyrosensor; stable mounting; temperature drift characteristics; trident tuning-fork resonator; Mechatronics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 1998. Proceedings., 1998 IEEE
Conference_Location :
Sendai
ISSN :
1051-0117
Print_ISBN :
0-7803-4095-7
Type :
conf
DOI :
10.1109/ULTSYM.1998.762211
Filename :
762211
Link To Document :
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