Title :
Study of LGS crystal micro-resonators using flexure mode: Temperature-compensated cuts
Author :
Douchet, G. ; Sthal, F. ; Bigler, E. ; Bourquin, R.
Author_Institution :
Dept. of Freq. & Time, FEMTO-ST, Besancon
Abstract :
In this paper, new experiments have been carried out on LGS crystal to highlight the existence of temperature compensated cuts for flexure vibration. The micro-resonators are square cross section tuning forks whose arms are vibrating in flexure-mode with clamped-free boundary conditions. Frequency versus temperature behaviors have been measured for several cut angles. The results of our experiments show that there is a first order temperature-compensated cut for Langasite crystal resonators vibrating in flexion at room temperature.
Keywords :
compensation; crystal resonators; frequency measurement; micromechanical resonators; temperature measurement; vibrations; LGS crystal microresonator; Langasite crystal resonator vibration; clamped-free boundary condition; flexure mode; frequency measurement; square cross section tuning fork; temperature measurement; temperature-compensated cut; Analytical models; Boundary conditions; Crystalline materials; Crystallography; Equations; Piezoelectric materials; Resonant frequency; Temperature dependence; Thermal expansion; Vibrations;
Conference_Titel :
Frequency Control Symposium, 2008 IEEE International
Conference_Location :
Honolulu, HI
Print_ISBN :
978-1-4244-1794-0
Electronic_ISBN :
1075-6787
DOI :
10.1109/FREQ.2008.4623014