DocumentCode
3451077
Title
Design optimization for acceleration sensitivity
Author
Stewart, J.T. ; Stevens, D.S.
Author_Institution
Vectron Int. Inc., Hudson, NH, USA
fYear
1998
fDate
27-29 May 1998
Firstpage
852
Lastpage
860
Abstract
One of the fundamental problems faced in producing precision crystal resonators is that the acceleration sensitivity can be very sensitive to manufacturing tolerances for a particular design. The present study seeks to quantify this phenomena by using a finite element model to obtain an accurate description of the stresses and deformations in a crystal plate that has been mounted in various configurations and then combine this solution with an analytical solution of the vibration mode shape for a harmonic of thickness shear in the general perturbation procedure to obtain the frequency shift. To this end, a very powerful software tool has been created to compute the frequency shift under any applied static bias. This finite element procedure has been integrated into a general nonlinear optimization program to automate the search for good designs. Example problems of resonators of various geometries and mounting schemes are presented
Keywords
CAD; crystal resonators; electronic engineering computing; finite element analysis; optimisation; acceleration sensitivity; analytical solution; crystal plate; deformations; design optimization; finite element model; frequency shift; harmonics; manufacturing tolerances; nonlinear optimization; precision crystal resonators; software tool; static bias; stresses; thickness shear; vibration mode; Acceleration; Deformable models; Design optimization; Finite element methods; Frequency; Harmonic analysis; Manufacturing; Shape; Software tools; Stress;
fLanguage
English
Publisher
ieee
Conference_Titel
Frequency Control Symposium, 1998. Proceedings of the 1998 IEEE International
Conference_Location
Pasadena, CA
ISSN
1075-6787
Print_ISBN
0-7803-4373-5
Type
conf
DOI
10.1109/FREQ.1998.718000
Filename
718000
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