• 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