FEM analysis of Quartz oscillator considering dimensions of electrode

전극형상을 고려한 수정진동자 해석 기법 연구

  • 박승배 (LG전선연구소 부품재료연구그룹) ;
  • 김종정 (LG전선연구소 부품재료연구그룹) ;
  • 이덕훈 (LG전선연구소 부품재료연구그룹) ;
  • 김태성 (LG전선연구소 부품재료연구그룹)
  • Published : 2001.07.01

Abstract

So far, the design methods of quartz crystal resonator have been developed. Recently, as the electronic package and semiconductor modules become smaller, the need to minimize the sizes of crystal components grows larger. but Minimizing crystal plate sizes has limitations because its temperature-frequency characteristics is worse and unwanted resonances occur. so appropriate design of electrode size and crystal plates is necessary. In this palter, Two-dimensional governing equations for electroded piezoelectric crystal plates with general symmetry have been solved from deduced equations from three-dimensional equations of linear piezoelectricity in most cases. In practice, electroded piezoelectric crystal plates have three-dimensional geometry, so simplified 2-dimensional equations and 2-D modeling are insufficient for explaining its resonance modes and characteristics. So, three-dimensional FEM(finite element method) analysis is done and its effectiveness is verified from analyzing practical crystal resonator model.

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