• DocumentCode
    956551
  • Title

    New transmission line analogy applied to single and multilayered piezoelectric transducers

  • Author

    Dion, Jean-Luc

  • Author_Institution
    Lab. d´´Ultrasonique et Capteurs, Quebec Univ., Trois-Rivieres, Que., Canada
  • Volume
    40
  • Issue
    5
  • fYear
    1993
  • Firstpage
    577
  • Lastpage
    583
  • Abstract
    It is shown that a piezoelectric element vibrating in an extensional or shear mode can be modeled rigorously by systematic use of the transmission line analogy and the superposition theorem. A schematic representation of such an element which is in a way more intuitive than others representations is introduced. The stresses on the electroded faces are considered as sources of stress applied at the two ends of an acoustic transmission line, since the acoustical perturbations may be considered as originating on these faces. Using transmission line theory, a complete set of expressions is found for electrical impedance, acoustic stresses, and velocities. Computed results are exactly the same as those given by the classical method, even if the computation sequence is almost entirely different. An intuitive graphical model for a piezoelectric element is proposed. It is also shown that the acoustic velocities on opposite faces of an asymmetrical loaded piezoelectric plate are exactly equal at the antiresonance frequency when internal losses are neglected. The programs developed can be used efficiently for practical multilayered transducer design.<>
  • Keywords
    acoustic wave velocity; electric impedance; modelling; piezoelectric transducers; transmission line theory; acoustic stresses; acoustic transmission line; acoustic velocity; acoustical perturbations; antiresonance frequency; electrical impedance; extensional mode; graphical model; internal losses; multilayered design; piezoelectric transducers; shear mode; single-layer design; superposition theorem; transmission line analogy; Acoustic propagation; Attenuation; Frequency; Graphical models; Impedance; Piezoelectric transducers; Quantum computing; Stress; Transmission line theory; Transmission lines;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/58.238111
  • Filename
    238111