• DocumentCode
    2523336
  • Title

    Temperature characteristics of langanite bulk wave vibrations

  • Author

    Senjushenkov, P.A. ; Hristoforova, T.V. ; Mill, B.V. ; Hristoforov, V.N. ; Pisarevsky, Yu.V.

  • Author_Institution
    Inst. of Crystallogr., Acad. of Sci., Moscow, Russia
  • fYear
    1996
  • fDate
    5-7 Jun 1996
  • Firstpage
    137
  • Lastpage
    140
  • Abstract
    Langanite (NGL) is the promising material for FC applications. In present work we measured NGL piezoelectric constants at temperature range -196°C-+120°C. This results and previous data on temperature dependencies (TD) other constants enabled to make the complete theoretical analysis of thickness vibration parameters of NGL single and double rotation cuts in wide temperature range. Thermally compensated xybl/α/β cuts were theoretically found for several modes. For slow shear mode first and second order temperature coefficients (TC) could be zero simultaneously. From our calculations resonator frequency shift at temperature range could be 2-4 times better than SGL one. High quality NGL single crystals were grown by Czochralski method NGL plane, plano-convex and double-convex plates were prepared and tested at temperature range 15°C-120°C on fundamental and 3, 5, 7 overtone frequencies. It experimentally suggested zero cuts existence. From above data and possibility to grow high quality single crystals NGL seems to be more promising compare with SGL
  • Keywords
    crystal resonators; frequency control; gallium compounds; lanthanum compounds; -196 to 120 C; Czochralski method; FC applications; La3Ga5.5Nb0.5O14; bulk wave vibrations; double rotation; double-convex plates; piezoelectric constants; plano-convex plates; resonator frequency shift; single rotation; temperature coefficient; temperature dependence; thickness vibration parameters; Temperature;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frequency Control Symposium, 1996. 50th., Proceedings of the 1996 IEEE International.
  • Conference_Location
    Honolulu, HI
  • Print_ISBN
    0-7803-3309-8
  • Type

    conf

  • DOI
    10.1109/FREQ.1996.559833
  • Filename
    559833