• DocumentCode
    2589308
  • Title

    Demonstration of inverse acoustic band gap structures in AlN and integration with piezoelectric contour mode wideband transducers

  • Author

    Kuo, Nai-Kuei ; Zuo, Chengjie ; Piazza, Gianluca

  • Author_Institution
    Dept. of Electr. & Syst. Eng., Univ. of Pennsylvania, Philadelphia, PA, USA
  • fYear
    2009
  • fDate
    20-24 April 2009
  • Firstpage
    10
  • Lastpage
    13
  • Abstract
    This paper presents the first design and demonstration of a novel inverse acoustic band gap (IABG) structure in aluminum nitride (AlN) and its direct integration with contour-mode wideband transducers in the Very High Frequency (VHF) range. This design implements an efficient approach to co-fabricate in-plane AlN electro-acoustic transducers with bulk acoustic waves (BAWs) IABG arrays (10 times 10). The IABG unit cell consists of a cylindrical high acoustic velocity (V) media, which is held by four thin tethers, surrounded by a low acoustic velocity matrix (air). The center media is formed by 2-mum-thick AlN, which is sandwiched by 200-nm-thick top and bottom platinum (Pt) layers. The experimental results indicate that the designed IABG has a stop band from 185 MHz to 240 MHz and is centered at 218 MHz in the Gamma-X direction. This demonstration not only confirms the existence of the frequency band gap in the IABG structure, but also opens possibilities for the integration of ABG structures with RF MEMS devices.
  • Keywords
    III-V semiconductors; acoustic transducer arrays; aluminium compounds; bulk acoustic wave devices; metal-semiconductor-metal structures; piezoelectric transducers; platinum; wide band gap semiconductors; Gamma-X direction; Pt-AlN-Pt; acoustic velocity matrix; bandwidth 185 MHz to 240 MHz; bulk acoustic waves arrays; contour-mode wideband transducers; cylindrical high acoustic velocity media; electro-acoustic transducers; inverse acoustic band gap structure; piezoelectric transducers; size 2 mum; size 200 nm; stop band; tethers; Acoustic arrays; Acoustic transducers; Acoustic waves; Aluminum nitride; Frequency; Photonic band gap; Piezoelectric transducers; Platinum; Radiofrequency microelectromechanical systems; Wideband;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frequency Control Symposium, 2009 Joint with the 22nd European Frequency and Time forum. IEEE International
  • Conference_Location
    Besancon
  • ISSN
    1075-6787
  • Print_ISBN
    978-1-4244-3511-1
  • Electronic_ISBN
    1075-6787
  • Type

    conf

  • DOI
    10.1109/FREQ.2009.5168133
  • Filename
    5168133