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
Link To Document :
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