DocumentCode :
3456913
Title :
Thin AlN Film Resonators utilizing the Lowest order Symmetric Lamb mode: Further Developments
Author :
Yantchev, V. ; Katardjiev, I.
Author_Institution :
Uppsala Univ., Uppsala
fYear :
2007
fDate :
May 29 2007-June 1 2007
Firstpage :
1067
Lastpage :
1072
Abstract :
Thin film plate acoustic wave resonators utilizing the lowest order symmetric lamb wave (SO) propagating in highly textured 2 mum thick aluminum nitride (AlN) membranes were successfully demonstrated for the first time. Further the utilization of fast lateral modes in thin films has recently being targeted independently by other groups as well. The unperturbed SO mode in thin film AlN has an acoustic wave velocity in excess of 10 000 m/s with a weak dispersion and sufficient coupling. Q factors of around 1800 were demonstrated for 890 MHz one-port synchronous resonators operating in the vicinity of the upper stopband edge. In this work an experimental study on the resonators´ performance vs variety of design parameters is performed. Devices operating in the vicinity of the stopband center offering a Q of up to 3000 at a frequency of around 875 MHz are demonstrated. Further, micromachined 2-port longitudinally coupled thin film resonators utilizing the SO mode are demonstrated for the first time.
Keywords :
III-V semiconductors; UHF devices; acoustic wave propagation; acoustic wave velocity; aluminium compounds; plates (structures); surface acoustic wave resonators; thin film devices; two-port networks; AlN; Q factors; acoustic wave velocity; aluminum nitride membranes; design parameters; frequency 890 MHz; lowest order symmetric lamb wave propagation; micromachined 2-port longitudinally coupled thin film resonators; one-port synchronous resonators; size 2 mm; thin film plate acoustic wave resonators; weak dispersion; Acoustic devices; Acoustic propagation; Acoustic waves; Aluminum oxide; Biomembranes; Frequency; Surface acoustic wave devices; Surface acoustic waves; Thin film devices; Transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium, 2007 Joint with the 21st European Frequency and Time Forum. IEEE International
Conference_Location :
Geneva
ISSN :
1075-6787
Print_ISBN :
978-1-4244-0646-3
Electronic_ISBN :
1075-6787
Type :
conf
DOI :
10.1109/FREQ.2007.4319243
Filename :
4319243
Link To Document :
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