Title :
Bandpass filters for 8 GHz using solidly mounted bulk acoustic wave resonators
Author :
Lanz, R. ; Muralt, Paul
Author_Institution :
Unaxis Balzers Ltd., Liechtenstein
fDate :
6/1/2005 12:00:00 AM
Abstract :
Frequency shift, design, and fabrication issues have been investigated for the realization of 8 GHz bandpass filters based on AlN thin film bulk acoustic wave resonators. Fabrication includes well-textured AlN thin films on Pt (111) electrodes and SiO/sub 2//AlN Bragg gratings for the solidly mounted resonators. The chosen ladder filter design requires the tuning of the shunt resonators with respect to the series one. For this purpose, mass loading of the shunt resonators with aluminum (Al) and SiO/sub 2/ were studied. Design simulations showed that the channel bandwidth can be doubled by shifting more than the difference of resonance and antiresonance frequency. Bandpass filters at 8 GHz were successfully fabricated with -5.5 dB insertion loss, -26 dB out-of-band rejection, 99 MHz (1.2%) /spl plusmn/0.2 dB channel bandwidth, and 224 MHz (2.8%) 3 dB bandwidth. The group delay variations within any 30 MHz channel inside the channel bandwidth amounts to <0.2 ns. Comparisons with simulation calculations and single resonator characteristics show that each /spl pi/-section includes a parasitic series resistance and inductance.
Keywords :
Bragg gratings; III-V semiconductors; acoustic resonator filters; aluminium compounds; band-pass filters; ladder filters; microwave filters; semiconductor thin films; silicon compounds; wide band gap semiconductors; -5.5 dB; 224 MHz; 30 MHz; 8 GHz; 99 MHz; AlN; AlN thin film; Bragg gratings; Pt; Pt (111) electrodes; SiO/sub 2/-AlN; acoustic wave resonators; antiresonance frequency; bandpass filters; channel bandwidth; filter design; frequency shift; group delay variations; inductance; insertion loss; ladder filter design; mass loading; out-of-band rejection; parasitic series resistance; shunt resonator tuning; single resonator characteristics; Acoustic resonator filters; Aluminum compounds; Bandpass filters; Ladder filters; Microwave filters; Semiconductor films; Silicon compounds;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2005.1504014