DocumentCode :
755874
Title :
Double-resonance SAW filters
Author :
Meltaus, Johanna ; Hong, Seong Su ; Holmgren, Olli ; Kokkonen, Kimmo ; Plessky, Victor P.
Author_Institution :
Helsinki Univ. of Technol., Espoo
Volume :
54
Issue :
3
fYear :
2007
fDate :
3/1/2007 12:00:00 AM
Firstpage :
659
Lastpage :
667
Abstract :
A novel surface acoustic wave filter on a leaky-wave substrate is studied. It features a hiccup-type resonance occurring around a distributed gap between two long interdigital transducers. Compared to a classical coupled resonator filter, it enables a relatively narrow passband (1% to 2% of center frequency) with low insertion loss, steep skirts, and improved suppression levels. The structure consists of long transducers having the number of fingers greater than 1/K2 and 1/K, where K2 is the coupling coefficient of the substrate material and K is the reflectivity per wavelength, separated with short transducer sections constituting a distributed gap. A strong, localized resonance is formed in the gap region, in addition to the resonance arising in the long structures - hence, the name double-resonance filter. The substrate studied here is 42deg-rotated lithium tantalite. We show experimental results for both single-ended and unbalanced-to-balanced filters at 1.6 GHz, having a minimum insertion loss of 1.07 dB, suppressions of 30 dB, and absolute -3-dB bandwidth of 29 MHz (1.9% of the center frequency). For the balanced device, the amplitude imbalance over the passband ranges from -0.6 dB to 2 dB arid the phase imbalance from 1deg to 4.5deg. Furthermore, we have measured the acoustical power distributions using a scanning laser interferometer, and we compare these results with the profiles simulated using a coupling-of-modes model
Keywords :
UHF filters; acoustic resonance; surface acoustic wave resonator filters; surface acoustic wave transducers; 1.07 dB; 1.6 GHz; 29 MHz; acoustical power distributions; coupled resonator filter; coupling-of-modes model; double-resonance SAW filters; hiccup-type resonance; interdigital transducers; leaky-wave substrate; lithium tantalite; scanning laser interferometer; single-ended filters; substrate material; surface acoustic wave filter; unbalanced-to-balanced filters; Acoustic transducers; Acoustic waves; Fingers; Frequency; Insertion loss; Passband; Resonance; Resonator filters; SAW filters; Surface acoustic waves; Acoustics; Equipment Design; Equipment Failure Analysis; Signal Processing, Computer-Assisted; Surface Properties; Transducers;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2007.289
Filename :
4139346
Link To Document :
بازگشت