DocumentCode
1422468
Title
Design, simulation, and visualization of R-SPUDT devices with transverse mode suppression
Author
Solal, Marc ; Holmgren, Olli ; Kokkonen, Kimmo
Author_Institution
R&D Dept., TriQuint Semicond., Apopka, FL, USA
Volume
57
Issue
2
fYear
2010
fDate
2/1/2010 12:00:00 AM
Firstpage
412
Lastpage
420
Abstract
When designing narrow band resonant SPUDT devices, the excitation of undesired transverse modes may result both in extra ripple in the passband and in spurious response in the stop band. To avoid these issues, it was proposed to use an approach similar to the one used for bulk-acoustic-wave devices. The principle is to add a low-velocity region at the edge of the transducer. If this edge region is properly designed, the transducer supports a so-called piston mode, i.e., a mode having a flat transverse amplitude profile across the aperture. A P-matrix model is extended to account for transverse modes in SPUDTs. The model is used to analyze both regular and piston-mode devices. Different physical possibilities to implement the low-velocity region are investigated and compared. In particular, it was found important to design the transducer so that the acoustical sources and reflectors extend into the edge region to minimize the coupling to higher order modes. From these considerations, a new implementation for piston-mode devices is proposed and demonstrated on a GSM base station 199-MHz filter. Electrical measurements as well as acoustical wave fields measured with an optical interferometer are analyzed and compared with simulations.
Keywords
acoustic radiators; acoustic transducers; bulk acoustic wave devices; GSM base station; P-matrix model; R-SPUDT device design; R-SPUDT device simulation; R-SPUDT device visualization; acoustic transducer; acoustical reflectors; acoustical sources; bulk acoustic wave devices; piston mode; transverse mode suppression; Acoustic measurements; Electric variables measurement; Narrowband; Optical filters; Optical interferometry; Passband; Pistons; Resonance; Transducers; Visualization;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2010.1421
Filename
5417200
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