DocumentCode
3223510
Title
A method to reduce losses in buried electrodes RF SAW resonators
Author
Solal, M. ; Gratier, J. ; Aigner, R. ; Gamble, K. ; Abbott, B. ; Kook, T. ; Chen, A. ; Steiner, K.
Author_Institution
TriQuint Semicond., Apopka, FL, USA
fYear
2011
fDate
18-21 Oct. 2011
Firstpage
324
Lastpage
332
Abstract
Buried electrodes SAW resonators on lithium niobate suffer from transverse mode spurii even if the acoustic velocity inside the resonator is faster than the acoustic velocity outside the resonator (i.e. when a `waveguiding´ condition is not established). In practical devices, the electrode end gaps play an important role since they constitute a very fast region and reflect the acoustic waves creating multiple transverse modes. Guiding conditions need to be created in resonators to obtain good quality factors. This can be done by using sufficiently large gaps sizes. Unfortunately, this leads to even stronger transverse modes. The proposed solution consists in tailoring the shape of the main mode. A “piston mode” shape is obtained by adding a slow region at the edge of the active region. The mode shape is matched to the rectangular excitation and therefore, the coupling to the higher order modes becomes negligible. Results exhibit low spurious, lower losses and better effective coupling coefficients than apodized devices. Quality factors in the 1500 range are measured on resonators while CRF losses are significantly reduced.
Keywords
couplings; lithium compounds; pistons; surface acoustic wave resonators; LiNbO3; acoustic velocity; coupling coefficients; electrodes RF SAW resonators; lithium niobate; multiple transverse modes; piston mode; rectangular excitation; waveguiding condition; Acoustics; Apertures; Couplings; Electrodes; Resonant frequency; Shape; Transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium (IUS), 2011 IEEE International
Conference_Location
Orlando, FL
ISSN
1948-5719
Print_ISBN
978-1-4577-1253-1
Type
conf
DOI
10.1109/ULTSYM.2011.0078
Filename
6293066
Link To Document