DocumentCode :
128975
Title :
Advances in nonlinear measurement & modeling of bulk acoustic wave resonators (invited)
Author :
Feld, David A. ; Shim, Dong S. ; Fouladi, Siamak ; Bayatpur, Farhad
Author_Institution :
Wireless Semicond. Div., AVAGO Technol., San Jose, CA, USA
fYear :
2014
fDate :
3-6 Sept. 2014
Firstpage :
264
Lastpage :
272
Abstract :
Microwave acoustic filters operated at high power levels generate nonlinear mixing products necessitating improved nonlinear modeling. The latest communications protocols place strict limits on such mixing products including the generation of intermodulation distortion products, which desensitize a receiver, as well as second harmonic emissions. We extend the conventional nonlinear acoustic theory and practice into the microwave frequency range. We have developed a methodology for modeling the linear and nonlinear response of a resonator comprised of arbitrary piezoelectric and metal electrode layers and thicknesses. In this work we assume that the piezoelectric film is the dominant nonlinear source. An extended set of piezoelectric constitutive equations containing arbitrary nonlinear terms representing the behavior of the piezoelectric film is mapped into a general purpose nonlinear circuit, which is an extension to Mason´s original linear model of a resonator. A harmonic balance circuit simulator is used to solve this extended set of constitutive equations. We have fitted our model to a set of nonlinear two-tone resonator measurements by identifying four dominant nonlinear terms, by adjusting their corresponding scaling parameters such that the in- and out-of-band 2nd harmonic emissions and inter-modulation-3 products generated by the model is consistent with our measurements.
Keywords :
acoustic resonators; bulk acoustic wave devices; harmonic generation; microwave filters; nonlinear acoustics; piezoelectric devices; piezoelectric thin films; arbitrary piezoelectric layer; bulk acoustic wave resonator modeling; bulk acoustic wave resonator nonlinear measurement; harmonic balance circuit simulator; intermodulation distortion products; metal electrode layer; microwave acoustic filters; microwave frequency range; nonlinear acoustic theory; nonlinear mixing products; nonlinear resonator response; nonlinear source; piezoelectric constitutive equations; piezoelectric film; second harmonic emission; Equations; Harmonic analysis; Integrated circuit modeling; Mathematical model; Resonant frequency; Resonator filters; Telephone sets;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
Type :
conf
DOI :
10.1109/ULTSYM.2014.0067
Filename :
6931724
Link To Document :
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