Title :
Modelling of SAW transversely coupled resonator filters using coupling-of-modes modeling technique
Author :
Hartmann, C.S. ; Chen, C. S Hartmann D P ; Heighway, J.
Author_Institution :
Hartmann Res. Inc., Dallas, TX, USA
Abstract :
A modeling method is described for using coupling-of-modes to model each transverse mode of a surface acoustic wave (SAW) transversely coupled resonator filter (TCF). Closed-form expressions are obtained which accurately describe the characteristics of this device class. The derivation of the model is described, a comparison between theory and experimental device performance is given, and the use of the model to synthesize optimized SAW TCFs is illustrated. The model is compared to experimental results in which excellent agreement is obtained over a 60- to 80-dB range, depending upon the device design. The accuracy of the model combined with closed-form expressions for filter performance allows for the use of nonlinear least-squares fitting techniques for experimentally determining coupling-of-modes (COM) model parameter values
Keywords :
acoustic resonators; crystal resonators; least squares approximations; surface acoustic wave filters; SAW transversely coupled resonator filters; accuracy; closed form expressions; coupling-of-modes modeling technique; modeling method; nonlinear least-squares fitting techniques; surface acoustic wave; transverse mode; Acoustic transducers; Admittance; Capacitance; Closed-form solution; Coupling circuits; Electric resistance; Gratings; Resonator filters; Surface acoustic waves; Ultrasonic transducers;
Conference_Titel :
Ultrasonics Symposium, 1992. Proceedings., IEEE 1992
Conference_Location :
Tucson, AZ
Print_ISBN :
0-7803-0562-0
DOI :
10.1109/ULTSYM.1992.276067