This work presents a method for the characterization of piezoelectric MEMS by combining dynamic and static testing with an advanced analytical model. The proposed identification procedure effectively determines the piezoelectric constant through static measurements, while dynamic actuation experiments are employed to extract the dielectric constant and the quality factor. The advanced analytical model is versatile, allowing the methodology to be applied seamlessly to the analysis of both piezoelectric beams and plates. In this study, the procedure is applied to a MEMS cantilever plate equipped with a layer of AlN. The results validate the effectiveness of the proposed methodology, showing strong agreement with values obtained from other approaches in the literature.
Characterization of AlN in MEMS: Synergistic use of dynamic testing, static profilometry, and an enhanced reduced-order model
Rosso, Michele;Maspero, Federico;Corigliano, Alberto;Ardito, Raffaele
2025-01-01
Abstract
This work presents a method for the characterization of piezoelectric MEMS by combining dynamic and static testing with an advanced analytical model. The proposed identification procedure effectively determines the piezoelectric constant through static measurements, while dynamic actuation experiments are employed to extract the dielectric constant and the quality factor. The advanced analytical model is versatile, allowing the methodology to be applied seamlessly to the analysis of both piezoelectric beams and plates. In this study, the procedure is applied to a MEMS cantilever plate equipped with a layer of AlN. The results validate the effectiveness of the proposed methodology, showing strong agreement with values obtained from other approaches in the literature.| File | Dimensione | Formato | |
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