This work presents a two-port "overpass"electrode design for a circular-shaped PMUT that reproduces the anti-phase inner/outer excitation effect of a traditional inner- outer electrode design with three ports. The proposed overpass connections create opposed local electric fields in a uniformly polarized piezoelectric thin film, enabling constructive charge addition while simplifying hardware connections. A circular-shaped PMUT cell with the proposed electrode design was fabricated and compared to an identical PMUT cell using the conventional inner/outer electrode layout. Air-coupled frequency response of the central velocity shows that the overpass design delivers two times higher output sensitivity than conventional electrode design with only single-electrode excitation (inner-only or outer-only), while requiring only two ports. The approach also yields a substantial increase in electromechanical coupling (k2), and adds no complexity to the thin-film stack and driving circuitry, improving scalability for large element-count arrays.

Xu, T., Da, Z., Streque, J., Havránek, Z., Xu, J., Rocha, R.T., et al. (2025). Efficient Electrode Configuration for High-Sensitivity Performance with Minimal Analog Front-End Complexity. In IEEE International Ultrasonics Symposium, IUS (pp.1-3). 345 E 47TH ST, NEW YORK, NY 10017 USA : IEEE Computer Society [10.1109/ius62464.2025.11201611].

Efficient Electrode Configuration for High-Sensitivity Performance with Minimal Analog Front-End Complexity

Savoia, Alessandro Stuart
2025-01-01

Abstract

This work presents a two-port "overpass"electrode design for a circular-shaped PMUT that reproduces the anti-phase inner/outer excitation effect of a traditional inner- outer electrode design with three ports. The proposed overpass connections create opposed local electric fields in a uniformly polarized piezoelectric thin film, enabling constructive charge addition while simplifying hardware connections. A circular-shaped PMUT cell with the proposed electrode design was fabricated and compared to an identical PMUT cell using the conventional inner/outer electrode layout. Air-coupled frequency response of the central velocity shows that the overpass design delivers two times higher output sensitivity than conventional electrode design with only single-electrode excitation (inner-only or outer-only), while requiring only two ports. The approach also yields a substantial increase in electromechanical coupling (k2), and adds no complexity to the thin-film stack and driving circuitry, improving scalability for large element-count arrays.
2025
Xu, T., Da, Z., Streque, J., Havránek, Z., Xu, J., Rocha, R.T., et al. (2025). Efficient Electrode Configuration for High-Sensitivity Performance with Minimal Analog Front-End Complexity. In IEEE International Ultrasonics Symposium, IUS (pp.1-3). 345 E 47TH ST, NEW YORK, NY 10017 USA : IEEE Computer Society [10.1109/ius62464.2025.11201611].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/547101
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