Tunable Electromechanical Coupling Coefficient of a Laterally Excited Bulk Wave Resonator with Composite Piezoelectric Film
Abstract
:1. Introduction
2. Theoretical Calculation of Piezoelectric Coefficient
3. FEM Simulation of XBAR
4. Design of N79 Filters
5. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Ref. | Method | Frequency | Tuning Effect | |
---|---|---|---|---|
[12] | Change electrical boundary conditions | 19% | 484 MHz | 10% to 19% |
[13] | Change the Euler angle of LiNbO3 | 55% | 3.3 GHz | 0% to 55% |
[14] | Tuning structural parameters | 25% | 5 GHz | 23% to 25% |
This work | Composite piezoelectric material | 32% | 6 GHz | 12% to 32% |
Effective Property | B1 | B2 | B3 | B4 | B5 | B6 | Formula |
---|---|---|---|---|---|---|---|
u = 0 | u = 0 | v = 0 φ = 0 | v = 0 φ = V0 | w = 0 | w = 0 | ||
u = 0 | u = 0 | v = 0 | v = 0 | w = 0 φ = 0 | w = 0 φ = V0 |
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Xie, Y.; Liu, Y.; Liu, J.; Wang, L.; Liu, W.; Soon, B.W.; Cai, Y.; Sun, C. Tunable Electromechanical Coupling Coefficient of a Laterally Excited Bulk Wave Resonator with Composite Piezoelectric Film. Micromachines 2022, 13, 641. https://doi.org/10.3390/mi13040641
Xie Y, Liu Y, Liu J, Wang L, Liu W, Soon BW, Cai Y, Sun C. Tunable Electromechanical Coupling Coefficient of a Laterally Excited Bulk Wave Resonator with Composite Piezoelectric Film. Micromachines. 2022; 13(4):641. https://doi.org/10.3390/mi13040641
Chicago/Turabian StyleXie, Ying, Yan Liu, Jieyu Liu, Lei Wang, Wenjuan Liu, Bo Woon Soon, Yao Cai, and Chengliang Sun. 2022. "Tunable Electromechanical Coupling Coefficient of a Laterally Excited Bulk Wave Resonator with Composite Piezoelectric Film" Micromachines 13, no. 4: 641. https://doi.org/10.3390/mi13040641
APA StyleXie, Y., Liu, Y., Liu, J., Wang, L., Liu, W., Soon, B. W., Cai, Y., & Sun, C. (2022). Tunable Electromechanical Coupling Coefficient of a Laterally Excited Bulk Wave Resonator with Composite Piezoelectric Film. Micromachines, 13(4), 641. https://doi.org/10.3390/mi13040641