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Multi-Way In-Phase/Out-of-Phase Driving Cantilever Array for Performance Enhancement of PZT MEMS Microspeaker
Conference paper

Multi-Way In-Phase/Out-of-Phase Driving Cantilever Array for Performance Enhancement of PZT MEMS Microspeaker

Yi-Jia Wang, Sung-Cheng Lo, Meng-Lin Hsieh, Shao-Da Wang, Yu-Chen Chen, Mingching Wu and Weileun Fang
Proceedings of the IEEE International Conference on Micro Electro Mechanical Systems (MEMS), Vol.2021-January, pp.83-84
01/2021

Abstract

acoustics cantilever array in-phase / out-of-phase driving MEMS piezoelectric speaker multi-way PZT Electronic Optical and Magnetic Materials Condensed Matter Physics Mechanical Engineering Electrical and Electronic Engineering
This study presents a broadband piezoelectric MEMS microspeaker based on the design of cantilever array and novel driving method in Fig. 1a. Two main points are featured in this study: (1) The design of multi-way microspeaker with cantilever array: to improve the bandwidth of the microspeaker. The SPL is enlarged in selected frequency ranges contributed by the different resonant frequencies of each cantilever; (2) The out-of-phase driving of each cantilever after resonance: to prevent the sound pressure cancellation between cantilevers resulted from the 180° structural phase shift after resonance. In comparison, Fig. 1b shows two different driving approaches. Measurement results show the highest SPL of 110dB at 1540Hz in ear simulator system with a driving voltage of 2Vpp under 4mm diaphragm area. In addition, out-of-phase driving promises an improvement of 27dB at 3.7kHz where sound pressure cancellation took place. A broadband frequency response is obtained between 100Hz10kHzwith an SPL of 70dB or higher with out-of-phase driving. With multi-way cantilever array design and in-phase/out-of-phase hybrid-driving, a high SPL and broadband microspeaker is realized.

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