Investigating Amplitude Modulation Effects on Wide Bandwidth & High SPL Sc0.3Al0.7N MEMS Ultrasonic Speakers

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Investigating Amplitude Modulation Effects on Wide Bandwidth & High SPL Sc0.3Al0.7N MEMS Ultrasonic Speakers
Title:
Investigating Amplitude Modulation Effects on Wide Bandwidth & High SPL Sc0.3Al0.7N MEMS Ultrasonic Speakers
Journal Title:
2025 IEEE International Ultrasonics Symposium (IUS)
Publication Date:
20 October 2025
Citation:
Choong, D. S. W., Thien, Y. F., Chigahalli, P., Goh, D. J., Trivedi, S., Liu, J., Teo, Y. S., Yan, H., Chen, D., Koh, Y., Leotti, A., Teo, C. K., & Adorno, S. (2025). Investigating Amplitude Modulation Effects on Wide Bandwidth & High SPL Sc0.3Al0.7N MEMS Ultrasonic Speakers. In (Editor), 2025 IEEE International Ultrasonics Symposium (IUS). https://doi.org/10.1109/ius62464.2025.11201594
Abstract:
In this work, we investigate the performance of 30% scandium-doped aluminum nitride (ScAlN) MEMS devices for transmitting audible-range sounds and enhancing low-frequency bass response using amplitude modulation (AM). The baseline 4 × 5 array device, with a 22 kHz resonance, exhibits limited acoustic power below 1 kHz, producing 90 dB SPL (sound pressure level) compared to 126 dB SPL at resonance. By applying varying AM depths, we demonstrate an increase in SPL at lower frequencies, reaching 120 dB SPL. Audio signals captured using a high-resolution ear simulator were post-processed to assess total harmonic distortion (THD), revealing a substantial improvement—from 112.3% without AM to 0.54% with AM. These findings highlight AM as an effective approach to extending low-frequency performance and reducing distortion in ScAlN MEMS acoustic devices.
License type:
Publisher Copyright
Funding Info:
This research / project is supported by the ASTAR - Piezo Specialty Lab-in-Fab 2.0
Grant Reference no. : I2301E0027
Description:
© 2025 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
ISSN:
amplitude modulation
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