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Yao Zhu

Researcher at Agency for Science, Technology and Research

Publications -  69
Citations -  671

Yao Zhu is an academic researcher from Agency for Science, Technology and Research. The author has contributed to research in topics: Resonator & Coupling coefficient of resonators. The author has an hindex of 9, co-authored 49 publications receiving 305 citations. Previous affiliations of Yao Zhu include Singapore Science Park & Nanyang Technological University.

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Artificial Intelligence-Enabled Caregiving Walking Stick Powered by Ultra-Low-Frequency Human Motion.

TL;DR: A walking stick powered by ultra-low-frequency human motion and equipped with deep-learning-enabled advanced sensing features to provide a healthcare-monitoring platform for motion-impaired users to help them live life with adequate autonomy and safety is reported.
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ScAlN-Based LCAT Mode Resonators Above 2 GHz With High FOM and Reduced Fabrication Complexity

TL;DR: In this paper, the first implementation of a new class of laterally coupled alternating thickness (LCAT) mode resonators operating above 2 GHz was reported by replacing the bottom interdigitated electrodes of the conventional LCAT mode resonator with an electrically floating plate.
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A High Coupling Coefficient 2.3-GHz AlN Resonator for High Band LTE Filtering Application

TL;DR: In this paper, an aluminium nitride (AlN)-based micromechanical resonator with high effective coupling coefficient ( $k_{\textrm {eff}}^{2})$ and low insertion loss (IL), which are comparable with those of Film Bulk Acoustic Resonators (FBARs), is reported.
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Methods for improving electromechanical coupling coefficient in two dimensional electric field excited AlN Lamb wave resonators

TL;DR: An AlN piezoelectric Lamb-wave resonator, which is excited by two dimensional electric field, is reported in this paper, where rhombus-shape electrodes are arranged on AlN thin film in a checkered formation.
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Over 10% of ${k}_{\text{eff}}^{{2}}$ Demonstrated by 2-GHz Spurious Mode-Free Sc 0.12 Al 0.88 N Laterally Coupled Alternating Thickness Mode Resonators

TL;DR: In this article, a group of laterally coupled alternating thickness (LCAT) mode resonators based on 12% scandium-doped aluminum nitride (Sc0.12Al0.88N) are reported.