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◆ IEEE transactions on ultrasonics2026-02-01

Insights Into High-Frequency Spurious Suppression of LLSAW Devices Based on Cu-Grating/X-Cut LiNbO3/SiC.

Peisen Liu, Sulei Fu, Boyuan Xiao, Xinchen Zhou, Qiufeng Xu, Shouren Xie, Shuai Zhang, Jiajun Gao, Haoqin Ma, Rui Wang, Cheng Song, Fei Zeng, Weibiao Wang, Feng Pan

原始摘要(英文原文)· Original abstract
This article presents the first systematic study on the collaborative high-frequency suppression of spurious modes in longitudinal leaky surface acoustic waves (LLSAWs) devices on the Cu-grating/X-cut LiNbO3/SiC stack, including the first-order shear-vertical (SV1), shear-horizontal (SH1), and longitudinal spurious signals (LSSs). Through detailed modal and dispersion analysis, we clarify the role of cutoff frequencies in the high-order mode suppression mechanism using distance-to-cutoff as a quantitative design margin. Resonators with Al and Cu electrodes are compared through systematic simulations under matched mass-loading conditions, supported by measurements on fabricated devices with different stack configurations. The Cu-electrode LLSAW resonators achieve a maximum Bode- $Q_{\mathrm {max}}$ of 512 and a figure of merit of 107 at 6 GHz. A synchronous LLSAW, filter prototype demonstrates a 3-dB fractional bandwidth (FBW) of 11.9%, a minimum insertion loss of 1.6 dB, and spurious suppressed responses both in-band and out-of-band (OoB) signals. This work provides a scalable design paradigm enabling spurious-free wideband LLSAWdevices in future 5G systems.
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Insights Into High-Frequency Spurious Suppression of LLSAW Devices Based on Cu-Grating/X-Cut LiNbO3/SiC. — 科研速览 Science Skim