基于带有棋盘格状电极的 A1 模式铌酸锂薄膜谐振器的 6 GHz λ 波声学滤波器

IF 7.3 1区 工程技术 Q1 INSTRUMENTS & INSTRUMENTATION Microsystems & Nanoengineering Pub Date : 2024-09-19 DOI:10.1038/s41378-024-00776-4
Xin Tong, Yang Zou, Zhiwei Wen, Zesheng Liu, Tiancheng Luo, Jie Zhou, Huajun Liu, Yuqi Ren, Qinwen Xu, Wenjuan Liu, Yan Liu, Yao Cai, Chengliang Sun
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摘要

基于 Z 切铌酸锂薄膜的一阶反不对称(A1)模式λ波谐振器(LWR)引起了人们的极大关注,并被广泛认为是具有高频率和大带宽(BW)的下一代可重构滤波器的候选器件。然而,传统的基于插接电极(IDTs)的 LWR 滤波器很难满足干净的频谱响应和足够的带外抑制(OoB)要求。为了解决这个问题,我们提出了采用棋盘格状 IDT 的 LWR,用于设计符合 Wi-Fi 6E 标准的滤波器。通过利用具有无与伦比边界的棋盘格形 IDT,制造出的 6 GHz 谐振器成功抑制了高阶 A1 杂散模式,实现了无杂散阻抗响应和高达 104 的高功率系数 (FOM)。基于已证实的棋盘格形电极设计,该滤波器的中心频率(f0)超过 6 GHz,3 dB BW 超过 620 MHz,OoB 抑制率高达 25 dB,与声-电-电磁(EM)多物理场仿真结果一致。此外,通过电容电感匹配网络技术,滤波器的电压驻波比(VSWR)成功降低到了 2 以下,实现了出色的 50 Ω 阻抗匹配。这项研究为 Wi-Fi 6/6E 应用中的超高频和超宽带滤波器奠定了基础。
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6 GHz lamb wave acoustic filters based on A1-mode lithium niobate thin film resonators with checker-shaped electrodes

The first-order antisymmetric (A1) mode lamb wave resonator (LWR) based on Z-cut LiNbO3 thin films has attracted significant attention and is widely believed to be a candidate for next-generation reconfigurable filters with high frequency and large bandwidth (BW). However, it is challenging for traditional interdigitated electrodes (IDTs) based LWR filters to meet the requirement of a clean frequency spectrum response and enough out-of-band (OoB) rejection. To solve the problem, we propose LWRs with checker-shaped IDTs for the design of filters that meet the Wi-Fi 6E standard. By taking advantage of checker-shaped IDTs with unparalleled boundaries, the fabricated 6-GHz resonators successfully suppress higher-order A1 spurious modes, demonstrating a spurious-free impedance response and a high figure-of-merit (FOM) up to 104. Based on the demonstrated checker-shaped electrode design, the filter features a center frequency (f0) of more than 6 GHz, a 3 dB BW exceeding 620 MHz, and an excellent OoB rejection >25 dB, consistent with the acoustic-electric-electromagnetic (EM) multi-physics simulations. Furthermore, through the capacitance-inductance matching network technology, the filter’s voltage standing wave ratio (VSWR) is successfully reduced below 2, showing an excellent 50 Ω impedance matching. This study lays a foundation for ultra-high-frequency and ultra-wideband filters for the Wi-Fi 6/6E application.

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来源期刊
Microsystems & Nanoengineering
Microsystems & Nanoengineering Materials Science-Materials Science (miscellaneous)
CiteScore
12.00
自引率
3.80%
发文量
123
审稿时长
20 weeks
期刊介绍: Microsystems & Nanoengineering is a comprehensive online journal that focuses on the field of Micro and Nano Electro Mechanical Systems (MEMS and NEMS). It provides a platform for researchers to share their original research findings and review articles in this area. The journal covers a wide range of topics, from fundamental research to practical applications. Published by Springer Nature, in collaboration with the Aerospace Information Research Institute, Chinese Academy of Sciences, and with the support of the State Key Laboratory of Transducer Technology, it is an esteemed publication in the field. As an open access journal, it offers free access to its content, allowing readers from around the world to benefit from the latest developments in MEMS and NEMS.
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