首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Negative Piezoelectric-Based Electric-Field-Actuated Mode-Switchable Multilayer Ferroelectric FBARs for Selective Control of Harmonic Resonances Without Degrading Keff²
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Negative Piezoelectric-Based Electric-Field-Actuated Mode-Switchable Multilayer Ferroelectric FBARs for Selective Control of Harmonic Resonances Without Degrading Keff²

机译:负压电基电场驱动模式可切换多层铁电FBAR,用于选择性控制谐波共振,无降低keff²

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摘要

Mode-switchable ferroelectric thin-film bulk acoustic resonators (FBARs) are presented. Such resonators operate based on a dynamic nonuniform effective piezoelectricity in composite multilayer ferroelectrics with large electrostriction coefficients, like barium strontium titanate (BST). Harmonic resonance modes (nf(o)) of a multilayer ferroelectric bulk acoustic wave (BAW) resonator can be selectively excited with an electromechanical coupling coefficient (K-eff(2)) equal to the fundament mode, which is contrary to the trend K-eff(2) proportional to 1(2) exhibited by conventional piezoelectricBAWresonators. Such a device can selectively be set to resonate at its different resonance harmonics by generating a pattern of nonuniformpiezoelectric coefficient proportional to the stress field of each mode with an application of a proper set of dc control voltages applied across the ferroelectric layers. Such a resonator allows for the design of a new class of band-switching filters. As an experimental validation, a mode-switchable FBAR and a bandswitching ladder-type filter based on a bilayer ferroelectric BST structure are designed and fabricated for the first time. The bilayer BST FBARs not only can be switched ON or OFF but also by choosing different bias configurations, two resonancemodes at 2 and 3.6GHz can be selectivelyexcited having K-eff(2) of 8% and 7%, respectively.
机译:提出了模式可切换的铁电薄膜堆积声谐振器(FBARS)。这种谐振器基于具有大电伸缩系数的复合多层铁电解中的动态不均匀有效压电,如钛酸钡(BST)。多层铁电体积声波(BAW)谐振器的谐振谐振模式(NF(O))可以选择性地激发与等于基底模式的机电耦合系数(K-EFF(2)),这与趋势K相反-eff(2)与常规压电释弓糖剂呈现的1 / N(2)成比例。这种装置可以通过在施加在铁电层施加的适当的DC控制电压的应用中,选择性地设定在其不同的共振谐波处以在其不同的共振谐波处产生谐振。这种谐振器允许设计新的带开关滤波器。作为实验验证,首次设计和制造基于双层铁电BST结构的模式可切换的FBAR和带式梯式滤波器。双层BST FBAR不仅可以接通或断开,而且还通过选择不同的偏置配置,可以分别选择性地探选2个和3.6GHz的两个共振震源,分别具有8%和7%的K-EFF(2)。

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