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射频通道选择微机械盘式滤波器——第一部分:设计

RF Channel-Select Micromechanical Disk Filters-Part I: Design.

作者信息

Ozgurluk Alper, Akgul Mehmet, Nguyen Clark T-C

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2019 Jan;66(1):192-217. doi: 10.1109/TUFFC.2018.2881727. Epub 2018 Nov 16.

Abstract

This Part I of two papers introduces a design flow for micromechanical RF channel-select filters with tiny fractional bandwidths capable of eliminating strong adjacent channel blockers directly after the antenna, hence reducing the dynamic range requirement of subsequent stages in an RF front-end. Much like VLSI transistor circuit design, the mechanical circuit design flow described herein is hierarchical with a design stack built upon vibrating micromechanical disk building blocks capable of Q 's exceeding 10 000 that enable low-filter passband loss for tiny fractional bandwidths. Array composites of half-wavelength coupled identical vibrating disks constitute a second level of hierarchy that reduces the filter termination impedance. A next level of hierarchy couples array composites with full-wavelength beams to affect fully balanced differential operation. Finally, identical differential blocks coupled with quarter-wavelength beams generate the desired passband. Part II of this study corroborates the efficacy of this design hierarchy via experimental results that introduce a 39-nm-gap capacitive transducer, voltage-controlled frequency tuning, and differential operation toward demonstration of a 0.1% bandwidth, 223.4-MHz channel-select filter with only 2.7 dB of in-band insertion loss and 50 dB of stopband rejection.

摘要

这两篇论文的第一部分介绍了一种用于微机械射频通道选择滤波器的设计流程,该滤波器具有微小的分数带宽,能够在天线之后直接消除强相邻通道干扰,从而降低射频前端后续级的动态范围要求。与超大规模集成电路晶体管电路设计非常相似,本文所述的机械电路设计流程是分层的,其设计堆栈基于振动微机械盘构建块构建,这些构建块的品质因数超过10000,能够在微小的分数带宽下实现低滤波器通带损耗。半波长耦合的相同振动盘的阵列复合材料构成了层次结构的第二层,可降低滤波器终端阻抗。下一层级将阵列复合材料与全波长梁耦合,以实现完全平衡的差分操作。最后,相同的差分块与四分之一波长梁耦合,产生所需的通带。本研究的第二部分通过实验结果证实了这种设计层次结构的有效性,这些实验结果引入了39纳米间隙电容式换能器、压控频率调谐和差分操作,以展示一个带宽为0.1%、中心频率为223.4兆赫兹的通道选择滤波器,其带内插入损耗仅为2.7分贝,阻带抑制为50分贝。

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