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Microfluidically Reconfigurable Metallized Plate Loaded Frequency-Agile RF Bandpass Filters

机译:微流体可重构金属化板载频率捷变射频带通滤波器

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摘要

Microfluidically repositionable metallized plates have been recently introduced as a technique to realize frequency-agile bandpass filters with low insertion loss (IL) and wideband continuous frequency tunability. This paper utilizes a hybrid (circuit and electromagnetic simulation) model for time efficient simulations and introduces fourth-order bandpass filter designs for the first time to extend the applicability of the technique to higher order frequency-agile RF filter design. The paper introduces novel microfluidic channel and resonator configurations to demonstrate that the proposed filters can serve application specific footprint needs. By resorting to a selectively metallized plate approach, the reliability issue associated with synchronized movement of multiple metallized plates has been resolved. The filters are incorporated with micropumps to enable their automated control. Specifically, the concepts are demonstrated through design, fabrication, and testing of two fourth-order bandpass filters exhibiting different resonator arrangement layouts. The filters were measured to operate over 2:1 (60%) frequency tuning range (0.8 GHz –1.5 GHz) with better than 4.5 dB IL, 5% constant fractional bandwidth (FBW), and 40 dB out of band rejection implying a good agreement with the simulation based performance predictions. For the selected micropumps and investigated microfluidic channel layouts, the best tuning speed was measured to be 2.12 MHz per millisecond.
机译:最近已经引入了微流体可重定位金属化板,作为一种实现具有低插入损耗(IL)和宽带连续频率可调性的捷变带通滤波器的技术。本文利用混合(电路和电磁仿真)模型进行时间高效的仿真,并首次介绍了四阶带通滤波器设计,以将该技术的适用性扩展到高阶频率捷变RF滤波器设计。本文介绍了新颖的微流体通道和谐振器配置,以证明所提出的滤波器可以满足特定应用的占位需求。通过采用选择性金属化板的方法,解决了与多个金属化板的同步运动相关的可靠性问题。过滤器与微型泵集成在一起,以实现自动控制。具体而言,通过设计,制造和测试两个展示不同谐振器布置布局的四阶带通滤波器来演示这些概念。滤波器经测量可在2:1(60%)频率调谐范围(0.8 GHz –1.5 GHz)上运行,具有优于4.5 dB的IL,5%的恒定分数带宽(FBW)和40 dB的带外抑制性能,这意味着性能良好与基于仿真的性能预测一致。对于选定的微型泵和研究的微流体通道布局,测得的最佳调谐速度为2.12 MHz /毫秒。

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