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Micro-Fabricated Resonator Based on Inscribing a Meandered-Line Coupling Capacitor in an Air-Bridged Circular Spiral Inductor

机译:基于在空气桥接圆形螺旋电感器中曲折耦合电容的微细谐振器

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摘要

This letter presents a high-performance micro-fabricated resonator based on inscribing a meandered-line square coupling capacitor in an air-bridged circular spiral inductor on the GaAs-integrated passive device (IPD) technology. The main advantages of the proposed method, which inserts a highly effective coupling capacitor between the two halves of a circular spiral inductor, are the miniaturized size, enhanced coupling coefficient, and improved selectivity. Moreover, using an air-bridge structure utilizes the enhanced mutual inductance in which it maximizes the self-inductance by a stacking inductor layout to obtain a high coupling effect. The simulated and measured S-parameters of a prototype resonator with an effective overall circuit size of 1000 µm × 800 µm are in good agreement. The measured insertion and return losses of 0.41 and 24.21 dB, respectively, at a measured central frequency of 1.627 GHz, as well as an upper band transmission zero with a suppression level of 38.7 dB, indicate the excellent selectivity of the developed resonator.
机译:这封信提出了一种高性能的微型谐振器,该谐振器基于GaAs集成无源器件(IPD)技术上的空气桥接圆形螺旋电感器中的弯折线型方形耦合电容器。所提出的方法的主要优点是,在圆形螺旋电感器的两半之间插入了一个高效的耦合电容器,它具有微型化的尺寸,增强的耦合系数和改进的选择性。此外,使用气桥结构利用增强的互感,其中通过堆叠电感器布局,其使自感最大化,以获得高耦合效果。有效电路总尺寸为1000 µm×800 µm的原型谐振器的仿真和测量S参数非常吻合。在测得的中心频率1.627 GHz处测得的插入损耗和回波损耗分别为0.41和24.21 dB,以及抑制水平为38.7 dB的高频带传输零,表明已开发的谐振器具有出色的选择性。

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