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A High-Frequency-Compatible Miniaturized Bandpass Filter with Air-Bridge Structures Using GaAs-Based Integrated Passive Device Technology

机译:基于GaAs的集成无源器件技术的具有空桥结构的高频兼容小型带通滤波器

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摘要

This paper reports on the use of gallium arsenide-based integrated passive device technology for the implementation of a miniaturized bandpass filter that incorporates an intertwined circle-shaped spiral inductor and an integrated center-located capacitor. Air-bridge structures were introduced to the outer inductor and inner capacitor for the purpose of space-saving, thereby yielding a filter with an overall chip area of 1178 μm × 970 μm. Thus, not only is the chip area minimized, but the magnitude of return loss is also improved as a result of selective variation of bridge capacitance. The proposed device possesses a single passband with a central frequency of 1.71 GHz (return loss: 32.1 dB), and a wide fractional bandwidth (FBW) of 66.63% (insertion loss: 0.50 dB). One transmission zero with an amplitude of 43.42 dB was obtained on the right side of the passband at 4.48 GHz. Owing to its miniaturized chip size, wide FBW, good out-band suppression, and ability to yield high-quality signals, the fabricated bandpass filter can be implemented in various L-band applications such as mobile services, satellite navigation, telecommunications, and aircraft surveillance.
机译:本文报道了基于砷化镓的集成无源器件技术在实现带通交错的圆形螺旋电感器和集成的中心定位电容器的小型带通滤波器中的应用。为了节省空间,将空气桥结构引入到外部电感器和内部电容器中,从而产生了总芯片面积为1178μm×970μm的滤波器。因此,由于桥电容的选择性变化,不仅芯片面积最小,而且回波损耗的幅度也得到改善。所提出的设备具有中心频率为1.71 GHz(回波损耗:32.1 dB)的单个通带,以及66.63%的宽分数带宽(FBW)(插入损耗:0.50 dB)。在4.48 GHz的通带右侧获得一个振幅为43.42 dB的传输零。由于其最小的芯片尺寸,宽的FBW,良好的带外抑制以及产生高质量信号的能力,因此可以在各种L波段应用(例如移动服务,卫星导航,电信和飞机)中实现所制造的带通滤波器监视。

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