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Ceramic based novel multilayer and miniaturized RF/millimetre-wave components and highly integrated mm-wave modules

机译:基于陶瓷的新型多层和微型RF /毫米波组件以及高度集成的毫米波模块

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This paper describes the realization of novel multilayer miniaturized and high performance passive components, covering a wide frequency range (RF to millimeter-wave), and a highly compact millimeter-wave subsystems at a low cost using advanced multilayer ceramic based photoimageable thick film technology. The multilayer miniaturized passive components have been designed using meander-line and lumped-distributed approach, and characterized covering IF (2GHz) as well as RF (> 80 GHz) frequencies for a complete system. At the same time compact and high-Q multilayer lumped components have been designed and modeled up to mmW frequency with excellent performance. Lumped element filters have remarkably low pass band loss with high stop band attenuation and miniaturization. These performances are better than most of the reported results from conventional multichip module (MCM) technologies. Further, using a new integration technique, where IC mounting cavities are formed from trench-vias and have precise dimensional control, a mmW modules are realized onto a single substrate integrating MMICs with RF (V-band) SIW components and embedded lumped element (IF) low-pass filter and other passives in bias network with high performance and compactness.
机译:本文介绍了新型多层小型化和高性能无源组件的实现,覆盖宽频率范围(RF至毫米波),以及使用先进的多层陶瓷基可光构厚薄膜技术的低成本高度紧凑的毫米波子系统。多层小型化无源元件已经使用蜿蜒线和分布分布的方法设计,并且表征覆盖(2GHz)以​​及完整系统的RF(> 80GHz)频率。同时,紧凑型和高Q多层集成的组件已经设计和建模,具有出色的性能。集成的元件过滤器具有高止动带衰减和小型化的低通带损失。这些性能优于传统多芯片模块(MCM)技术的大多数报道的结果。此外,使用一种新的集成技术,其中IC安装腔由沟槽通孔形成并且具有精确的尺寸控制,MMW模块实现在具有RF(V波段)SIW部件和嵌入式集块元件的单个基板上集成MMIC(如果)低通滤波器和偏置网络的其他无源,性能高,紧凑。

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