射频和电磁兼容可靠系统设计中的嵌入式无源元件布局综合算法

G. Sommer, W. John, H. Reichl
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引用次数: 3

摘要

将无源元件集成到模块平台上为射频和微波系统的小型化提供了巨大的潜力。开发符合电气要求的元件设计是射频系统设计的挑战之一。本文首先介绍了一种嵌入式电容、电阻、电感等无源器件的布局综合算法。针对嵌入式无源所需的电气参数(主要值),包括射频特性(谐振频率、品质因子、3dB截止频率),生成优化的元件布局。在电气仿真方面,推导了相应的s参数和等效电路模型。该合成过程是现代射频系统设计的一个突破。该综合算法具有通用性,可方便地应用于各种设计类型的嵌入式电感、电容和电阻。最后以HDI有机方环路电感为例对该方法进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Layout synthesis algorithm of embedded passive components for RF and EMC reliable system design
The integration of passive components onto a module platform offers great potential for miniaturization of RF and microwave systems. Development of component design with respect to electrical requirements is one of the challenges in RF system design. This paper first introduces a layout synthesis algorithm for embedded passive components like capacitor, resistor and inductor. For required electrical parameter of embedded passives (main values) including RF characteristic (resonant frequency, quality factor, 3dB cutoff frequency) the optimized component layout are generated. For electrical simulation respective s-parameter and equivalent circuit model are derived. This synthesis procedure is a break through for modern RF system design. The synthesis algorithm is universal and can be applied easily for various design types of embedded inductors, capacitors and resistors. The method is demonstrated using HDI organic square loop inductors as a specific example.
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