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Scalable Electromagnetic Segmentation Methodology for Accurate Investigation of Inductive Couplings

机译:可扩展的电磁分段方法,用于精确调查电感耦合

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摘要

In this paper electromagnetic (EM) based segmentation methodology is proposed for design, analysis and simulation of inductive couplings in RFICs. The efficiency of the proposed methodology is demonstrated through its application to NXP-Semiconductors component and function-block test-carriers. The obtained simulation results are successfully correlated to measurement results and other relevant methods and techniques. Different segmentation strategies are compared to draw limits of cascade assumptions in comparison with full-EM model approaches and experimental results. Guidelines and design rules derivation towards standard segmentation-based scalable wideband model synthesis for electromagnetic Interference (EMI) aware design analysis, both at component and block levels are discussed.
机译:在本文中,提出了基于电磁(EM)的分段方法,用于RFIC中电感耦合的设计,分析和仿真。通过其应用于NXP-半导体组分和功能块测试载体,证明了所提出的方法的效率。所获得的模拟结果与测量结果和其他相关方法和技术成功相关。与全EM模型方法和实验结果相比,将不同的分割策略进行比较,以利用级联假设的限制。讨论了对基于标准分割的可扩展宽带模型合成的指南和设计规则,用于电磁干扰(EMI)意识到的设计分析,包括在组件和块水平。

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