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Design and Modeling of High-Impedance Electromagnetic Surfaces for Switching Noise Suppression in Power Planes

机译:功率平面中用于开关噪声抑制的高阻抗电磁表面的设计与建模

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This paper presents a detailed design and modeling approach for power planes with integrated high-impedance electromagnetic surfaces (HIS). These novel power planes, which were introduced recently, have the unique ability of providing effective broadband simultaneous switching noise (SSN) mitigation. Full-wave electromagnetic simulation is used to study the impact of the geometry on the performance of these novel power planes. It is demonstrated that power planes using inductance-enhanced HIS can be designed for broadband mitigation of the SSN from the upper hundred megahertz to the gigahertz frequencies. Physics-based compact models for the unit cell of power planes with integrated HIS are developed and several of them connected in a two-dimensional array to build full models for large and multilayer power planes. The compact model offers fast analysis of power planes. As an example, we show that the full-wave simulation time of a 10 × 10 cm power plane with integrated HIS can be dramatically reduced from 24 to 48 h using a commercially available three-dimensional full-wave solver to less than 1 min when using the compact circuit model developed here.
机译:本文介绍了具有集成高阻抗电磁表面(HIS)的电源平面的详细设计和建模方法。这些最近推出的新型电源平面具有提供有效的宽带同时开关噪声(SSN)缓解的独特能力。全波电磁仿真用于研究几何形状对这些新型电源平面性能的影响。事实证明,可以将使用电感增强型HIS的电源层设计为从上百兆赫兹到千兆赫兹频率的SSN宽带缓解。已开发出具有集成HIS的功率平面单位单元的基于物理的紧凑模型,并且其中的几个模型以二维阵列连接以建立大型和多层功率平面的完整模型。紧凑型模型可快速分析电源平面。作为示例,我们表明,使用市售的三维全波求解器,可以将集成了HIS的10×10 cm电源平面的全波仿真时间从24 h显着减少到48 h,而在使用此处开发的紧凑电路模型。

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