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Partial EBG Structure with DeCap for Ultra-wideband Suppression of Simultaneous Switching Noise in a High-Speed System

机译:具有DeCap的部分EBG结构,用于在高速系统中同时抑制开关噪声的超宽带抑制

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To supply a power distribution network with stable power in a high-speed mixed mode system, simultaneous switching noise caused at the multilayer PCB and package structures needs to be sufficiently suppressed. The uni-planar compact electromagnetic bandgap (UC-EBG) structure is well known as a promising solution to suppress the power noise and isolate noise-sensitive analog/RF circuits from a noisy digital circuit. However, a typical UC-EBG structure has several severe problems, such as a limitation in the stop band’s lower cutoff frequency and signal quality degradation. To make up for the defects of a conventional EBG structure, a partially located EBG structure with decoupling capacitors is proposed in this paper as a means of both suppressing the power noise propagation and minimizing the effects of the perforated reference plane on the signal quality. The proposed structure is validated and investigated through simulation and measurement in both frequency and time domains.
机译:为了在高速混合模式系统中为配电网络提供稳定的电力,需要充分抑制在多层PCB和封装结构处同时产生的开关噪声。众所周知,单平面紧凑电磁带隙(UC-EBG)结构是一种有前途的解决方案,可以抑制电源噪声并将噪声敏感的模拟/ RF电路与嘈杂的数字电路隔离开来。但是,典型的UC-EBG结构存在几个严重的问题,例如,阻带较低的截止频率的限制和信号质量的下降。为了弥补传统EBG结构的缺陷,本文提出了一种具有去耦电容器的部分定位EBG结构,既可以抑制功率噪声的传播,又可以将穿孔的参考平面对信号质量的影响降到最低。通过在频域和时域中的仿真和测量,对提出的结构进行了验证和研究。

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