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Partial EBG placement on PDN to effectively suppress simultaneous switching noise

机译:将EBG部分放置在PDN上以有效抑制同时发生的开关噪声

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To build a stable power distribution network (PDN) in high-speed digital systems, the simultaneous switching noise (SSN) should be sufficiently suppressed. In view of the results of recent research, the uni-planar compact electromagnetic bandgap (UC-EBG) structure is regarded as a promising solution to cope with the SSN problems until the GHz frequency ranges. However, if UC-EBG is adopted for the power/ground plane in the multilayer PCB/package structures, problems of signal integrity may result from the high speed signals passing over the EBG patterns because of the discontinuities of the etched reference plane. In this paper, the partial placement of EBG unit cells only near the sources of noise and/or the noise sensitive components is proposed as a means of both suppressing the noise propagation and minimizing the effects of a discontinuous reference plane. The SSN suppression performance of the proposed structure is validated and investigated both numerically and experimentally.
机译:为了在高速数字系统中建立稳定的配电网络(PDN),应同时抑制同时开关噪声(SSN)。鉴于最近的研究结果,单平面紧凑电磁带隙(UC-EBG)结构被认为是解决GHz频率范围内SSN问题的有前途的解决方案。但是,如果在多层PCB /封装结构中的电源/接地平面采用UC-EBG,则由于蚀刻的参考平面的不连续性,高速信号越过EBG图案可能会导致信号完整性问题。在本文中,建议将EBG晶胞仅部分放置在噪声源和/或对噪声敏感的组件附近,作为抑制噪声传播和最小化不连续参考平面影响的一种手段。通过数值和实验验证了所提出结构的SSN抑制性能并进行了研究。

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