Ultrawideband Power-Noise Suppression Based on Lossy Capacitors With Low-Frequency Stopband Enhancement for Digital Systems

Yingfeng Ding;Mu-Shui Zhang;Yufang Xu;Haopeng Feng;Zixin Wang
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Abstract

For most board-level digital systems, the power-noise interference covers a wide frequency range from near dc to several GHz. Current power-noise suppression methods can only selectively suppress low-frequency or high-frequency band-limited power noise. In this article, a novel plane pair embedded with lossy capacitors, each of which is formed by a conventional capacitor in series with a large resistor, is developed for ultrawideband power-noise suppression in high-speed digital systems, ranging from 10 kHz to several GHz. The noise suppression mechanism of the proposed structure is keeping the quality factor ( Q -factor) of a plane pair to a very low level, say Q <4,>Q -factor of a unit cell of the plane pair and adjusted by changing the physical parameters, such as series resistance, dielectric thickness, and period. The measured results show that the proposed plane pair embedded with lossy capacitors can achieve ultrawide −30-dB stopband, from 10 kHz to above 5 GHz.
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基于有损电容器的超宽带功率噪声抑制与数字系统的低频阻带增强功能
对于大多数板级数字系统来说,功率噪声干扰的频率范围很广,从近乎直流到几千兆赫。目前的功率噪声抑制方法只能选择性地抑制低频或高频带限功率噪声。本文开发了一种嵌入有损电容器的新型平面对,每个平面对由一个传统电容器与一个大电阻串联而成,用于高速数字系统中的超宽带功率噪声抑制,频率范围从 10 kHz 到几 GHz。拟议结构的噪声抑制机制是将平面对的品质因数(Q 因子)保持在一个非常低的水平,即平面对单元单元的 QQ 因子,并通过改变物理参数(如串联电阻、介质厚度和周期)进行调整。测量结果表明,嵌入有损电容器的拟议平面对可以实现从 10 kHz 到 5 GHz 以上的 -30-dB 超宽阻带。
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Front Cover 2024 Index IEEE Transactions on Signal and Power Integrity Vol. 3 IEEE Electromagnetic Compatibility Society Information System-Level Application of the Z-Directed Component (ZDC) for Power Integrity Multilayer Ceramic Capacitor Source Model Application in Acoustic Noise Prediction
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