...
首页> 外文期刊>Applied Sciences >A Compact and Multi-Stack Electromagnetic Bandgap Structure for Gigahertz Noise Suppression in Multilayer Printed Circuit Boards
【24h】

A Compact and Multi-Stack Electromagnetic Bandgap Structure for Gigahertz Noise Suppression in Multilayer Printed Circuit Boards

机译:紧凑和多层电磁带隙结构,用于多层印刷电路板中的千兆赫兹噪声抑制

获取原文
           

摘要

In modern printed electronics, the performances of a circuit and a device are severely deteriorated by the electromagnetic noise in the gigahertz (GHz) frequency range, such as the simultaneous switching noise and ground bounce noise. A compact and multi-stack electromagnetic bandgap (CMS-EBG) structure is proposed to suppress the electromagnetic noise over the GHz frequency range with a short distance between a noise source and a victim on multilayer printed circuit boards (MPCBs). The original configuration of the stepped impedance resonators is presented to efficiently form multiple stacks of EBG cells. The noise suppression characteristics of the CMS-EBG structure are rigorously examined using Floquet-Bloch analysis. In the analysis, dispersion diagrams are extracted from an equivalent circuit model and a full-wave simulation model. It is experimentally verified that the CMS-EBG structure suppresses the resonant modes over the wideband frequency range with a short source-to-victim distance; thus, this structure substantially mitigates GHz electromagnetic noise in compact MPCBs.
机译:在现代印刷电子产品中,电路和设备的性能会受到千兆赫(GHz)频率范围内的电磁噪声(例如同时的开关噪声和接地反弹噪声)的严重破坏。提出了一种紧凑且多堆叠的电磁带隙(CMS-EBG)结构,以抑制GHz频率范围内的电磁噪声,并且该噪声源与多层印刷电路板(MPCB)上的受害者之间的距离较短。提出了阶梯式阻抗谐振器的原始配置,以有效地形成EBG电池的多个堆栈。使用Floquet-Bloch分析严格检查了CMS-EBG结构的噪声抑制特性。在分析中,从等效电路模型和全波仿真模型中提取色散图。实验证明,CMS-EBG结构在源到受害者距离短的情况下抑制了宽带频率范围内的谐振模式。因此,这种结构大大减轻了紧凑型MPCB中的GHz电磁噪声。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号