摘要
电源平面与接地平面间的同步开关噪声是现代高速、高性能数字电路应用的瓶颈之一。文中提出了一种应用于印刷电路板的新颖二维电磁带隙(MS—EBG)结构,其单位晶格由折线缝隙组合与正方形贴片桥接构成,以抑制同步开关噪声。结果表明,抑制深度为-30dB时,与传统L—bridgedEBG结构比较,新EBG结构的阻带宽度增加1.3GHz,相对带宽提高了约10%,能够有效抑制0.6-5.9GHz的同步开关噪声。
In the applications of modem high-speed and high-performance digital circuits, one of the bottlenecks is the simultaneous switching noise arising between the power and ground planes. For the suppression of SSN, a novel MS-Electromagnetic Band-Gap (EBG) structure is proposed in this paper, whose unit cell consists of a me- ander line along with slot and square metal patch. Simulation results show that a stop-band of 0. 6 GHz to 5.9 GHz and a suppression depth of -30 dB are obtained with the novel EBG structure. Compared with the traditional L- bridge EBG structure with the same size, the stop-band bandwidth increases by 1.3 GHz and the relative bandwidth enhances by approximately 10%.
出处
《电子科技》
2010年第5期55-57,共3页
Electronic Science and Technology
基金
西安地区地震活动特征研究资助项目(HX0109020818)
关键词
电磁带隙
同步开关噪声
印刷电路板
高速数字电路
Electromagnetic Band-Gap (EBG)
Simultaneous Switching Noise (SSN)
Printed Circuit Board (PCB)
high-speed digital circuit