西安电子科技大学电子工程学院,西安,710071
网络首发:2012-06-10,
纸质出版:2012
移动端阅览
路宏敏 1, 余志勇 2, 谭康伯 1, 等. 抑制同步开关噪声的新颖电磁带隙结构[J]. 西安交通大学学报, 2012,46(6):17-22.
A Novel Electromagnetic Band-Gap Structure for Noise Suppression of Simultaneous Switching[J]. 2012, 46(6): 17-22.
为了抑制印刷电路板的同步开关噪声(SSN)
提出了一种新型二维电磁带隙结构.基于金属折线增强相邻单位晶格间的电感
采用折线与含有缝隙的正方形金属贴片桥接构建单位晶格
实现新型电磁带隙结构设计.应用HFSS软件仿真分析电磁带隙结构
结果表明:与相同参数的L形桥接电磁带隙结构比较
抑制深度为-30 dB时
阻带带宽为0.45~5.3 GHz
相对带宽提高了约15%
阻带下限截止频率下降了150 MHz.测量结果与仿真结果吻合
能够全向抑制电源平面上的SSN
同时采用差分线对传输信号时
对信号完整性造成的影响较小.
A novel planar electromagnetic band-gap(EBG)structure is proposed to suppress the simultaneous switching noise(SSN)within the power/ground planes of the printed circuit boards. The novel design bases on the facts that meander lines increase the effective inductance of EBG patches
and that the unit cell of the EBG power plane consists of one square patch with the slots and four meander line bridges. The proposed design is validated by HFSS numerically
and comparisons with the L-bridged EBG of the same parameters
under the conditions with the -30 dB suppression and bandwidth ranging from 0.45 GHz to 5.3 GHz show that the lower cut-off frequency is decreased by 150 MHz
and the relative bandwidth is increased by about 15%. The proposed EBG power plane is fabricated and measured
and good agreement between the simulated and measured results is found along with the omni-directional suppression of the SSN. It is also found that good signal integrity performance can be obtained when differential transmission lines are used.
SWAMINATHAN M, KIM J, NOVAK I, et al. Power distribution networks for system-on-package: status and challenges [J]. IEEE Transactions on Advanced Packaging, 2004, 27(2): 286-300.
VAN DER BERGHE S, OLYSLAGER F, DE ZUTTER D, et al. Study of the ground bounce caused by power plane resonances [J]. IEEE Transactions on Electromagnetic Compatibility, 1998, 40(2): 111-119.
ABHARI R, ELEFTHERIADES G V. Metallo-dielectric electromagnetic band-gap structures for suppression and isolation of the parallel-plate noise in high-speed circuits [J]. IEEE Transactions on Microwave Theory and Techniques, 2003, 51(6):1629-1639.
SIEVENPIPER D, ZHANG Lijun, JIMENEZ B R F. High-impedance electromagnetic surfaces with a forbidden frequency band [J]. IEEE Transactions on Microwave Theory and Techniques, 1999, 47(11):2059-2074.
SHAHPARNIA S, RAMAHI O M. Electromagnetic interference(EMI)reduction from printed circuit boards(PCB)using electromagnetic bandgap structures [J]. IEEE Transactions on Electromagnetic Compatibility, 2004, 46(4):580-587.
KAMGAING T, RAMAHI O M. A novel power plane with integrated simultaneous switching noise mitigation capability using high impedance surface [J]. IEEE Microwave and Wireless Components Letters, 2003, 13(1):21-23.
WU Tzong-Lin, LIN Yen-Lin, CHEN S T. A novel power planes with super-wideband elimination of ground bounce noise on high speed Circuits [J]. IEEE Microwave Wireless Components Letters, 2005, 15(3):174-176.
路宏敏, 余志勇, 赵益民,等. 一种具有新颖电磁带隙结构的印刷电路板电源平面[J]. 西安电子科技大学学报, 2011, 38(3):20-23.
LU Hongmin, YU Zhiyong, ZHAO Yimin, et al. Power plan of the printed circuit board with novel electromagnetic band-gap structures [J]. Journal of Xidian University, 2011, 38(3):20-23.
KIM K H, SCHUTT-AINE J E. Analysis and modeling of hybrid planar-type electromagnetic-bandgap structures and feasibility study on power distribution network applications [J]. IEEE Transactions Microwave Theory and Techniques, 2008, 56(1):178-186.
RAO P H. Hybrid electromagnetic bandgap power plane for ultra-wideband noise suppression [J]. Electronics Letters, 2009, 45(19):981-982.
WU Tzong-Lin,WANG Ting-Kuang. Embedded power plane with ultra-wideband stop-band for simultaneously switching noise on high-speed circuits [J]. Electronics Letters, 2006, 42(4):213-214.
丁同浩,李玉山,张伟,等. 电磁带隙结构的信号完整性分析[J]. 电子与信息学报, 2010, 32(5):1267-1270.
DING Tonghao, LI Yushan, ZHANG Wei, et al. The signal integrity analysis of electromagnetic band-gap structure [J]. Journal of Electronics Information Technology, 2010, 32(5):1267-1270.
路宏敏,安晋元,赵益民,等. 印制线拐角的频域分析. 2007,41(12):1451-1454.
翟小社,王建华,宋政湘,等. 信号完整性分析中时域宏模型结合电路仿真的方法研究. 2007,41(6):631-635.
张爱民,张蕾,张杭,等. 电子设备电磁敏感性仿真分析及优化设计方法. 2010,44(8):5-9.
孟国栋,成永红,酉小广,等. 脉冲方波作用下印制电路板互连系统的击穿特性. 2012,46(4):58-63.
刘金华,陈贵灿,张鸿. 采用冲激敏感函数的差分LC振荡器相位噪声分析. 2010,44(12):66-70.
马晓龙,陈贵灿. 固定位宽乘法器的量化误差补偿方法及电路实现. 2011,45(12):75-81.
韩海涛,曹建福,马红光,等. 非线性输出频域响应函数的自适应辨识算法及应用. 2011,45(10):77-81.
刘晔,张璐,杨新伟,等. 采用硬件神经电路的压力传感器零点温漂补偿研究. 2010,44(8):10-14.
黎大健,杨景刚,梁基重,等. 气体绝缘开关内自由运动金属颗粒的超声波信号特性. 2009,43(2):101-105.
戚建烨,王小力,王守军. 移动数字电视调谐器中低噪声模拟滤波器的设计. 2009,43(2):72-76.
王润新,刘进军,侯丹. 用于实现互联系统仿真的电源模块大信号模型. 2009,43(6):76-81.
牛博,宋政湘,王建华,等. 继电保护装置信号端口电磁干扰传播通道的建模与仿真. 2009,43(10):104-108.
杨骁,陈贵灿,程军,等. 一种新型级敛Δ调制器系统结构. 2008,42(12):1541-1545.
杨骁,陈贵灿,程军,等. 一种新型高阶两通道时间交织ΣΔ调制器系统结构. 2008,42(8):996-1000.
张鸿,陈贵灿,程军,等. 流水线模数转换器中高速低功耗开环余量放大器的设计. 2008,42(6):751-755.
胡晓菁,宋政湘,王建华,等. 运用电路蕴涵及拓扑信息提高数字电路故障压缩效率. 2008,42(8):958-962.
陈景亮,姚学玲,孙伟. 基于表面闪络放电的伪火花开关触发特性的研究. 2007,41(8):978-981.
赵剑,贾建援,王洪喜,等. 屈曲式微加速度开关设计与分析. 2007,41(3):358-361.
0
浏览量
4
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621