DocumentCode :
1017603
Title :
Analysis and Modeling of Hybrid Planar-Type Electromagnetic-Bandgap Structures and Feasibility Study on Power Distribution Network Applications
Author :
Kim, Ki Hyuk ; Schutt-Ainé, José E.
Author_Institution :
Univ. of Illinois at Urbana-Champaign, Urbana
Volume :
56
Issue :
1
fYear :
2008
Firstpage :
178
Lastpage :
186
Abstract :
A unified 1D analysis model of hybrid planar-type electromagnetic-bandgap (EBG) structures is developed. Based on the analysis results, three types of hybrid design methods to reduce the cutoff frequency of the EBG structures are discussed, and design equations for their noise suppression bandwidths are derived. In order to simulate switching noise characteristics of the hybrid planar-type EBG structures, 2D circuit level models are developed and experimentally verified. With the developed circuit-level models and CMOS active switching devices, feasibility studies on the power distribution network design using the hybrid EBG structures are conducted. The hybrid EBG structure with series lumped chip inductors shows efficient noise suppression characteristics in both the frequency and time domains; however, it has potential limitations because of its generation of higher switching noise voltages depending on power supply connection configurations.
Keywords :
CMOS integrated circuits; distribution networks; photonic band gap; system-in-package; 1D analysis model; 2D circuit level models; CMOS active switching devices; cutoff frequency; frequency domain; hybrid planar-type EBG structures; hybrid planar-type electromagnetic-bandgap structures; noise suppression bandwidths; power distribution network; power supply connection configurations; series lumped chip inductors; switching noise characteristics; time domain; Circuit noise; Design methodology; Electromagnetic analysis; Electromagnetic modeling; Metamaterials; Noise generators; Periodic structures; Power systems; Semiconductor device modeling; Switching circuits; Electromagnetic bandgap (EBG); power distribution network (PDN); simultaneous switching noise (SSN); system-in-package/system-on-package;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2007.912199
Filename :
4408425
Link To Document :
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