Design and Modeling of a StopbandEnhanced EBG Structure Using Ground Surface Perturbation Lattice f.pdf
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Design and Modeling of a StopbandEnhanced EBG Structure Using Ground Surface Perturbation Lattice f
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, VOL. 57, NO. 8, AUGUST 2009 2047
Design and Modeling of a Stopband-Enhanced EBG
Structure Using Ground Surface Perturbation
Lattice for Power/Ground Noise Suppression
Ting-Kuang Wang, Chia-Yuan Hsieh, Hao-Hsiang Chuang, Student Member, IEEE, and
Tzong-Lin Wu, Senior Member, IEEE
Abstract—Based on the ground surface perturbation concept, coplanar EBG structure in two layer are two typical topolo-
a novel stopband-enhanced electromagnetic-bandgap (EBG) gies with efficient suppression of power/ground noises in high-
structure has been proposed to suppress the power/ground noise speed circuits. Since the power/ground noises in digital or
on a three-layer package. This structure consists of a coplanar
periodic pattern on the top layer, a ground plane on the third layer, mixed signal circuits are broadband, several research studies
and a ground surface perturbation lattice on the second layer with about enhancing the noise stopband have been proposed. The
eight vias connecting to the ground plane. By designing the di- stopband bandwidth can be broaden by horizontally or verti-
mension and via numbers, the ground surface perturbation lattice cally cascading the unit cells of different periods [11], [12],
can significantly enhance the stopband bandwidth. A generic 1-D
circuit model is proposed for the three-layer EBG structure. The but more layout space or one more metal layer are required for
reason why the proposed structure can possess wider stopband will the cascading approaches. Implanting a high dielectric-constant
be explained. Several test samples
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