Hybrid-Embedded EBG Structure for Ultrawideband Suppression of SSN

In order to realize the ultrawideband suppression of simultaneous switching noise (SSN), a hybrid-embedded novel electromagnetic band-gap (EBG) structure is proposed. The presented EBG structure is based on the traditional Z-bridge EBG embedded the L-bridge EBG structure. By the HFSS software simula...

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Veröffentlicht in:IEEE transactions on electromagnetic compatibility 2018-06, Vol.60 (3), p.747-753
Hauptverfasser: Shi, Ling-Feng, Sun, Zhi-Min, Liu, Gong-Xu, Chen, Sen
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creator Shi, Ling-Feng
Sun, Zhi-Min
Liu, Gong-Xu
Chen, Sen
description In order to realize the ultrawideband suppression of simultaneous switching noise (SSN), a hybrid-embedded novel electromagnetic band-gap (EBG) structure is proposed. The presented EBG structure is based on the traditional Z-bridge EBG embedded the L-bridge EBG structure. By the HFSS software simulation and real test, the results show that the proposed EBG structure can obtain ultrawideband suppression of SSN. Compared with the traditional Z-bridge and L-bridge, the suppression effect is greatly improved. This paper analyzes the reason that the new structure can achieve ultrawideband suppression of SSN based on the equivalent circuit model of the structure. Moreover, the proposed structure will lead to signal integrity problems, which is analyzed by eye diagrams.
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subjects Capacitance
Computer simulation
Electromagnetic band-gap structure (EBG)
Embedded structures
Inductance
Integrated circuit modeling
Metamaterials
Photonic band gap
Signal integrity
simultaneous switching noise (SSN)
Ultra wideband technology
Ultrawideband
title Hybrid-Embedded EBG Structure for Ultrawideband Suppression of SSN
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