Design of a Novel Ultra-Wideband Common-Mode Filter Using a Magnified Coupled Defected Ground Structure

Author:

Lin Ding-Bing1ORCID,Wang Mei-Hui1ORCID,Pramudita Aloysius Adya2ORCID,Adiprabowo Tjahjo2ORCID

Affiliation:

1. Department of Electronic and Computer Engineering, National Taiwan University of Science and Technology, Taipei City 106335, Taiwan

2. School of Electrical Engineering, Telkom University, Bandung 40257, Indonesia

Abstract

An ultra-wideband common-mode (CM) filter for a gigahertz (GHz) data rate signal is proposed in this paper. The proposed filter was designed only on the printed circuit board (PCB) ground plane; no additional components wererequired. We took advantage of producing second-order transmission zero by an asymmetrical magnified coupled DGS to extend the suppression bandwidth. Full-wave simulations and equivalent circuit models of the DGS resonator were established to predict the suppression performance. The measured differential-mode insertion loss (Sdd21) from direct current (DC) to 12.35 GHz was obtained within the −3 dB definitionin the frequency domain. The CM noise was suppressed by more than10 dB in the frequency range from 2.9 GHz to 16.2 GHz. The fractional bandwidth (FBW) reached 139.3%. The proposed filter blocked 62.3% of the CM noise magnitude in the time domain measurement. In addition, the eye diagram measurement proved that good transmission quality was maintained. The proposed filter can be widely implemented to reduce electromagnetic interference (EMI) in radio frequency (RF) andWi-Fi (wireless fidelitystandard) 5 and 6E wireless communication applications.

Funder

Ministry of Science and Technology

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference23 articles.

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3. Gavenda, J.D. (1989, January 23–25). Measured effectiveness of a toroid choke in reducing common-mode current. Proceedings of the National Symposium on Electromagnetic Compatibility, Denver, CO, USA.

4. Design of Miniaturized Common-Mode Filter by Multilayer Low-Temperature Co-Fired Ceramic;Tseng;IEEE Trans. Electromagn. Compat.,2004

5. Stopband-Extended Balanced Bandpass Filter Using Coupled Stepped-Impedance Resonators;Wu;IEEE Microw. Wirel. Compon. Lett.,2007

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