Dominant factors of electromagnetic interference problems of asymmetrical and equi-distance differential-paired lines
Author:
Affiliation:
1. Department of Electrical and Electronic Engineering; Akita University; Akita Japan
2. Akita Study Center; The Open University of Japan; Akita Japan
Funder
Japan Society for the Promotion of Science
Publisher
American Geophysical Union (AGU)
Subject
Electrical and Electronic Engineering,General Earth and Planetary Sciences,Condensed Matter Physics
Reference22 articles.
1. A numerical approach for the evaluation of the nonlinear effects on the attenuation constant in high-temperature superconducting transmission lines;Caorsi;Radio Sci.,2001
2. Bended differential transmission line using compensation inductance for common-mode noise suppression;Chang;IEEE Trans. Compon. Packag. Manuf. Technol.,2012
3. Imaging by a double negative metamaterial slab excited with an arbitrarily oriented dipole;Culhaoglu;Radio Sci.,2014
4. Characteristics of a power line used as a VLF antenna;Dazey;Radio Sci.,1982
5. A wideband common-mode suppression filter for bend discontinuties in differential signaling using tightly coupled microstrips;Gazda;IEEE Trans. Adv. Packag.,2010
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1. Evaluation Method of Voltage - Current Distribution and Electromagnetic Radiation from Asymmetrical and Equi-Length Differential-Paired Lines Expressed by Equivalent Source and Load Circuit;Journal of The Japan Institute of Electronics Packaging;2022-07-01
2. Noise Countermeasure Effect of Common Mode Choke Coil on Electromagnetic Radiation Characteristics from Differential Transmission Line;Journal of The Japan Institute of Electronics Packaging;2022-07-01
3. Evaluation Method of Voltage and Current Distributions on Asymmetrical and Equi-Length Differential-Paired Lines;IEICE Transactions on Electronics;2020-11-01
4. Imbalance Component and Electromagnetic Radiation from Asymmetrical and Equi-Length Differential-Paired Lines;Journal of The Japan Institute of Electronics Packaging;2018-08-01
5. Suppression of Mode-Conversion by DNG Material for Differential-Paired Lines with Bend Discontinuities;Transactions of The Japan Institute of Electronics Packaging;2015
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