Electromagnetic Compatibility, IEEE Transactions on
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IEEE Transactions on Electromagnetic Capability focuses on the capability of systems or equipment to be tested in the intended environment at designed levels of efficiency without degradation due to electromagnetic interactions.
Latest Published Articles
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Vertical Stepped Impedance EBG (VSI-EBG) Structure for Wideband Suppression of Simultaneous Switching Noise in Multilayer PCBs
Myunghoi Kim ; Kyoungchoul Koo ; Yujeong Shim ; Chulsoon Hwang ; Jun So Pak ; Seungyoung Ahn ; Joungho KimApr-11 2013 -
Temperature Rise Induced by Wire and Planar Antennas in a High-Resolution Human Head Model
Apr-11 2013 -
The Slow-Varying Electric Field of Negative Upward Lightning Initiated by the Peissenberg Tower, Germany
Apr-11 2013 -
Low-Frequency Dominant-Mode Propagation in Spatially Dispersive Graphene Nanowaveguides
Apr-11 2013 -
Detection of Electromagnetic Interference in Microcontrollers Using the Instability of an Embedded Phase-Lock Loop
Apr-11 2013
Popular Articles
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A comparison of transient solutions of Maxwell's equations to that of the modified Maxwell's equations
Aug-06 2002 -
Analysis and modeling of impulsive noise in broad-band powerline communications
Aug-07 2002 -
Modeling of Crosstalk in Through Silicon Vias
Feb-13 2013 -
Absorbing Boundary Conditions for the Finite-Difference Approximation of the Time-Domain Electromagnetic-Field Equations
Feb-12 2007 -
An Automated System for Measuring Electric Field Distributions Within a Vehicle
Feb-13 2013
Publish in this Journal
Meet Our Editors
Editor-in-Chief
Professor Farhad Rachidi
Swiss Federal Institute of Technology (EPFL)
EMC Laboratory
Popular Articles (March 2013)
Includes the top 25 most frequently downloaded documents for this publication according to the most recent monthly usage statistics.Society Sponsor
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1. A comparison of transient solutions of Maxwell's equations to that of the modified Maxwell's equations
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4. Absorbing Boundary Conditions for the Finite-Difference Approximation of the Time-Domain Electromagnetic-Field Equations
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8. Model and Mechanism of Miniaturized and Stopband-Enhanced Interleaved EBG Structure for Power/Ground Noise Suppression
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9. Advanced Modeling of Crosstalk Between an Unshielded Twisted Pair Cable and an Unshielded Wire Above a Ground Plane
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10. A System-Level Electrostatic-Discharge-Protection Modeling Methodology for Time-Domain Analysis
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11. An Improved Dipole-Moment Model Based on Near-Field Scanning for Characterizing Near-Field Coupling and Far-Field Radiation From an IC
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15. Large Ad Hoc Shielded Room with Removable Mode Stirrer for Mobile Phone Antenna Tests
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17. Probability Distribution of the Quality Factor of a Mode-Stirred Reverberation Chamber
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18. Frequency Dependence of Soil Parameters: Effect on the Lightning Response of Grounding Electrodes
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19. Filterless Class-D Amplifier With Pseudorandomized Carrier Frequency Modulation for EMI Reduction
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21. Efficient Reciprocity-Based Algorithm to Predict Worst Case Induced Disturbances on Multiconductor Transmission Lines due to Incoming Plane Waves
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22. Modeling Methodology of Automotive Electronic Equipment Assessed on a Realistic Subsystem
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25. On the Effectiveness of Charged Wire Structures for Reducing Electron Backscatter in System-Generated EMP Simulators
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Aims & Scope
IEEE Transactions on Electromagnetic Capability focuses on the capability of systems or equipment to be tested in the intended environment at designed levels of efficiency without degradation due to electromagnetic interactions.
Meet Our Editors
Editor-in-Chief
Professor Farhad Rachidi
Swiss Federal Institute of Technology (EPFL)
EMC Laboratory
Further Links
IEEE Transactions on Electromagnetic Capability focuses on the capability of systems or equipment to be tested in the intended environment at designed levels of efficiency without degradation due to electromagnetic interactions.
Aims & Scope
The enhancement of electromagnetic compatibility (electromagnetic compatibility is defined as the capability of systems or equipment to be tested in the intended environment at designed levels of efficiency without degradation due to electromagnetic interactions), including, but not necessarily limited to:
- The generation of engineering standards
- Measurement techniques and test procedures
- Measuring instruments
- Equipment and systems characteristics, such as susceptibility (immunity), vulnerability, related propagation effects, and subjective effects, frequency allocation and assignment
- Improved (interference reduction or control) techniques and components
- Education in electromagnetic compatibility
- Studies of the origins of interference, both man-made and natural, and their classification
- Spectrum conservation
- Spectrum utilization
- Shielding techniques
- Side effects of electromagnetic energy
- Scientific, technical, industrial, professional or other activities that contribute to this field, or utilize the techniques or products of this field, subject as the art develops, to additions, subtractions, or other modifications directed or approved by the IEEE Technical Activities Board.
Persistent Link: http://ieeexplore.ieee.org/servlet/opac?punumber=15 More »
Frequency: 6
ISSN: 0018-9375
Publication Details: IEEE Transactions on Electromagnetic Compatibility
Published by:
Subjects
- Engineered Materials, Dielectrics & Plasmas
- Fields, Waves & Electromagnetics
Contacts
Editor-in-Chief
Professor Farhad Rachidi
Swiss Federal Institute of Technology (EPFL)
EMC Laboratory
EPFL-SCI-STI-FR
Station 11
CH-1015 Lausanne
Switzerland
Phone: +41 (0) 21 693 26 20 (direct)
+41 (0) 21 693 26 61 (secretariat)
Fax: +41 (0) 21 693 46 62
Email: Farhad.Rachidi@epfl.ch
url: http://emc.epfl.ch
About this Journal
Content Announcements
Author Resources
Society Sponsor
Title History
Contacts
Editor-in-Chief
Professor Farhad Rachidi
Swiss Federal Institute of Technology (EPFL)
EMC Laboratory



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