The problem of a correct modeling of the electromagnetic field distribution in the near field region is one of the most challenging and interesting due to its direct implication in the engineering evaluation of the shielding effectiveness of materials and structures in close proximity of radiating sources. This paper deals with a detailed analysis on the applicability of the Schelkunoff theory of transmission lines for shielding assessment in near field. The contribution is divided in two Parts. The present Part I analyzes the characteristics of two principal closed form set of equations for the quick evaluation of the near field from an electric dipole. It discusses their assumptions and compares the values of electric (E) and magnetic (H)...
The configuration of an infinite planar conductive shield is examined when it is excited by an elect...
Recently, semiconductor devices are becoming more diverse and scaled down for various applications s...
Today with the rapid growth of telecommunications equipment, electronic and developing more and more...
This paper analyzes, in a quantitative way, the properties of the spatial distribution at the interf...
International audienceIn this paper, a fast approach is presented for the evaluation of near field m...
The contribution deals with an investigation of the recently proposed definitions for the electromag...
Electromagnetic shielding is popularly used to suppress electromagnetic noise generated from electro...
Transmission Line (TL) theory was proposed in the past to model field propagation through conductive...
The thesis describes the radiation of dipole antennas in near field area. More methods for evaluatio...
L’usage accru de l’électronique embarquée et l’électrification des moyens de transports (automobile,...
This paper describes a systematic study on the near-field behavior of an electromagnetic interferenc...
The basic principles of Shielding Effectiveness (S.E.(dB)) in terms of Reflection Loss (R(dB)), Abso...
A method is developed for calculating the radiation efficiency and quality factor, Q, for azimuthall...
The objective of this presentation is to illustrate the accuracy of the Schelkunoff formulation over...
An analytical formulation is presented for the evaluation of performance of a planar shield in the l...
The configuration of an infinite planar conductive shield is examined when it is excited by an elect...
Recently, semiconductor devices are becoming more diverse and scaled down for various applications s...
Today with the rapid growth of telecommunications equipment, electronic and developing more and more...
This paper analyzes, in a quantitative way, the properties of the spatial distribution at the interf...
International audienceIn this paper, a fast approach is presented for the evaluation of near field m...
The contribution deals with an investigation of the recently proposed definitions for the electromag...
Electromagnetic shielding is popularly used to suppress electromagnetic noise generated from electro...
Transmission Line (TL) theory was proposed in the past to model field propagation through conductive...
The thesis describes the radiation of dipole antennas in near field area. More methods for evaluatio...
L’usage accru de l’électronique embarquée et l’électrification des moyens de transports (automobile,...
This paper describes a systematic study on the near-field behavior of an electromagnetic interferenc...
The basic principles of Shielding Effectiveness (S.E.(dB)) in terms of Reflection Loss (R(dB)), Abso...
A method is developed for calculating the radiation efficiency and quality factor, Q, for azimuthall...
The objective of this presentation is to illustrate the accuracy of the Schelkunoff formulation over...
An analytical formulation is presented for the evaluation of performance of a planar shield in the l...
The configuration of an infinite planar conductive shield is examined when it is excited by an elect...
Recently, semiconductor devices are becoming more diverse and scaled down for various applications s...
Today with the rapid growth of telecommunications equipment, electronic and developing more and more...