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This paper proposes novel mixed-mode S-parameters, which are dubbed as “extended mixed-mode S-parameters.” The extended mixed-mode S-parameters were applied to three-conductor transmission lines, resulting in the independent differential and common modes using the current division factor of three-conductor transmission lines. By contrast to the conventional mixed-mode S -parameters, there are no cross-mode...
In this work, a new technique for an efficient, simple and fast equivalent circuit and full wave numerical modeling of the electrostatic discharge (ESD) generator is presented. A novel circuit model of the NoiseKen ESD simulator is proposed based on the frequency domain measurement of the standard waveform calibration setup. The simple full wave electromagnetic (EM) model of the same generator, which...
In this study, an analysis of the effect of the electrostatic discharge (ESD) gun grounding strap on the generated ESD stress waveform is presented. The reference ESD waveform is measured using the standard calibration setup of the IEC 61000-4-2 standard for the different (round, short and long) configurations of the grounding strap. The post processing analysis shows that increasing the length of...
The novel extended mixed-mode S-parameters of the three-conductor lines are proposed in this paper based on the mode analysis. The extended mixed-mode S-parameters do not contain the cross-mode S-parameters due to the independent differential-mode and common-mode analysis. In addition, two new conversion matrices containing the current division factor are also proposed to convert the extended mixed-mode...
The differential mode (DM) and common mode (CM) in the generalized four-conductor lines are analysed with the current division factors. Novel extended mixed-mode S-parameters, in which the cross-mode S-parameters not exist, is proposed based on the independent mode analysis. In addition, a new mode conversion between the standard S-parameters and the extended mixed-mode S-parameters is also presented...
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