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Electric fields radiated from the gap between two screws discharged with an electrostatic discharge gun

机译:用静电放电枪释放的两个螺钉之间的间隙辐射出的电场

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The finite difference time domain method was used to study the electric fields radiated from the gap between two screws embedded in an acrylic bar discharged with an electrostatic discharge gun. The excited source voltage across the gap between two screws was expressed by double exponential forms with two different decay constants after curve fitting 500 sets of measured data using classical curve-fitting techniques together with Newton's iteration method. The excitation source voltage pulse was then transferred into an electric field pulse over the gap between the two screws. The calculated electric fields radiated from the gap between the two screws were compared with those obtained from measured data at frequencies of 80 MHz to 1.0 GHz. It is shown that the measurement data manifests a good agreement with the simulation results. It is also found that the radiated electric field decreases sharply as the frequency increases from 80 MHz to 1.0 GHz. The time domain behavior of the radiated electric field near the acrylic bar was also obtained by the finite difference time domain method for observation of pulsed electromagnetic interference immunity.
机译:时域有限差分法用于研究从用静电放电枪放电的丙烯酸棒中嵌入的两个螺钉之间的间隙所辐射的电场。使用经典的曲线拟合技术和牛顿迭代法对500套测量数据进行曲线拟合后,通过具有两个不同衰减常数的双指数形式来表示两个螺钉之间的激励电压。然后,激励源电压脉冲在两个螺钉之间的间隙上转换为电场脉冲。比较了从两个螺钉之间的缝隙辐射出的计算出的电场与在80 MHz至1.0 GHz频率下从测量数据获得的电场。结果表明,测量数据与仿真结果吻合良好。还发现,随着频率从80 MHz增加到1.0 GHz,辐射电场急剧减小。丙烯酸酯棒附近辐射电场的时域行为也通过有限差分时域方法获得,用于观察脉冲电磁干扰抗扰性。

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