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A Novel Compensation Inductance Structure for Suppressing Differential-to-Common Mode Conversion in Bended Differential Transmission Line

机译:一种用于抑制弯曲差分传输线中的差分模式转换的新型补偿电感结构

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A novel compact compensation inductance structure optimized by genetic algorithm (GA) for right-angle bended transmission line is proposed to mitigate differential-to-common mode conversion noise in this paper. In comparison with the previous suppression method, high suppression level and large bandwidth are obtained with the proposed structure. Simultaneously, the differential return loss and insertion loss have been minimized by GA, leading to an overall improved signal integrity (SI). Furthermore, the proposed structure places inside the transmission line and does not occupy extra wiring space. Finally, the differential-to-common mode conversion can be prohibited from DC to 11 GHz with a suppression level of - 23.13 dB. The measured results agree well with the simulated ones.
机译:提出了一种通过遗传算法(GA)优化的小型补偿电感结构,用于右角度弯曲传输线,以减轻本文的差分模式转换噪声。 与先前的抑制方法相比,利用所提出的结构获得高抑制水平和大带宽。 同时,通过GA最小化差分回波损耗和插入损耗,导致总体改善的信号完整性(SI)。 此外,在传输线内提出的结构位置,并且不占用额外的布线空间。 最后,可以通过抑制水平 - 23.13 dB的DC至11 GHz禁止差分常见模式转换。 测量结果与模拟的结果很好。

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