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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Suppression of Common-Mode Radiation and Mode Conversion for Slot-Crossing GHz Differential Signals Using Novel Grounded Resonators
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Suppression of Common-Mode Radiation and Mode Conversion for Slot-Crossing GHz Differential Signals Using Novel Grounded Resonators

机译:使用新型接地谐振器抑制跨槽GHz差分信号的共模辐射和模式转换

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摘要

An asymmetrical grounded resonators technique to suppress the common-mode radiation (or electromagnetic interference) and mode conversion caused by the slot-crossing differential signals is proposed. The grounded resonators can be implemented on printed circuit board or package substrate without additional cost by just designing open stubs with shorting via connecting to the reference plane. The design theory based on the transmission line model is developed to estimate the physical length and effective bandwidth of the grounded resonators. In a fabricated example, the measured common-mode passband is from 2.21 to 3.35 GHz with a fractional bandwidth of 41%. Meanwhile, with the integrated grounded resonators, the differential-mode signal can still maintain good signal integrity. The reductions of the mode conversion and the common-mode radiation are also investigated. It shows that the frequency range of more than 5-dB improvement is consistent to the designed common-mode passband. The effectiveness of this novel noise mitigation approach is well validated by both simulation and experiment.
机译:提出了一种非对称接地谐振器技术,以抑制由缝隙交叉的差分信号引起的共模辐射(或电磁干扰)和模式转换。接地谐振器可以通过仅设计带有短路连接到参考平面的短路短截线来实现,而无需额外成本即可在印刷电路板或封装基板上实现。建立了基于传输线模型的设计理论,以估计接地谐振器的物理长度和有效带宽。在制造的示例中,测得的共模通带为2.21至3.35 GHz,分数带宽为41%。同时,利用集成的接地谐振器,差模信号仍可以保持良好的信号完整性。还研究了模式转换和共模辐射的降低。它表明,提高5 dB以上的频率范围与设计的共模通带一致。仿真和实验均很好地验证了这种新颖的降噪方法的有效性。

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