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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A New Broadband Common-Mode Noise Absorption Circuit for High-Speed Differential Digital Systems
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A New Broadband Common-Mode Noise Absorption Circuit for High-Speed Differential Digital Systems

机译:高速差分数字系统的新型宽带共模噪声吸收电路

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摘要

A novel concept of the absorptive common-mode filter (A-CMF) is proposed for solving electromagnetic interference and RF interference problems in high-speed differential digital systems. The A-CMF is realized by a balanced four-port circuit with both horizontal and vertical symmetry. The common-mode (CM) noise can be terminated (or absorbed) by the resistors in the A-CMF and is thus transferred to heat. In addition, the signal integrity of differential signals can be well preserved by the A-CMF. Theory and design procedures are developed to determine corresponding element values of the A-CMF. A design sample is realized by an integrated passive device process on glass substrate. The circuit size is only . Results of measurement and full-wave simulation have good consistency. It will be found that the CM power loss (or absorption) ratio is over 80% from 4 to 14 GHz in measurement, and the differential-mode cutoff frequency can maintain up to 9 GHz with insertion loss, which is good enough for high-speed digital system applications. Finally, the eye diagram at the A-CMF output does not degrade significantly even when the differential data rate is up to 5 Gb/s.
机译:为了解决高速差分数字系统中的电磁干扰和射频干扰问题,提出了一种吸收性共模滤波器(A-CMF)的新概念。 A-CMF由水平和垂直对称的平衡四端口电路实现。共模(CM)噪声可以通过A-CMF中的电阻器终止(或吸收),从而传递给热量。此外,A-CMF可以很好地保持差分信号的信号完整性。开发了理论和设计程序来确定A-CMF的相应元素值。通过在玻璃基板上集成无源器件工艺来实现设计样本。电路尺寸仅为。测量结果和全波仿真具有良好的一致性。我们发现,在测量中,从4到14 GHz,CM的功率损耗(或吸收率)超过80%,并且差模截止频率可以在插入损耗的情况下保持高达9 GHz的频率,足以满足高加快数字系统的应用。最后,即使差分数据速率高达5 Gb / s,A-CMF输出端的眼图也不会显着降低。

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