差分传输线结构不对称导致的差模到共模转换研究

Ayumi Motohashi, F. Nakamoto, Y. Sasaki, N. Oka, H. Oh-Hashi
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引用次数: 3

摘要

近年来,差分传输线广泛应用于高速数字互连中,其电磁辐射性能较低。虽然获得这种性能需要很高的电平衡,但平衡的退化可能经常由于结构的不对称而发生,例如连接到差分传输线单线的一条或两条上的附加图案和电气元件。在这种情况下,一部分差模信号被转换成共模信号,这往往会增加来自差分传输线的电磁辐射。因此,为了提供低EMI设备,在设计阶段通过保持电气平衡来降低差模到共模的转换比(Scd21)是很重要的。在本文中,我们提出了一个等效电路模型来评估由于结构不对称引起的模式转换。另外的连接模式和组件是用连接在单线和地之间的并联电容器建模的。那么,Scd21可以表示为差分传输线各单线之间的频率和电容差的简单函数,并且与电容器的位置无关。通过计算的Scd21与实验结果的比较,验证了该模型的正确性,该模型适用于差动传输线的低电磁干扰设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on differential mode to common mode conversion due to asymmetric structure in differential transmission line
Recently, differential transmission lines which have low electromagnetic radiation performance are widely used for high speed digital interconnections. Though high electrical balance is required to obtain that performance, degradation of the balance may often occur from asymmetry of the structure, such as additional patterns and electrical components connected to one or both of single lines of differential transmission line. In that case, some part of differential-mode signal is converted to common-mode signal, which may often increase electromagnetic radiation from the differential transmission line. It is therefore important to reduce the differential mode to common mode conversion ratio (Scd21) by keeping the electrical balance in the design stage in order to provide low EMI equipments. In this paper, we present an equivalent circuit model to evaluate the mode conversion due to the asymmetry of structure. The additionally connected patterns and components are modeled with a shunt capacitor connected between the single line and the ground. Then, Scd21 can be expressed as a simple function of the frequency and the capacitance difference between each single line of the differential transmission line, and is independent on the position of the capacitors. The proposed model is verified by the comparison of calculated Scd21 with the experimental results, and is applicable in low EMI design of differential transmission lines.
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