差分传输线密集平行走线几何不对称对模式转换的抑制

Tomoya Takeuchi, K. Iokibe, Y. Toyota
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引用次数: 0

摘要

对称性对差分传输线来说很重要,但密集的平行走线容易因与相邻导体的耦合而破坏对称性,导致模式转换。我们提出了一种放置在非相邻导体一侧的差分传输线的非对称几何结构,以抑制模式转换并在松耦合和紧耦合并联走线的情况下保持信号完整性。通过设计考虑与相邻导体耦合的密集差分传输线的非对称几何结构,通过减小非相邻导体一侧的线宽,成功地抑制了模式转换。研究还发现,在紧密耦合的并行走线中,非对称几何结构可以抑制模式转换并保持信号完整性。另一方面,在松散耦合的平行轨迹中,我们先前提出的紧耦合非对称锥形弯曲抑制了模式转换。
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Suppression of Mode Conversion Due to Asymmetric Geometry of Dense Parallel Traces in Differential-Transmission Lines
Symmetry is important for differential-transmission lines, but the dense parallel traces easily break the symmetry due to coupling with the adjacent conductor, leading to mode conversion. We propose an asymmetric geometry of differential-transmission lines placed on the side of a nonadjacent conductor to suppress mode conversion and maintain signal integrity in the cases of loosely coupled and tightly coupled parallel traces. By designing the asymmetric geometry of dense differential-transmission lines by taking into account coupling with the adjacent conductor, mode conversion was successfully suppressed by decreasing the line width on the side of the non-adjacent conductor. It was also found that the asymmetric geometry can suppress mode conversion and maintain signal integrity in tightly coupled parallel traces. In loosely coupled parallel traces, on the other hand, the tightly coupled asymmetrically tapered bend we previously proposed suppresses mode conversion.
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