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首页> 外文期刊>IEICE Transactions on Communications >Practical Design Methodology of Mode-Conversion-Free Tightly Coupled Asymmetrically Tapered Bend for High-Density DifferentialWiring
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Practical Design Methodology of Mode-Conversion-Free Tightly Coupled Asymmetrically Tapered Bend for High-Density DifferentialWiring

机译:用于高密度差异旋转的模式 - 转换无紧密耦合不对称锥形弯曲的实用设计方法

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摘要

The plain bend in a pair of differential transmission lines causes a path difference, which leads to differential-to-common mode conversion due to the phase difference. This conversion can cause serious common-mode noise issues. We previously proposed a tightly coupled asymmetrically tapered bend to suppress forward differential-to-common mode conversion and derived the constraint conditions for high-density wiring. To provide sufficient suppression of mode conversion, however, the additional correction was required to make the effective path difference vanish. This paper proposes a practical and straightforward design methodology by using a very tightly coupled bend (decreasing the line width and the line separation of the tightly coupled bend). Full-wave simulations below 20 GHz demonstrated that sufficient suppression of the forward differential-to-common mode conversion is successfully achieved as designed. Measurements showed that our design methodology is effective.
机译:一对差分传输线中的普通弯曲导致路径差异,这导致由于相位差而导致差分常见模式转换。 这种转换可能导致严重的共模噪声问题。 我们之前提出了紧密耦合的不对称锥形弯曲,以抑制前向差分对共模转换,并导出高密度布线的约束条件。 然而,为了提供足够的模式转换抑制,需要额外的校正来使有效的路径差消失。 本文通过使用非常紧密的耦合弯曲(减小线宽和紧密耦合弯曲的线分离)提出了实用和简单的设计方法。 低于20 GHz的全波模拟表明,根据设计成功实现了正向差分模式转换的充分抑制。 测量结果表明,我们的设计方法是有效的。

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