Near-Field Coupling Analysis of Flexible Printed Circuit Boards

Yang Liu;Yuwei Luo;Zhifei Xu;Xiuqin Chu;Jun Wang;Kai-Da Xu
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Abstract

Flexible printed circuit boards (FPCB) can provide more circuit design solutions for the miniaturization of electronic devices due to their small size, lightweight, and flexibility for bending. However, RF interference from RF antennas or other radiation sources may lead to signal integrity issues in FPCB signal transmission with the increase in transmission rate. To address this issue, a method based on the reciprocity theorem is proposed for rapidly estimating the near-field coupling between two single-port devices on an FPCB under bending conditions. Three different cases for the FPCB, i.e., no bending, bending outside the victim transmission line (TL), and bending across the victim TL, are analyzed to characterize the near-field coupling by deriving the expressions of the scattering parameters. Moreover, the bending angle, rotating angle, bending position, and bending diameter of FPCB are further analyzed for their impact on coupling under bending conditions. The proposed method can be used to analyze various FPCB bending situations.
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柔性印刷电路板的近场耦合分析
柔性印刷电路板(FPCB)体积小、重量轻、弯曲灵活,可为电子设备的微型化提供更多的电路设计解决方案。然而,随着传输速率的提高,来自射频天线或其他辐射源的射频干扰可能会导致 FPCB 信号传输中的信号完整性问题。针对这一问题,我们提出了一种基于互易定理的方法,用于快速估算 FPCB 上两个单端口器件在弯曲条件下的近场耦合。分析了 FPCB 的三种不同情况,即无弯曲、在受害传输线(TL)外弯曲和跨受害传输线弯曲,通过推导散射参数的表达式来描述近场耦合。此外,还进一步分析了 FPCB 的弯曲角、旋转角、弯曲位置和弯曲直径对弯曲条件下耦合的影响。所提出的方法可用于分析各种 FPCB 弯曲情况。
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