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A study on transmission characteristics and shielding effectiveness of shielded-flexible printed circuits for differential-signaling

机译:屏蔽柔性印制电路差分信号传输特性和屏蔽效果的研究

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摘要

To provide basic considerations for the realization of method for suppressing the EMI from differential-paired lines on flexible printed circuits (FPC), the characteristics of the SI performance and shielding effectiveness (SE) of shielded-flexible printed circuits for differential-signaling are investigated in this paper experimentally and by a numerical modeling. Firstly, transmission characteristics of TDR measurement and frequency response of |S| are discussed, from view point of signal integrity. Secondly, as the characteristics of the SE performance for EMI, frequency responses of magnetic field are investigated. Although placement of conductive shield near the paired-lines decreases characteristics impedance, |Sdd21| for the “with Cu 5.5um-thickness copper shield” is not deteriorated compared with “without shield” and sufficient SE performance for magnetic fields can be established. But, thin-shield deteriorates SI as well as SE performances.
机译:为了为实现用于抑制柔性印刷电路板上的差分对线路上的EMI的方法提供基本的考虑,研究了用于差分信号的屏蔽柔性印刷电路板的SI性能和屏蔽效率(SE)的特性本文通过实验和数值模拟。首先,TDR测量的传输特性和| S |的频率响应从信号完整性的角度进行讨论。其次,作为电磁干扰的SE性能的特征,研究了磁场的频率响应。尽管将导电屏蔽层放置在成对线附近会降低特性阻抗,但| Sdd21 |与“不带屏蔽层”相比,“带Cu 5.5um厚的铜屏蔽层”的性能不会降低,并且可以为磁场建立足够的SE性能。但是,薄屏蔽层会降低SI和SE的性能。

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