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Improving the Signal Integrity, Impedance Control and Attenuation of the Thin Transmission Lines Printed on Flexible Substrates

机译:改善柔性基板上印刷的细传输线的信号完整性,阻抗控制和衰减

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The uniform transmission line printed on flexible substrates distorts high speed and high frequency signals due to its thin thickness and thus high parasitic resistance. Though the coplanar waveguide can alleviate this issue to certain extent but the cost is very high because of the much wider line widths used. In this paper we propose to use tapered transmission lines to improve the signal integrity for high speed digital signals, to keep designated impedance and to decrease signal attenuation for high frequency RF signals. Printed tapered transmission lines are divided into two types: linearly tapered and segment-wise tapered. The DTR impedances, time domain signal propagations and S-parameters were simulated for uniform transmission line, proposed tapered transmission lines and coplanar waveguide. The results show that printed tapered thin microstrip transmission lines are suitable to be interconnects for heterogeneous integration of silicon chips and printed electronic devices on flexible substrates.
机译:印刷在柔性基板上的均匀传输线由于其薄的厚度以及因此高的寄生电阻而使高速和高频信号失真。尽管共面波导可以在一定程度上缓解这一问题,但是由于所使用的线宽要大得多,因此成本很高。在本文中,我们建议使用锥形传输线来改善高速数字信号的信号完整性,保持指定的阻抗并降低高频RF信号的信号衰减。印刷锥形传输线分为两种类型:线性锥形和分段锥形。模拟了均匀传输线,提出的锥形传输线和共面波导的DTR阻抗,时域信号传播和S参数。结果表明,印刷的锥形细微带传输线适用于互连互连,以实现硅芯片和印刷电子设备在柔性基板上的异质集成。

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