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Experimental improvement of birefringence and response time in Liquid Crystals using surface preparation of polyimide at 20GHz

机译:使用20GHz的聚酰亚胺表面处理实验改善液晶中的双折射和响应时间

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This paper presents an experimental study analyzing the effects of surface treated Polyimide (PI) on dielectric anisotropy and response time of Liquid Crystal (LC) in an In-Plane Switching (IPS) cell design. A Co-Planar Waveguide (CPW) transmission line is used as an in-plane interrogation architecture, with a layer of LC enclosed on top of the CPW. By applying different surface preparations of PI, we are able to derive an optimum condition to maximize birefringence and minimize response times at 20GHz. Measured phase change is increased from 28 deg to 72 deg for the same length of the CPW line. At the same time, measurement results show that fall time is decreased from 9.32s down to 4.1s. These improvements will facilitate realization of LC in microwave devices in need of fast and tunable materials.
机译:本文提出了一项实验研究,该研究分析了平面内开关(IPS)单元设计中表面处理的聚酰亚胺(PI)对介电各向异性和液晶(LC)响应时间的影响。共面波导(CPW)传输线用作面内询问体系结构,在CPW顶部封装了一层LC。通过应用PI的不同表面处理,我们能够得出最佳条件,以最大化双折射并最小化20GHz的响应时间。对于相同长度的CPW线,测得的相变从28度增加到72度。同时,测量结果表明下降时间从9.32s减少到4.1s。这些改进将有助于在需要快速和可调​​材料的微波设备中实现LC。

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