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A new optically controlled CDS-polymer capacitor for tunable microwave components

机译:一种用于可调谐微波组件的新的光控制CDS聚合物电容器

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For the first time, we show that a new optically sensitive MIM CdS-polymer capacitor can provide sufficiently large capacitance variation to be useful for tunable microwave components. The new capacitor, based on photoconductive particle inclusions that cause dielectric permittivity change with light, is demonstrated in a coplanar circuit operating over the 1 to 10 GHz band. Upon illumination through the lower ITO electrode, its capacitance varied from 0.16pF to 0.18pF, a 13% change. A complete equivalent model of the capacitor is given. The basic CPW circuit could easily be modified to overcome present material limitations associated with the optically transparent ITO metal and the CdS polymer mix, leading to future low cost, simply processed, integrated, tunable components such as filters and phase shifters. This new technology allows for the elimination of performance degrading electronic circuitry that has traditionally plagued reconfigurable components.
机译:我们首次表明,新的光学敏感MIM CDS-聚合物电容器可以提供足够大的电容变化,以可用于可调谐微波部件。基于引起光线的光电导颗粒夹杂物的新电容器在经过1至10GHz波段的共面电路中说明了引起光的光电导颗粒夹杂物。在通过下部ITO电极照射时,其电容从0.16pf变化至0.18pf,变化13%。给出了电容器的完整等效模型。可以容易地修改基本CPW电路以克服与光学透明ITO金属和CDS聚合物混合物相关的本材料限制,导致未来的低成本,简单地处理,集成,可调谐部件,例如过滤器和相移器。这种新技术允许消除具有传统上困扰可重新配置组件的性能劣化电子电路。

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