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Design of liquid crystal based coplanar waveguide tunable phase shifter with no floating electrodes for 60–90 GHz applications

机译:基于液晶的共面波导可调移相器的设计,无浮动电极,适用于60–90 GHz应用

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A continuously tunable millimeter wave (mm-wave) phase shifter for 60-90 GHz applications was proposed using a coplanar waveguide (CPW) structure without the use of a floating electrode (FE). In contrast to conventional CPW-FE structures, the proposed FE-free CPW device can be modulated by the nematic liquid crystal (LC) materials confined in two symmetric feeding channels. The nearly true-TEM nature of this CPW design enables wideband and low-loss operations, particularly in high frequencies up to 90 GHz. In order to optimize between high tunability and low loss, the aspect ratio of the CPW structure was optimized to maximize the defined Figure-of-Merit (FoM). By taking into account different loss mechanisms in the designed structure and the effect of LC orientations, the driving-voltage dependent impedance matching was examined to minimize the return and insertion losses. As an example, the design of a phase shifter aimed to operate at 79 GHz with low bias voltages (0-10 V) is presented, showing a wide phase shift range of 0-408° and a low insertion loss from -6.15dB to -4.56dB. The corresponding FoM is 66.3°/dB, which make it possible to outperform over other LC-based phase shifters as reported within the targeted frequency range of 60-90 GHz.
机译:提出了使用共面波导(CPW)结构而不使用浮动电极(FE)的60-90 GHz应用的连续可调毫米波(mm-wave)相移器。与传统的CPW-FE结构相比,所提出的无FE CPW器件可以通过限制在两个对称进料通道中的向列液晶(LC)材料进行调制。这种CPW设计几乎具有真正的TEM特性,可实现宽带和低损耗操作,尤其是在高达90 GHz的高频下。为了在高可调性和低损耗之间进行优化,对CPW结构的纵横比进行了优化,以最大化定义的品质因数(FoM)。通过考虑设计结构中的不同损耗机制和LC方向的影响,检查了与驱动电压有关的阻抗匹配,以最大程度地减小返回损耗和插入损耗。作为示例,提出了一种旨在在低偏置电压(0-10 V)下以79 GHz运行的移相器的设计,该移相器显示了0-408°的宽相移范围和从-6.15dB到0.55dB的低插入损耗。 -4.56dB。相应的FoM为66.3°/ dB,在60-90 GHz的目标频率范围内,其性能优于其他基于LC的移相器。

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