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Complex Effective Dielectric Permittivity of Micromechanically Tunable Microstrip Lines

机译:可微调微带线的复数有效介电常数

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It is considered an influence of physical-topological parameters of controlled microstrip lines where characteristics modification is achieved by signal electrode movement over the substrate on effective dielectric permittivity and electromagnetic energy loss in the line expressed in form of complex permittivity. There are stated the ways of increase of sensitivity of effective dielectric permittivity modification to signal electrode shift and loss decrease. There are determined ultimate characteristics of tuning and loss. There are represented calculations of transfer factor effective permittivity corresponding to experimental results. These results can be used for development of controlled resonant elements and phase shifters with application of electrically tunable micromovement devices, such as piezo- and electrostrictive actuators or microelectromechanic systems. Due to application of invariant relations of physical-topological parameters represented calculations are suitable for estimation of tuning factors and loss of devices with micromechanical control in a wide range of operating frequency with application of wide range of materials.
机译:这被认为是受控微带线的物理拓扑参数的影响,其中通过在基板上的信号电极移动对以复介电常数形式表示的线中的有效介电常数和电磁能损耗实现特性修改。已经陈述了增加有效介电常数修改对信号电极偏移和损耗减小的灵敏度的方法。确定的最终特性是调谐和损耗。有与实验结果相对应的转移因子有效介电常数的计算。这些结果可用于开发可控谐振元件和移相器,并应用电可调微运动装置,例如压电和电致伸缩执行器或微机电系统。由于应用了物理拓扑参数的不变关系,因此所表示的计算适用于在广泛的工作频率范围内使用多种材料进行微机械控制的调谐因子和设备损耗估算。

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