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Efficient analysis of microstrip-coupled nonradiative dielectric (NRD) resonators for hybrid integrated circuits

机译:用于混合集成电路的微带耦合非辐射介电(NRD)谐振器的高效分析

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摘要

Nonradiative dielectric (NRD) resonators have been recently known as excellent stabilizing components for the design of a new class of oscillators based on hybrid integration of planar circuits and NRD-guides. However, an accurate characterization of such a component is needed in order to develop efficient computer-aided-design programs. In this paper, a hybrid planar integrated circuit comprising an NRD resonator is accurately modeled and is coupled to input and output planar microstrip circuits by means of long slots located on the top ground plane of the NRD structure. A reciprocity approach is used to solve the coupling problem between the resonator and microstrip lines. A modal expansion of the field equations has been applied to the NRD resonator in obtaining its rigorous field expressions. Finally, a transmission-line analysis is proposed for the structure, and scattering parameters have been calculated for different slot positions. Results are discussed for various parametric effects on coupling and Q-factor characteristics.
机译:非辐射介电(NRD)谐振器最近被公认为是基于平面电路和NRD波导混合集成设计新型振荡器的优秀稳定元件。但是,为了开发有效的计算机辅助设计程序,需要对此类组件进行准确的表征。在本文中,包含NRD谐振器的混合平面集成电路被精确建模,并通过位于NRD结构顶部接地平面上的长缝耦合到输入和输出平面微带电路。互惠方法用于解决谐振器和微带线之间的耦合问题。场方程的模态展开已应用于NRD谐振器,以获得其严格的场表达式。最后,针对该结构提出了传输线分析方法,并针对不同的缝隙位置计算了散射参数。讨论了对耦合和Q因子特性的各种参数影响的结果。

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