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Basic RF Characteristics of the Microstrip Line Employing Periodically Perforated Ground Metal and Its Application to Highly Miniaturized On-Chip Passive Components on GaAs MMIC

机译:采用周期性穿孔的接地金属的微带线的基本RF特性及其在GaAs MMIC上的高度小型片上无源元件中的应用

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In this study, highly miniaturized on-chip impedance transformers employing periodically perforated ground metal (PPGM) were developed for application to broadband low-impedance matching. In order to realize a broadband operation by using an equal ripple transfer characteristic over a passband, a three-section transformer was designed by mapping its reflection coefficient to the Chebyshev function. The three-section transformer showed a good RF performance over a broadband (1.5–13 GHz) including ultra-wideband. The size of the three-section transformer was 0.129$hboxmm^2$, which is 2.3% of the size of the transformer fabricated by a conventional microstrip line. Using the PPGM structure, a highly miniaturized on-chip Wilkinson power divider with a low port impedance of 13$Omega $was also developed, and its size is 0.11$hboxmm^2$, which is 6% of the size of the one fabricated by the conventional microstrip line. In addition, in this study, the PPGM structure was theoretically characterized using a conventional capacitive loaded periodic structure. Using the theoretical analysis, basic characteristics of the transmission line with PPGM were also investigated in order to evaluate its suitability for application to a development of miniaturized on-chip passive components. According to the results, it was found that the PPGM structure is a promising candidate for application to a development of miniaturized on-chip components on monolithic microwave integrated circuits.
机译:在这项研究中,开发了采用周期性穿孔接地金属(PPGM)的高度小型化的片上阻抗变压器,用于宽带低阻抗匹配。为了通过在通带上使用相等的纹波传递特性来实现宽带工作,通过将其反射系数映射到切比雪夫函数来设计三段式变压器。这种三段式变压器在包括超宽带在内的宽带(1.5-13 GHz)上显示出良好的RF性能。三段式变压器的尺寸为0.12929hboxmm ^ 2 $,是传统微带线制造的变压器尺寸的2.3%。使用PPGM结构,还开发了端口阻抗为13 $ Omega $的高度小型化的片上Wilkinson功率分配器,其尺寸为0.11 $ hboxmm ^ 2 $,是制造的尺寸的6%。通过常规的微带线。另外,在这项研究中,PPGM结构在理论上使用常规的电容负载周期结构进行了表征。使用理论分析,还研究了PPGM传输线的基本特性,以评估其在开发小型片上无源元件中的适用性。根据结果​​,发现PPGM结构是用于开发单片微波集成电路上的小型片上组件的有希望的候选者。

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