A Technology Independent Synthesis Approach for Integrated mmWave Coupled Line Circuits

Tim Maiwald, Albert-Marcel Schrotz, Katharina Kolb, Julian Potschka, M. Dietz, A. Hagelauer, R. Weigel
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引用次数: 2

Abstract

In this paper a technology independent approach for an efficient synthesis of coupled line circuits is presented. In contrast to conventional coupler design approaches, this synthesis method uses an additional process characterization step, which computes the electrical behaviour of these coupled lines in a given process layer stackup via even and odd mode simulations. Thus, the extracted behaviour information is used to determine the geometric values for a parametrized passive structure. Afterwards, a model and numerical based optimization is performed to improve the design with respect to a predefined specification target. To demonstrate this method, a Marchand balun was designed. The measured results of this balun show a maximum phase imbalance of 2° between 125 and 170 GHz and an insertion loss of maximum 2 dB for the entire D-Band.
本文提出了一种与技术无关的有效合成耦合线路电路的方法。与传统的耦合器设计方法相比,这种综合方法使用了一个额外的工艺表征步骤,该步骤通过偶模和奇模模拟计算给定工艺层堆叠中这些耦合线的电气行为。因此,提取的行为信息用于确定参数化被动结构的几何值。然后,根据预先设定的规格目标,进行了基于模型和数值的优化设计。为了验证该方法,设计了一个马尔尚平衡器。该平衡器的测量结果表明,在125 GHz和170 GHz之间,最大相位不平衡为2°,整个d波段的插入损耗最大为2 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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