A full-wave EM approach of sub-harmonic mixer design using 3D diode model and extracted parameters

Xin Feng, Yonghong Zhang, Guanqin Li, Shuhan Jia, Qun Li, Yong Fan
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Abstract

The design of a low-cost microstrip based sub-harmonic mixer (SHM) is presented, which is feasible to be integrated with other circuit stages on the same substrate because of its good S11s. Taking the often neglected S11s as one of the goals for the mixer, this paper utilizes a 3D diode model and quasi-linear parameters to model the schottky barrier diode in the full-wave EM simulator HFSS, which is more accurate on predicting S11s compared to the non-linear approach using circuit simulator and SPICE model. As a verification, an SHM that works at RF of 88 to 100 GHz and LO of 42 to 48 GHz is designed, fabricated and measured. Measured S11s are below -10 dB and agree well with simulated prediction. In addition, the measured conversion loss is below 14 dB under different LO frequencies, demonstrating that the mixer is able to work at a wide band of LO.
利用三维二极管模型和提取参数的全波电磁方法设计亚谐波混频器
提出了一种低成本的微带亚谐波混频器(SHM)的设计方法,由于其良好的s11特性,可以与其他电路级集成在同一衬底上。本文将经常被忽略的s11作为混频器的目标之一,利用三维二极管模型和准线性参数对全波电磁模拟器HFSS中的肖特基势垒二极管进行建模,相对于使用电路模拟器和SPICE模型的非线性方法,该方法对s11的预测更加准确。作为验证,设计、制作并测量了工作频率为88 ~ 100 GHz、本振为42 ~ 48 GHz的SHM。实测s11低于-10 dB,与模拟预测结果吻合较好。此外,在不同LO频率下,测量到的转换损耗都在14 dB以下,表明该混频器能够在LO的宽频段工作。
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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