Subharmonically drain pumped wideband lumped and distributed microwave MESFET mixers

A. H. Darsinooieh, O. Palamutcuoglu
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Abstract

The nonlinear analysis of subharmonically drain pumped lumped and distributed MESFET mixers have been performed to find the optimum operation conditions. The isolation between the pump and RF ports is readily achieved in drain pumping. Furthermore, since the LO frequency is approximately half of RF signal very simple filter construction is sufficient to provide isolation between the two ports. The efficiency of the mixer is doubled by pumping the drain of two MESFET's with 180° phase difference. In the practical side of this work broadband operation has been achieved from a microwave mixer operating in X band by using microstrip ladder matching structure at RF side and 1:1 suspended microstrip balun for LO injection. The measured conversion gain at optimum bias and LO level conditions is around 1 dB. In the second step of this work the performance characteristics of three sections of unbalance and two sections of balance distributed mixer which are subharmonically drain pumped are considered to achieve wider bandwidth. Different bias conditions and scattering parameters over a frequency range of 2-18 GHz are used for the transistor's parameter optimizing. The whole circuit is also optimized with the aid of nonlinear simulator in Microwave Harmonica Program, version 5.5.
次谐波漏泵宽带集总分布微波MESFET混频器
对次谐波漏泵集总和分布式MESFET混频器进行了非线性分析,找到了最佳运行条件。泵和射频端口之间的隔离在排水泵中很容易实现。此外,由于LO频率大约是RF信号的一半,非常简单的滤波器结构足以提供两个端口之间的隔离。通过泵送两个相位差为180°的MESFET漏极,混合器的效率提高了一倍。在实际工作中,通过在射频侧采用微带阶梯匹配结构和1:1悬浮微带平衡注入LO,实现了X波段微波混频器的宽带运行。在最佳偏置和本LO电平条件下测量的转换增益约为1db。第二步研究了三段不平衡混合器和两段平衡混合器的亚谐波抽吸特性,以获得更宽的带宽。在2 ~ 18 GHz频率范围内,采用不同的偏置条件和散射参数对晶体管进行参数优化。利用微波口琴程序5.5版中的非线性模拟器对整个电路进行了优化。
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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