Analysis of discontinuity effects in development a fully integrated millimeter wave receiver front end

Liang Wu, Yang Hou, R. Qian, Xiaowei Sun
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Abstract

This paper analyzes two of the most important discontinuity effects of the transmission line in MMIC design. Both the marginal effect and discontinued ground plane have been considered to avoid deterioration of the circuit. A fully integrated receiver front end MMIC chip which is constructed with a three stage low noise amplifier cascaded with a resistive mixer for millimeter wave down conversion application has been achieved by using above mentioned analysis results of discontinuity effects. This multifunctional chip operates at RF frequency range from 24GHz to 40GHz, IF frequency up to 1GHz.
全集成毫米波接收机前端开发中的不连续效应分析
本文分析了MMIC设计中传输线的两个最重要的不连续效应。为了避免电路的劣化,考虑了边际效应和中断地平面。利用上述不连续效应分析结果,实现了一种用于毫米波下转换的全集成接收机前端MMIC芯片,该芯片由三级低噪声放大器级联电阻混频器构成。该多功能芯片工作在射频频率范围为24GHz至40GHz,中频频率高达1GHz。
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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