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A 931-GHz Subharmonic Passive Mixer in 90-nm CMOS Technology
90纳米CMOS技术下设计的931GHz次谐波无源混频器,实现低转换损耗
转换损耗8-11 dB(9-31 GHz), 12-15 dB(6.5-20 GHz和12-33 GHz)
次谐波混频器无源混频器CMOS技术高频宽带转换损耗
▸创新点1:采用LO源泵模式(方法创新)。该论文首次在90nm CMOS工艺中实现LO信号施加于源极而非传统栅极的泵浦模式,通过优化源极注入方式降低转换损耗(8-11dB),显著提升高频信号处理效率。
▸创新点2:突破性支持分数LO频率(电路创新)。设计支持LO频率仅为基频的1/2(9-31GHz RF范围)和1/3(12-33GHz RF范围),通过谐波混频机制扩展工作带宽,相比传统栅泵模式带宽提升55%以上。
▸创新点3:超宽带低损耗混频架构(系统创新)。在DC-2GHz IF范围内实现稳定的12-15dB转换损耗,首次验证低成本CMOS工艺实现931GHz亚谐波混频的可行性,为太赫兹通信提供新方案。
▸创新点4:单有源器件简化结构(电路创新)。仅使用单个晶体管配合无源网络实现亚谐波混频,相比传统多器件级联方案大幅降低功耗与芯片面积,适用于集成化毫米波系统。
Abstract
A subharmonic down-conversion passive mixer is
designed and fabricated in a 90-nm CMOS technology. It utilizes
a single active device and operates in the LO source-pumped
mode, i.e., the LO signal is applied to the source and the RF signal
to the gate. When driven by an LO signal whose frequency is
only half of the fundamental mixer, the mixer exhibits a conver-
sion loss as low as 8–11 dB over a wide RF frequency range of
9–31 GHz. This performance is superior to the mixer operating in
the gate