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130-320-GHz CMOS Harmonic Down-Converters Around and Above the Cutoff Frequency

机译:截止频率附近和之上的130-320 GHz CMOS谐波下变频器

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摘要

We present an analytical model, design, and measurement results on fundamental, harmonic, and subharmonic down conversion mixing approaches in 65-nm CMOS around and above the transistor cutoff frequency , targeting submillimeter-wave operation. Analytical expressions for the mixing approaches are derived and compared with the simulation and measurement results. To investigate how to improve the performance of a passive mixer around and beyond , the relation between local oscillator (LO) harmonics (including both the harmonic amplitude and phase), mixer gate bias, and conversion gain is studied. To demonstrate mixing approaches, we present integrated 160- and 280-GHz down-converters with integrated LO manufactured in 65-nm CMOS process with . The LO in both down-converters is based on exploiting higher harmonics of a differential Colpitts topology voltage-controlled oscillator (VCO). Passive conversion losses of 22 and 25.5 dB are obtained over the 150–180-GHz and the 230–290-GHz frequency range, respectively. Two additional versions of the down converter at 170 and 280 GHz, respectively, without integrated VCO are also presented to examine the mixer performance in the 110–325-GHz range.
机译:我们针对65纳米CMOS晶体管的截止频率及以上,针对亚毫米波工作,提供了基本,谐波和次谐波下变频混频方法的分析模型,设计和测量结果。推导了混合方法的解析表达式,并将其与仿真和测量结果进行了比较。为了研究如何改善无源混频器的性能,研究了本地振荡器(LO)谐波(包括谐波幅度和相位),混频器栅极偏置和转换增益之间的关系。为了演示混合方法,我们介绍了集成的160 GHz和280 GHz下变频器,以及采用65 nm CMOS工艺制造的集成LO。两个下变频器中的LO均基于利用差分Colpitts拓扑压控振荡器(VCO)的高次谐波。在150–180 GHz和230–290 GHz频率范围内分别获得22和25.5 dB的无源转换损耗。还介绍了两种分别具有170 GHz和280 GHz下变频且没有集成VCO的下变频器版本,以检查110-325 GHz范围内的混频器性能。

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