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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A high-performance 94 GHz double-balanced up-conversion mixer for imaging radar sensors in 90 nm CMOS
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A high-performance 94 GHz double-balanced up-conversion mixer for imaging radar sensors in 90 nm CMOS

机译:用于90 nm CMOS成像雷达传感器的高性能94 GHz双平衡上变频混频器

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摘要

A W-band double-balanced mixer for direct up-conversion using standard 90 nm CMOS technology is reported. The mixer comprises an enhanced double-balanced Gilbert cell with PMOS negative resistance compensation for conversion gain (CG) enhancement and current injection for power consumption reduction and linearity improvement, a Marchand balun for converting the single LO input signal to differential signal, another Marchand balun for converting the differential RF output signal to single signal, and an output buffer amplifier for loading effect suppression, power consumption reduction and CG enhancement. The mixer consumes low power of 6.9 mW and achieves LO-port input reflection coefficient of -17.8 to -38.7 dB and RF-port input reflection coefficient of -16.8 to -27.9 dB for frequencies of 90-100 GHz. The mixer achieves maximum CG of 3.6 dB at 95 GHz, and CG of 2.1 +/- A 1.5 dB for frequencies of 91.9-99.4 GHz. That is, the corresponding 3 dB CG bandwidth is 7.5 GHz. In addition, the mixer achieves LO-RF isolation of 36.8 dB at 94 GHz. To the authors' knowledge, the CG, LO-RF isolation and power dissipation results are the best data ever reported for a 94 GHz CMOS/BiCMOS up-conversion mixer.
机译:报道了一种使用标准90 nm CMOS技术进行直接上变频的W波段双平衡混频器。该混频器包括一个增强的双平衡吉尔伯特单元,该单元具有用于转换增益(CG)增强的PMOS负电阻补偿和用于降低功耗并改善线性度的电流注入,用于将单个LO输入信号转换为差分信号的Marchand balun,另一个是Marchand balun用于将差分RF输出信号转换为单信号,以及用于缓冲负载效应,降低功耗和增强CG的输出缓冲放大器。对于90-100 GHz的频率,混频器功耗低至6.9 mW,LO端口输入反射系数为-17.8至-38.7 dB,RF端口输入反射系数为-16.8至-27.9 dB。在91.9-99.4 GHz的频率下,混频器在95 GHz时的最大CG为3.6 dB,CG在2.1 +/- A 1.5 dB。也就是说,相应的3 dB CG带宽为7.5 GHz。此外,该混频器在94 GHz下实现了36.8 dB的LO-RF隔离。据作者所知,对于94 GHz CMOS / BiCMOS上变频混频器,CG,LO-RF隔离和功耗结果是有史以来最好的数据。

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