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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 220-to-320-GHz FMCW Radar in 65-nm CMOS Using a Frequency-Comb Architecture
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A 220-to-320-GHz FMCW Radar in 65-nm CMOS Using a Frequency-Comb Architecture

机译:使用频率梳架构的65nm CMOS中的220至320 GHz FMCW雷达

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摘要

This article presents a CMOS-based, ultra-broadband frequency-modulated continuous-wave (FMCW) radar using a terahertz (THz) frequency-comb architecture. The high-parallelism spectral sensing provided by this architecture significantly reduces the bandwidth requirement for the THz front-end circuitry and ensures that the peak output power and sensitivity are maintained across the entire band of operation. The speed and linearity of frequency chirping are also improved by the comb system. An antenna-sharing scheme based on a square-mixer-first architecture is used, which not only leads to compact size but also facilitates the stitching of the multichannel radar IF data. To avoid the usage of high-cost silicon lens in the on-chip broadband radiation, a multi-resonance substrate-integrated-waveguide (SIW) antenna structure is innovated, which provides 15% fractional bandwidth for impedance matching. As a proof of concept, a five-tone radar prototype that seamlessly scans the entire 220-to-320-GHz band is demonstrated. In the measurement, the multi-channel-aggregated equivalent-isotropically radiated power (EIRP) is 0.6 dBm and is further boosted to similar to 20 dBm with a TPX (polymethylpentene) lens. The measured minimum single-sideband noise figure (SSB NF) of the receiver, including the antenna loss and baseband amplifier, is 22.8 dB. Due to the comb architecture, the EIRP and NF values fluctuate by only 8.8 and 14.6 dB, respectively, across the 100-GHz bandwidth. The chip has a die size of 5 mm(2) and consumes 840 mW of dc power. This work marks the first CMOS demonstration of THz radar and achieves record bandwidth and ranging resolution among all radar front-end chips.
机译:本文介绍了一种基于CMOS的超宽带频率调制的连续波(FMCW)雷达,使用太赫兹(THz)频率梳架构。该架构提供的高行光谱传感显着降低了THZ前端电路的带宽要求,并确保在整个操作带上保持峰值输出功率和灵敏度。梳理系统还改善了频率啁啾的速度和线性。使用基于方形混合器第一架构的天线共享方案,这不仅导致紧凑的尺寸,而且还促进了多声道雷达的拼接IF数据。为避免使用高成本硅镜片在片上宽带辐射中,创新了多谐振基板 - 集成波导(SIW)天线结构,为阻抗匹配提供了15%的分数带宽。作为概念证明,证明了一种无缝扫描整个220到320GHz带的五色调雷达原型。在测量中,多通道聚集的等效各向同性辐射功率(EIRP)为0.6dBm,进一步提升至20dBm,具有TPX(聚甲基戊烯)透镜。接收器的测量的最小单边带噪声系数(SSB NF),包括天线丢失和基带放大器为22.8 dB。由于梳理架构,eirp和nf值分别在100 ghz带宽上分别波动仅8.8%和14.6 dB。该芯片的芯片尺寸为5毫米(2),消耗840 MW的直流电源。这项工作标志着THz雷达的第一个CMOS演示,并在所有雷达前端芯片中实现了记录带宽和测距分辨率。

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