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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 170-GHz Fully Integrated Single-Chip FMCW Imaging Radar with 3-D Imaging Capability
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A 170-GHz Fully Integrated Single-Chip FMCW Imaging Radar with 3-D Imaging Capability

机译:具有3-D成像功能的170 GHz全集成单芯片FMCW成像雷达

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摘要

A 170-GHz fully integrated single-chip heterodyne frequency modulated continuous-wave (FMCW) imaging radar using a 130-nm SiGe BiCMOS technology (f/f = 220/280 GHz) is reported. This system demonstrates a wide bandwidth of 27.5 GHz (16.3%) at a center frequency of 168 GHz. A design methodology to maximize the tuning range of the voltage-controlled oscillator (VCO) is presented. A co-design of the VCO, coupler, and antenna is performed to minimize the chip area and the dc power consumption. The transmitter radiates a peak power of -1 dBm with a dc-to-RF efficiency of 1.42%. At the receiver side, a subharmonic mixer is used for signal downconversion. The system achieves a measured sensitivity of 87 fW with a total dc power consumption of 67 mW. The prototype is capable of forming 2-D and 3-D images with a range resolution of 7 mm. To the best of our knowledge, this fully integrated imaging radar demonstrates the highest sensitivity and radiation efficiency among all imaging systems around 200 GHz. Moreover, the system is capable of practical 2-D and 3-D imaging with significantly lower dc power consumption compared to the state-of-the-art FMCW radars.
机译:据报道,采用130 nm SiGe BiCMOS技术(f / f = 220/280 GHz)的170 GHz完全集成单芯片外差频率调制连续波(FMCW)成像雷达。该系统在中心频率为168 GHz时显示出27.5 GHz(16.3%)的宽带宽。提出了一种最大化压控振荡器(VCO)调谐范围的设计方法。 VCO,耦合器和天线的共同设计可以最大程度地减少芯片面积和直流功耗。发射器的峰值功率为-1 dBm,DC-RF效率为1.42%。在接收器端,次谐波混频器用于信号下变频。该系统的实测灵敏度为87 fW,总直流功耗为67 mW。该原型能够形成7毫米范围分辨率的2D和3D图像。据我们所知,这种完全集成的成像雷达展示了200 GHz附近所有成像系统中最高的灵敏度和辐射效率。此外,与最新的FMCW雷达相比,该系统能够进行实用的2D和3D成像,且直流功耗大大降低。

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