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Design and optimization of a CMOS IC novel RF tracking sensor

机译:CMOS IC新型RF跟踪传感器的设计与优化

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This research reports the development of an RF sensor integrated circuit (IC) chip capable of tracking the directionality of RF remote emissions. The IC design uses an angle-of-arrival algorithm, and it is designed for the 180 nm CMOS technology and applicable to other technologies, also. The sensor chip requires two pairs of antennas aligned and placed at distance s for detection of azimuthal and polar angles of the RF incident wave. The circuit consists of custom designed low-noise amplifiers (LNAs) at the front end, with a novel design of double-balanced Gilbert cell mixers (GCMs). This amplifies and mixes the signals from the antennas and converts the phase difference Delta phi into an equivalent output voltage map suitable for an 18-bit analog to digital converter. Systematic optimization techniques were developed to maximize the third-order intercept point and suppress flicker noise for the LNAs and GCMs, resulting in improved sensing accuracy. The overall system-level evaluation results showed state-of-art angle-of-arrival sensing capability with an upper limit error of 3.447 degrees.
机译:本研究报告了能够跟踪RF远程排放的方向性的RF传感器集成电路(IC)芯片的开发。 IC设计采用了一个到达角度算法,它专为180nm CMOS技术而设计,也适用于其他技术。传感器芯片需要两对一对天线,并放置在距离S处,以检测RF入射波的方位角和极性角度。该电路由前端定制设计的低噪声放大器(LNA)组成,具有新颖的双平衡吉尔伯特电池混合器(GCMS)设计。这可以放大并混合来自天线的信号,并将相位差Delta PHI转换为适合于18位模数转换器的等效输出电压图。开发系统的优化技术以最大化第三阶截取点,并抑制LNA和GCM的闪烁噪声,从而提高了感测的精度。整体系统级评估结果显示出最先进的到达角度感测能力,上限误差为3.447度。

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