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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Distributed Stubs Technique to Mitigate Flicker Noise Upconversion in a mm-Wave Rotary Traveling-Wave Oscillator
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A Distributed Stubs Technique to Mitigate Flicker Noise Upconversion in a mm-Wave Rotary Traveling-Wave Oscillator

机译:一种分布式存根技术,用于减轻MM波旋转行驶波振荡器中的闪烁噪声上升率

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A rotary traveling-wave oscillator (RTWO) has an ability to generate multiple phases at millimeter-wave (mmW) frequencies while achieving low phase noise (PN). Unfortunately, due to the practically unavoidable transmission line (TL) dispersion, which causes the higher-order harmonics to travel faster than the fundamental, RTWOs suffer from flicker noise upconversion. In this article, we propose a "distributed stubs" technique to mitigate this mechanism in which tuning capacitors placed on the TL stubs away from the maintaining amplifiers will slow down the travel speed of higher-order harmonics relative to the fundamental, thus lowering the phase shifts due to the TL dispersion. We further provide a comprehensive analysis of the flicker noise upconversion mechanism due to the TL dispersion. The proposed 26.2-30-GHz RTWO is implemented in 22-nm fully depleted silicon-on-insulator (FD-SOI) CMOS with eight differential phases. At 30 GHz, it achieves PN of -107.6 and -128.9 dBc/Hz at 1- and 10-MHz offsets, respectively. This translates into figures-of-merit (FoMs) of 184.2 and 185.4 dB, respectively, for a single phase. The proposed architecture consumes 20 mW from 0.8-V supply. It achieves a flicker PN corner of 180 kHz, which is an order-of-magnitude better than currently achievable by state-of-the-art mmW RTWOs.
机译:旋转行驶波振荡器(RTWWO)能够在毫米波(MMW)频率下产生多个相位,同时实现低相位噪声(PN)。遗憾的是,由于实际不可避免的传输线(TL)色散,这导致高阶谐波比基本的速度快,RTWOS遭受闪烁的噪声上升。在本文中,我们提出了一种“分布式存根”技术来减轻这种机制,其中放置在远离维护放大器上的TL短截线上的调谐电容器将使高阶谐波相对于基本的行进速度降低,从而降低相位由于TL色散而转移。我们进一步提供了由于TL分散而闪烁噪声上变化机制的全面分析。所提出的26.2-30 GHz的RTWO在22纳米完全耗尽硅绝缘体(FD-SOI)CMOS与八个差动相位实施。在30 GHz,它分别实现了-107.6和-128.9 dBc / hz的PN,分别为1-和10-MHz偏移。这转化为单相184.2和185.4 dB的优选值(FOM)。拟议的架构从0.8V电源消耗20 MW。它达到了180 kHz的闪烁PN角,这是一项级,优于最先进的MMW RTWOS。

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