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Distributed Parametric Resonator: A Passive CMOS Frequency Divider

机译:分布式参量谐振器:无源CMOS分频器

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We present an electrical distributed parametric oscillator to realize a passive CMOS frequency divider with low phase noise. Instead of using active devices, which are the main sources of noise and power consumption, an oscillation at half of the input frequency is sustained by the parametric process based on nonlinear interaction with the input signal. To show the feasibility of the proposed approach, we have implemented a 20-GHz frequency divider in a 0.13-$mu{hbox {m}}$ CMOS process. Without any dc power consumption, 600-mV differential output amplitude is achieved for an input amplitude of 600 mV. The input frequency ranges from 18.5 to 23.5 GHz with varactor tuning. The output phase noise is almost 6 dB lower than that of the input signal for all offset frequencies up to 1 MHz. There is a good agreement among analysis, simulation, and 10-MHz measurement results. To the best of our knowledge, this is the first passive frequency divider in a CMOS process.
机译:我们提出了一种电分布参数振荡器,以实现具有低相位噪声的无源CMOS分频器。代替使用有源设备(它们是噪声和功耗的主要来源),通过基于与输入信号的非线性交互作用的参数化过程,可以维持输入频率一半的振荡。为了显示所提出方法的可行性,我们在0.13μmCMOS工艺中实现了20GHz分频器。在没有任何直流功耗的情况下,对于600 mV的输入幅度,可获得600 mV的差分输出幅度。通过变容二极管调谐,输入频率范围为18.5至23.5 GHz。对于高达1 MHz的所有失调频率,输出相位噪声几乎比输入信号低6 dB。分析,仿真和10MHz测量结果之间有很好的一致性。据我们所知,这是CMOS工艺中的第一个无源分频器。

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