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A 2.6mW, #x2212;192dB/Hz FOM Class-C QVCO using capacitive source degeneration coupling

机译:采用电容性源极退化耦合的2.6mW,−192dB / Hz FOM C类QVCO

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The paper presents a novel Class-C type QVCO using a capacitive source coupling mechanism to enhance the startup robustness over process-temperature-voltage variations. Class-C type oscillator has superior phase noise performance with low power consumption at the cost of weak startup. In this design, complementary architecture and capacitive source degeneration coupling are employed to increase the loop gain of Class-C quadrature oscillator. The capacitive coupling mechanism also provides extra phase shifts that eliminate the quality factor degradation of the LC tank in QVCO design. An optimal coupling factor is derived to compromise power-phase noise trade-offs. The proposed 2.4GHz QVCO, fabricated in 0.18μm CMOS technology, achieves −128dBc/Hz at 1MHz offsets while only consuming 2.6mW. The design attains a remarkable figure-of-merit (FOM) of −192dB/Hz.
机译:本文提出了一种采用电容源耦合机制的新型C类QVCO,可在过程温度-电压变化范围内增强启动鲁棒性。 C类振荡器具有出色的相位噪声性能,且功耗低,启动弱。在此设计中,采用互补架构和电容性源极负反馈耦合来增加C类正交振荡器的环路增益。电容耦合机制还提供了额外的相移,从而消除了QVCO设计中LC储罐的品质因数下降。得出最佳耦合因子以折衷功率相噪声的折衷。拟议的2.4GHz QVCO采用0.18μmCMOS技术制造,在1MHz偏移下可达到−128dBc / Hz,而仅消耗2.6mW。该设计具有-192dB / Hz的出色品质因数(FOM)。

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