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Spur Reduction Techniques for Phase-Locked Loops Exploiting A Sub-Sampling Phase Detector

机译:利用子采样相位检测器的锁相环的减少刺激技术

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摘要

This paper presents phase-locked loop (PLL) reference-spur reduction design techniques exploiting a sub-sampling phase detector (SSPD) (which is also referred to as a sampling phase detector). The VCO is sampled by the reference clock without using a frequency divider and an amplitude controlled charge pump is used which is inherently insensitive to mismatch. The main remaining source of the VCO reference spur is the periodic disturbance of the VCO by the sampling at the reference frequency. The underlying VCO sampling spur mechanisms are analyzed and their effect is minimized by using dummy samplers and isolation buffers. A duty-cycle-controlled reference buffer and delay-locked loop (DLL) tuning are proposed to further reduce the worst case spur level. To demonstrate the effectiveness of theudproposed spur reduction techniques, a 2.21 GHz PLL is designed and fabricated in 0.18 m CMOS technology. While using a high loop-bandwidth-to-reference-frequency ratio of 1/20, the reference spur measured from 20 chips is 80 dBc. The PLL consumes 3.8 mW while the in-band phase noise is 121 dBc/Hz at 200 kHz and the output jitter integrated from 10 kHz to 100 MHz is 0.3 ps rms.
机译:本文介绍了利用次采样相位检测器(SSPD)(也称为采样相位检测器)的锁相环(PLL)参考信号降低设计技术。 VCO在不使用分频器的情况下由参考时钟采样,并且使用了对失配固有不敏感的幅度控制电荷泵。 VCO参考杂散的主要剩余来源是在参考频率下通过采样对VCO造成的周期性干扰。分析了底层VCO采样杂散机制,并通过使用虚拟采样器和隔离缓冲区将其影响最小化。提出了占空比控制的参考缓冲器和延迟锁定环(DLL)调整,以进一步降低最坏情况杂散电平。为了证明建议的杂散消除技术的有效性,设计并采用0.18 m CMOS技术制造了2.21 GHz PLL。当使用较高的环路带宽与参考频率之比为1/20时,从20个码片测得的参考杂散为80 dBc。 PLL消耗3.8 mW,而带内相位噪声在200 kHz时为121 dBc / Hz,从10 kHz到100 MHz积分的输出抖动为0.3 ps rms。

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