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Low-jitter clock multiplication: a comparison between PLLs and DLLs

机译:低抖动时钟乘法:PLL与DLL之间的比较

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This paper shows that, for a given power budget, a practical phase-locked loop (PLL)-based clock multiplier generates less jitter than a delay-locked loop (DLL) equivalent. This is due to the fact that the delay cells in a PLL ring-oscillator can consume more power per cell than their counterparts in the DLL. We can show that this effect is stronger than the notorious jitter accumulation effect that occurs in the voltage-controlled oscillator (VCO) of a PLL. First, an analysis of the stochastic-output jitter of the architectures, due to the most important noise sources, is presented. Then, another important source of jitter in a DLL-based clock multiplier is treated, namely the stochastic mismatch in the delay cells which compose the DLL voltage-controlled delay line (VCDL). An analysis is presented that relates the stochastic spread of the delay of the cells to the output jitter of the clock multiplier. A circuit design technique, called impedance level scaling, is then presented which allows the designer to optimize the noise and mismatch behavior of a circuit, independently from other specifications such as speed and linearity. Applying this technique on a delay cell design yields a direct tradeoff between noise induced jitter and power usage, and between stochastic mismatch induced jitter and power usage.
机译:本文表明,对于给定的功率预算,一个实用的基于锁相环(PLL)的时钟乘法器产生的抖动要小于等效的延迟锁相环(DLL)。这是由于PLL环形振荡器中的延迟单元每个单元比DLL中的延迟单元消耗更多的功率这一事实。我们可以证明,这种效应比在PLL的压控振荡器(VCO)中发生的臭名昭著的抖动累积效应更强。首先,对由于最重要的噪声源而导致的架构的随机输出抖动进行了分析。然后,处理了基于DLL的时钟倍频器中另一个重要的抖动源,即构成DLL压控延迟线(VCDL)的延迟单元中的随机失配。提出了一种分析,该分析将单元延迟的随机扩展与时钟乘法器的输出抖动相关联。然后介绍一种称为阻抗电平缩放的电路设计技术,该技术使设计人员能够独立于速度和线性度等其他规格而优化电路的噪声和失配行为。在延迟单元设计上应用该技术可以在噪声引起的抖动和功耗之间以及随机失配引起的抖动和功耗之间进行直接权衡。

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