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A Discrete-Time Model for the Design of Type-II PLLs With Passive Sampled Loop Filters

机译:带有无源采样环路滤波器的II型PLL设计的离散模型

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摘要

Type-II charge-pump (CP) phase-locked loop (PLLs) are used extensively in electronic systems for frequency synthesis. Recently, a passive sampled loop filter (SLF) has been shown to offer major benefits over the conventional continuous-time loop filter traditionally used in such PLLs. These benefits include greatly enhanced reference spur suppression, elimination of CP pulse-position modulation nonlinearity, and, in the case of phase noise cancelling fractional-$N$ PLLs, improved phase noise cancellation. The main disadvantage of the SLF to date has been the lack of a linear time-invariant (LTI) model with which to perform the system-level design of SLF-based PLLs. Without such a model, designers are forced to rely on trial and error iteration supported by lengthy transient simulations. This paper presents an accurate LTI model of SLF-based type-II PLLs that eliminates this disadvantage.
机译:II型电荷泵(CP)锁相环(PLL)在电子系统中广泛用于频率合成。最近,已经证明,无源采样环路滤波器(SLF)相对于传统用于此类PLL的常规连续时间环路滤波器具有重大优势。这些好处包括大大增强了基准杂散抑制,消除了CP脉冲位置调制非线性,并且在相位噪声抵消小数$ N $ PLL的情况下,改善了相位噪声抵消。迄今为止,SLF的主要缺点是缺少用于执行基于SLF的PLL的系统级设计的线性时不变(LTI)模型。如果没有这样的模型,设计人员将不得不依靠冗长的瞬态仿真所支持的反复试验。本文提出了一种基于SLF的II型PLL的精确LTI模型,该模型消除了这一缺点。

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