Accurate Reference Spur Estimation Using Behavioural Modelling

N. Kamal, S. Al-Sarawi, D. Abbott
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引用次数: 1

Abstract

Reference spur is a periodic noise that can be observed at the output of an integer-N phase-locked loop (PLL). This noise is dominated by circuit non-idealities in phase/frequency detector (PFD) and charge pump. The spur magnitude is linearly related with Voltage Controlled Oscillator (VCO) gain. Estimating this noise using transistor level simulation is time consuming. Therefore, in this paper we present a Simulink behavioural model to accurately estimate the reference spur. PFD delay, charge pump current mismatch, rise and fall times effect and switching delay, in addition to non-linearity in the VCO gain, are all included in this model. The proposed model was used to estimate the reference spur for an 18.5 GHz PLL and the results were compared with transistor level simulation, and show less than 3% difference in the result.
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使用行为模型进行准确的参考马刺估计
参考杂散是一种周期性噪声,可以在整数n锁相环(PLL)的输出端观察到。这种噪声主要是由相频检测器(PFD)和电荷泵的电路非理想性引起的。杂散幅度与压控振荡器(VCO)增益呈线性关系。使用晶体管电平模拟来估计这种噪声是非常耗时的。因此,在本文中,我们提出了一个Simulink行为模型来准确地估计参考马刺。除压控振荡器增益的非线性外,该模型还包括PFD延迟、电荷泵电流失配、上升和下降时间效应和开关延迟。将该模型用于18.5 GHz锁相环的参考杂散估计,并与晶体管级仿真结果进行了比较,结果表明误差小于3%。
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