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Phase error analysis in CMOS injection-coupled LC quadrature oscillator (IC-QO)

机译:CMOS注入耦合LC正交振荡器(IC-QO)中的相位误差分析

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This paper presents a novel approach to study the phase error in source injection coupled quadrature oscillators (QOs). Like other LC QOs, the mismatches between LC tanks are the main source of phase error in this oscillator. The QO is analyzed where the phase error and oscillation frequency are derived in terms of circuit parameters. The proposed analysis shows that the output phase error is a function of injection current and the current of source equivalent capacitor. As a result, it is shown that increasing of tail current and LC tank quality factor decreases the phase error. Derived equations show that the phase error can be cancelled and even controlled by adjusting bias currents. To evaluate the proposed analysis and consequent designed QO, a 5.5 GHz CMOS QO is designed and simulated using the practical 0.18 μm TSMC CMOS technology. The experiments show good agreement between analytical equations and simulation results.
机译:本文提出了一种新颖的方法来研究源注入耦合正交振荡器(QO)中的相位误差。像其他LC QO一样,LC振荡电路之间的失配是相位误差的主要来源。对QO进行分析,其中根据电路参数得出相位误差和振荡频率。所提出的分析表明,输出相位误差是注入电流和源等效电容器电流的函数。结果表明,增加尾电流和LC储罐品质因数可减小相位误差。推导方程表明,可以通过调节偏置电流来消除甚至控制相位误差。为了评估建议的分析和随后设计的QO,使用实用的0.18μmTSMC CMOS技术设计并仿真了5.5 GHz CMOS QO。实验表明,解析方程与仿真结果吻合良好。

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