首页> 外文期刊>IEEE Transactions on Circuits and Systems. II, Express Briefs >Design and Analysis of an Ultrahigh-Speed Glitch-Free Fully Differential Charge Pump With Minimum Output Current Variation and Accurate Matching
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Design and Analysis of an Ultrahigh-Speed Glitch-Free Fully Differential Charge Pump With Minimum Output Current Variation and Accurate Matching

机译:具有最小输出电流变化和精确匹配的超高速无毛刺全差分电荷泵的设计与分析

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摘要

An ultrahigh-speed fully differential charge pump with minimum current mismatch and variation is proposed in this brief. A mismatch suppression circuit is employed to minimize the mismatch between the charging and discharging currents, which minimizes the steady-state phase error in a phase-locked loop (PLL). A variation suppression circuit is proposed to minimize output current variation with the change of output voltage, which reduces the variation of the bandwidth in a PLL. Techniques are proposed to suppress both low-speed glitches and high-speed glitches in the output current to allow glitch-free operation of the charge pump with ultrafast input pulses. The differential charge pump is designed and simulated under the power supply of 3.3 V in TSMC 0.35-$mu$m CMOS technology to verify the effectiveness of the proposed techniques.
机译:在本简介中,提出了一种具有最小电流失配和变化的超高速全差动电荷泵。采用失配抑制电路来最小化充电和放电电流之间的失配,从而将锁相环(PLL)中的稳态相位误差最小化。提出了一种变化抑制电路,以使输出电流随输出电压的变化而变化最小,从而减小了PLL中带宽的变化。提出了抑制输出电流中的低速毛刺和高速毛刺的技术,以允许电荷泵以超快的输入脉冲无毛刺地工作。在台积电0.35-μmCMOS技术中,在3.3 V电源下设计并仿真了差分电荷泵,以验证所提出技术的有效性。

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