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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >On-Chip Compensation of Ring VCO Oscillation Frequency Changes Due to Supply Noise and Process Variation
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On-Chip Compensation of Ring VCO Oscillation Frequency Changes Due to Supply Noise and Process Variation

机译:由于电源噪声和工艺变化引起的环形VCO振荡频率的片内补偿

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摘要

A novel circuit technique that stabilizes the oscillation frequency of a ring-type voltage-controlled oscillator (RVCO) is demonstrated. The technique uses on-chip bias-current and voltage-swing controllers, which compensate RVCO oscillation frequency changes caused by supply noise and process variation. A prototype phase-locked loop (PLL) having the RVCO with the compensation circuit is fabricated with 0.13- $muhbox{m}$ CMOS technology. At the operating frequency of 4 GHz, the measured PLL rms jitter improves from 20.11 to 5.78 ps with 4-MHz RVCO supply noise. Simulation results show that the oscillation frequency difference between FF and SS corner is reduced from 63% to 6% of the NN corner oscillation frequency.
机译:说明了一种稳定环形电压控制振荡器(RVCO)振荡频率的新型电路技术。该技术使用片上偏置电流和电压摆幅控制器,可补偿由电源噪声和工艺变化引起的RVCO振荡频率变化。具有RVCO和补偿电路的原型锁相环(PLL)是使用0.13-muhbox {m} $ CMOS技术制成的。在4 GHz的工作频率下,具有4 MHz RVCO电源噪声时,测得的PLL rms抖动从20.11 ps提高到5.78 ps。仿真结果表明,FF和SS角之间的振荡频率差从NN角振荡频率的63%减小到6%。

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