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Short-term frequency stability of clock generators for multigigahertz rapid-single-flux quantum digital circuits

机译:兆赫兹快速单通量量子数字电路时钟发生器的短期频率稳定性

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摘要

Superconducting digital systems based on Josephson junctions have generally used a synchronous timing strategy. A master clock signal is used to delimit a data window during which the system changes state and data is transferred from one block to the next. The temporal stability of the clock signal has a profound effect on the performance of rapid single flux quantum (RSFQ) digital systems. In particular, short-term clock fluctuations, or clock jitter, can degrade system performance due to the hazard of timing constraint violations. The successful development of large-scale RSFQ digital systems will require highly stable multigigahertz on-chip clock sources. To meet this need, methods for characterizing and measuring the short-term stability of such sources are required. We identify the relevant figure of merit to characterize and compare various clocks: the cycle-to-cycle standard deviation of the clock periods. We present experimental techniques for the measurement of this figure of merit and apply them to the measurement of jitter in a clock generator used often in RSFQ systems, the ring oscillator. High-frequency phase noise measurements found the jitter of a 9.6-GHz clock to be in the range from 0.6% to 0.36% of the clock period. The measured values of clock jitter fell within the 95% confidence interval of our stochastic circuit simulations. This was sufficient evidence to conclude that thermal noise from the resistors in the circuit may be the dominant source of jitter in the ring oscillator.
机译:基于约瑟夫森结的超导数字系统通常使用同步时序策略。主时钟信号用于定界数据窗口,在此期间系统更改状态,数据从一个块传输到下一个块。时钟信号的时间稳定性对快速单通量量子(RSFQ)数字系统的性能具有深远的影响。特别地,由于违反时序约束的危险,短期时钟波动或时钟抖动会降低系统性能。大规模RSFQ数字系统的成功开发将需要高度稳定的千兆赫兹片上时钟源。为了满足该需求,需要用于表征和测量这种源的短期稳定性的方法。我们确定了相关的品质因数,以表征和比较各种时钟:时钟周期的逐周期标准偏差。我们介绍了用于测量此品质因数的实验技术,并将其应用于经常在RSFQ系统(环形振荡器)中使用的时钟发生器中的抖动测量。高频相位噪声测量发现,9.6 GHz时钟的抖动为时钟周期的0.6%至0.36%。时钟抖动的测量值落在我们的随机电路仿真的95%置信区间内。这有足够的证据可以得出结论,电路中电阻器产生的热噪声可能是环形振荡器中抖动的主要来源。

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