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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Frequency-Boost Jitter Reduction for Voltage-Controlled Ring Oscillators
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Frequency-Boost Jitter Reduction for Voltage-Controlled Ring Oscillators

机译:压控环形振荡器的频率提升抖动降低

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摘要

Ring oscillators (ROs) are popular due to their small area, modest power, wide tuning range, and ease of scaling with process technology. However, their use in many applications is limited due to poor phase noise and jitter performance. Thermal noise and flicker noise contribute jitter that decreases inversely with oscillation frequency. This paper describes a frequency-boost technique to reduce jitter in ROs. We boost the internal oscillation frequency and introduce a frequency divider following the oscillator to maintain the desired output frequency. This approach offers reduced jitter as well as the opportunity to trade off output jitter with power for dynamic performance management. The oscillator has 32 operating modes, corresponding to different values for the ring size and frequency division. In a 0.5-μm CMOS process, the highest oscillation frequency achieved is 25 MHz with a root-mean-square period jitter of 54 ps and a power consumption of 817 μW at 5 V supply. A jitter model for current-starved oscillators was derived and verified by measurement; a direct relationship between oscillation frequency and jitter was derived and measured. Compared with other oscillators, this design achieves the highest performance in terms of jitter per unit interval and figure-of-merit. The performance is expected to improve in more advanced technologies. The results are summarized to offer design guidance based on the frequency-boost technique.
机译:环形振荡器(RO)由于其面积小,功率适中,调谐范围宽以及易于通过工艺技术进行缩放而受到广泛欢迎。但是,由于差的相位噪声和抖动性能,它们在许多应用中的使用受到限制。热噪声和闪烁噪声会引起抖动,该抖动与振荡频率成反比。本文介绍了一种频率增强技术,可减少RO中的抖动。我们提高内部振荡频率,并在振荡器之后引入一个分频器,以保持所需的输出频率。这种方法提供了降低的抖动,并提供了权衡输出抖动和动态性​​能管理的机会。振荡器具有32种工作模式,对应于振铃尺寸和分频的不同值。在0.5μmCMOS工艺中,获得的最高振荡频率为25MHz,均方根周期抖动为54ps,在5V电源下的功耗为8​​17μW。导出了电流不足振荡器的抖动模型,并通过测量进行了验证;得出并测量了振荡频率和抖动之间的直接关系。与其他振荡器相比,该设计在单位间隔抖动和品质因数方面实现了最高的性能。预期在更先进的技术中性能会提高。总结了这些结果以提供基于频率提升技术的设计指导。

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