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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Low-Power, Differential Relaxation Oscillator With the Self-Threshold-Tracking and Swing-Boosting Techniques in 0.18- $mu$ m CMOS
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A Low-Power, Differential Relaxation Oscillator With the Self-Threshold-Tracking and Swing-Boosting Techniques in 0.18- $mu$ m CMOS

机译:具有自阈值跟踪和摆动升压技术的低功耗,差分弛豫振荡器,采用0.18- $ mu $ m CMOS

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This paper presents a fully integrated, 8.2-MHz relaxation oscillator with a self-threshold-tracking loop and swing-boosting technique for improving its long-term frequency stability and noise performance. The proposed latch-based relaxation oscillator increases the transition speed to reduce the static power consumption. To decrease the process-voltagetemperature dependence, we propose a self-threshold-tracking loop to ensure that the transition point of the inverter-based comparator is set to a fixed ratio of the supply voltage. In addition, the comparator delay can be compensated by the tracking loop, relaxing the requirements of comparator power consumption. The design is implemented in a 0.18-mu m CMOS process. The design achieves a period jitter of 7.66 psrms, the phase noise of -109 dBc/Hz at an offset frequency of 100 kHz, and an Allan deviation noise floor of 1.56 ppm. The resultant figure of merit is 160.8 dBc/Hz, while only consuming 46.3 mu W. The power efficiency of the design is 5.6 kHzW. As for the supply sensitivity, the design achieves 0.9 %/0.1 V, which is 10x lower than the design with no compensation loop. The measured temperature coefficient of the proposed oscillators is 123 ppm/degrees C from -20 degrees C to 100 degrees C without any trimming process.
机译:本文提出了一种具有自阈值跟踪环路和摆幅增强技术的完全集成的8.2MHz弛张振荡器,以改善其长期频率稳定性和噪声性能。所提出的基于锁存器的张弛振荡器提高了转换速度以减少静态功耗。为了降低过程电压温度依赖性,我们提出了一个自门限跟踪环路,以确保将基于逆变器的比较器的转换点设置为电源电压的固定比率。另外,比较器延迟可以通过跟踪环路进行补偿,从而放宽了比较器功耗的要求。该设计采用0.18微米CMOS工艺实现。该设计实现了7.66 psrms的周期抖动,在100 kHz偏移频率下的-109 dBc / Hz的相位噪声和1.56 ppm的Allan偏差本底噪声。最终的品质因数为160.8 dBc / Hz,而仅消耗46.3μW。该设计的功率效率为5.6 kHz / nW。至于电源灵敏度,该设计达到0.9%/ 0.1 V,这比没有补偿环路的设计低10倍。所提出的振荡器的实测温度系数从-20摄氏度到100摄氏度为123 ppm /摄氏度,无需任何微调过程。

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