A 1.28-nW 1.97-kHz Relaxation Oscillator for Ultra-Low Power System

Xiaoyuan Wu, Yao Xiao, C. Shi, Leilei Huang, Guangsheng Chen, Runxi Zhang
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Abstract

This paper presents a fully integrated 1.97 kHz relaxation oscillator (RXO) based on the 40 nm CMOS process. The RXO is powered by 0. 4V to directly generate a dual phase clock signal with a duty of 50% and the power consumption of only 1. 2SnW, which is suitable for ultra-low-power circuit systems. A proportional-to-absolute-temperature compensation and a complementary-to-absolute-temperature compensation technique are implemented to achieve the temperature stability of output frequency. By adding an enable (EN) signal, the stability of the feedback network can be improved without extra power consumption. The temperature coefficient (TC) of RXO is 170 ppm/°C in the temperature range of −20°C to 80°C. The RXO achieves a Figure of merit (FoM) of 0.649 nW/kHz at room temperature, and its supply voltage coefficient is ± 2.7%/V from 0.4 V to 1.6 V.
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用于超低功耗系统的1.28-nW 1.97 khz弛豫振荡器
提出了一种基于40纳米CMOS工艺的全集成1.97 kHz弛豫振荡器(RXO)。RXO的功率为0。直接产生占空率为50%,功耗仅为1的双相时钟信号。2SnW,适用于超低功耗电路系统。采用比例-绝对温度补偿和互补-绝对温度补偿技术实现输出频率的温度稳定性。通过增加使能(EN)信号,可以在不增加功耗的情况下提高反馈网络的稳定性。在−20℃~ 80℃的温度范围内,RXO的温度系数为170ppm /℃。RXO在室温下的优值(FoM)为0.649 nW/kHz,在0.4 V至1.6 V范围内的电源电压系数为±2.7%/V。
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