A 16.6 μW 3.12 MHz RC Relaxation Oscillator with 160.3 dBc/Hz FOM

Wei Zhou, W. Goh, J. Cheong, Yuan Gao
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引用次数: 6

Abstract

This paper presents a new RC relaxation oscillator for biomedical sensor interface circuit. A novel switch-capacitor based RC charging/discharging circuit is proposed to effectively improve the oscillator phase noise and power performance. The inverter-based comparator with replica biasing is employed and optimized to enhance the phase noise performance and to lower output dependence on the supply voltage variation. The oscillator's temperature insensitivity is also improved by resistor temperature compensation. The prototype RC relaxation oscillator circuit is designed in a commercial 65nm CMOS process. The post-layout simulation results showed 3.12 MHz output frequency, −112dBc/Hz phase noise at 100 kHz offset, and 16.6 μW power consumption under 1 V supply voltage. The frequency variation is ±0.294%/V for supply within 1 V to 1.6 V, and 11.31 ppm/°C for temperature across −40°C to 100°C. The overall circuit performance is compared favorably to the state-of-art designs, with an outstanding Figure of Merit (FOM) of 160.03 dBc/Hz at 100 kHz.
16.6 μW 3.12 MHz RC弛豫振荡器,160.3 dBc/Hz FOM
提出了一种用于生物医学传感器接口电路的新型RC弛豫振荡器。提出了一种基于开关电容的RC充放电电路,有效地改善了振荡器的相位噪声和功率性能。为了提高相位噪声性能,降低输出对电源电压变化的依赖,采用了基于逆变器的复制偏置比较器,并对其进行了优化。通过电阻温度补偿,提高了振荡器的温度不敏感性。采用商用65nm CMOS工艺设计了RC弛豫振荡器原型电路。布局后仿真结果显示:输出频率为3.12 MHz,偏移量为100 kHz时相位噪声为−112dBc/Hz,电源电压为1v时功耗为16.6 μW。频率变化为±0.294%/V,供应范围在1 V至1.6 V, 11.31 ppm/°C,温度范围在- 40°C至100°C。整体电路性能优于最先进的设计,在100 kHz时具有160.03 dBc/Hz的优异性能(FOM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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