← 返回 JSSC 论文列表JSSC 2020第9期Power Management0.18μm
An Ultra-Low-Noise Swing-Boosted Differential Relaxation Oscillator in 0.18- μmC M O S
一种超低噪声摆幅增强差分弛豫振荡器,具有优异的相位噪声性能和功率效率。
10.5MHz, 219.8µW@1.4V, 9.86psrms抖动, 0.01%相对抖动
超低噪声弛豫振荡器相位噪声摆幅增强CMOS
▸摆幅增强技术降低热噪声相位噪声
▸基于反相器的差分比较器提高功率效率
▸对1/f噪声具有固有鲁棒性
Abstract
This article presents an ultra-low-noise differential relaxation oscillator that achieves a phase noise figure of mer- its (FoMs) of 157.7 and 162.1 dBc/Hz, respectively, at 1- and 100-kHz frequency offsets. The oscillator is inherently robust against 1/ f noise, while swing-boosting minimizes the phase noise arising out of thermal noise. Furthermore, an inverter-based differential comparator maximizes power efficiency, enabling FoMs close to the fundamental limits. Operating at 10.5 MHz and consuming 219.8 µW from a 1.4-V supply, the oscillator achieves a period jitter of 9.86 p srms, equivalent to a relative jitter of 0.01%. The oscillator occupies an active area of 0.015 mm 2 in a 0.18- µm standard CMOS process.