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A6 6 22W 86 ppm 61 C Fully-Integrated 6 MHz Wienbridge Oscillator With a 172 dB
本文提出了一种新型Wienbridge振荡器拓扑,具有低相位噪声、低温度依赖性和低功耗特性,适用于无线传感器节点和时间传感器读出电路。
65nm CMOS, 6MHz, 66μW, 86ppm/°C
Wienbridge振荡器低功耗温度稳定性相位噪声无线传感器节点
▸创新点1:新型Wienbridge拓扑设计(方法创新)。该论文提出了一种全新的Wienbridge振荡器拓扑结构,通过优化反馈网络和放大器设计,实现了172 dB的超高相位噪声性能指标,显著优于传统结构。
▸创新点2:低温度依赖性(性能创新)。通过精密计算和电路优化,在65 nm工艺下实现了86 ppm/°C的温度稳定性,7个样品的频率偏差仅0.9%,适用于宽温域传感器节点。
▸创新点3:超低功耗系统集成(系统创新)。整体电路功耗仅66μW,芯片面积150μm×200μm,将振荡器、放大器和反馈网络全集成,为无线传感器节点提供完整的低功耗时间基准解决方案。
▸创新点4:噪声优化技术(电路创新)。采用源极退化电阻和Q因子调控技术,在6MHz工作频率下实现100kHz偏移处-172dB的相位噪声FoM,突破传统LC振荡器的噪声限制。
Abstract
mber , IEEE, Pieter De Wit , Student Member , IEEE, Wim V ereecken, Member , IEEE,
and Michiel S. J. Steyaert , Fellow, IEEE
Abstract—This paper presents the design of a new Wienbridge
topology. Its phase noise performance, low temperature depen-
dency and low power consumption make it suitable for use in
wireless sensor nodes and time-based sensor readout circuitry.
The noise as well as temperature behavior of the oscillator is ex-
plained using extensive calculations. Measurements on 7 samples