首页> 外文会议>Frequency Control Symposium (FCS), 2012 IEEE International >A single LC tank self-compensated CMOS oscillator with frequency stability of ±100ppm from −40°C to 85°C
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A single LC tank self-compensated CMOS oscillator with frequency stability of ±100ppm from −40°C to 85°C

机译:单个LC储罐自补偿CMOS振荡器,在−40°C至85°C的频率范围内具有±100ppm的频率稳定性

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摘要

This work presents a new all CMOS Self-Compensated Oscillator (SCO) that is highly stable across temperature and is utilized as a reference clock source. The new architecture utilizes an innovative phase shift technique that adjusts the phase of the tank at a specific Temperature Null (TNULL) phase where the frequency deviation across temperature is minimized. The single LC tank architecture used in the new oscillator reduces die area significantly compared to a previously reported dual LC tank architecture. The new oscillator achieves a total frequency stability of ±100ppm across temperature (−40–85°C), supply (3.0–3.6V) and load (0–15pF). CMOS output frequencies from 1–133MHz can be produced with a 2.8ps rms period jitter and 7mA current consumption at 25MHz output.
机译:这项工作提出了一种新的全CMOS自补偿振荡器(SCO),该振荡器在整个温度范围内都非常稳定,并可用作参考时钟源。新架构采用了创新的相移技术,可在特定的温度零位(TNULL)相位下调整储罐的相位,从而使整个温度范围内的频率偏差最小。与先前报道的双LC谐振腔架构相比,新振荡器使用的单个LC谐振腔架构显着减小了芯片面积。新振荡器在整个温度(−40–85°C),电源(3.0–3.6V)和负载(0–15pF)范围内的总频率稳定性达到±100ppm。 CMOS输出频率为1–133MHz,25MHz输出时可产生2.8ps rms的周期抖动和7mA的电流消耗。

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