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A CMOS LC-based frequency reference with ±40ppm stability from −40°C to 105°C

机译:基于CMOS LC的频率基准在−40°C至105°C的范围内具有±40ppm的稳定性

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This work presents a highly stable monolithic integrated CMOS LC-based frequency reference. The frequency reference is based on a Self-Compensated Oscillator (SCO) architecture where the LC tank operates at a specific phase Phi-NULL where frequency sensitivity versus temperature is minimum. A new compensation technique is applied over Phi-Null to further optimize frequency stability and extend the temperature range. The new technique is based on an analog approach and induces a minimum impact on oscillator phase noise, current consumption and die area. Utilizing this technique, the temperature range has been extended to (-40-105°C) with a ±40ppm frequency stability. Achieved performance makes it possible for the SCO to be introduced to automotive applications where crystals suffer vibration induced stability issues.
机译:这项工作提出了一个高度稳定的单片集成CMOS LC频率参考。频率参考基于自补偿振荡器(SCO)架构,其中LC储能器以特定相位Phi-NULL运行,其中频率灵敏度与温度的关系最小。在Phi-Null上应用了一种新的补偿技术,以进一步优化频率稳定性并扩展温度范围。新技术基于模拟方法,对振荡器相位噪声,电流消耗和芯片面积的影响最小。利用该技术,温度范围已扩展至(-40-105°C),具有±40ppm的频率稳定性。出色的性能使其可以将SCO引入晶体受振动引起的稳定性问题的汽车应用中。

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