Parametric filtering surpasses resonator noise in ALN contour-mode oscillators

C. Cassella, N. Miller, J. Segovia-Fernandez, G. Piazza
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引用次数: 8

Abstract

In this work we present a new method to lower the phase noise in acoustic resonator based oscillators. This method uses the nonlinear dynamics of a parametric divider made to work close to the bifurcation region. We call this technique "parametric filtering". This approach was applied to an oscillator based on an aluminum nitride contour-mode resonator vibrating around 227 MHz. This class of resonators exhibits frequency flicker noise that limits the oscillator phase noise close to the carrier. By means of parametric filtering we obtained an improvement in the phase noise of more than 14 and 19 dB, respectively at 1 and 10 kHz offsets. This technique can be applied to any MEMS oscillator and represents the first demonstration of open loop phase noise filtering.
参数滤波在ALN轮廓模振荡器中优于谐振腔噪声
在这项工作中,我们提出了一种新的方法来降低基于声学谐振器的振荡器的相位噪声。该方法利用非线性动力学的参数分频器,使其工作在分岔区域附近。我们称这种技术为“参数滤波”。该方法应用于基于氮化铝轮廓模谐振器的振荡器,振动频率约为227 MHz。这类谐振器表现出频闪噪声,限制了靠近载波的振荡器相位噪声。通过参数滤波,我们在1 kHz和10 kHz偏移处分别获得了超过14和19 dB的相位噪声改善。该技术可应用于任何MEMS振荡器,是开环相位噪声滤波的首次演示。
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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