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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A CMOS Readout Circuit for SOI Resonant Accelerometer With 4-$mu rm g$ Bias Stability and 20-$ murm g/sqrt{{hbox{Hz}}}$ Resolution
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A CMOS Readout Circuit for SOI Resonant Accelerometer With 4-$mu rm g$ Bias Stability and 20-$ murm g/sqrt{{hbox{Hz}}}$ Resolution

机译:用于SOI谐振加速度计的CMOS读出电路,具有4- $μrm g $的偏置稳定性和20- $ murm g / sqrt {{hbox {Hz}}} $分辨率

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摘要

A fully differential CMOS readout circuit for SOI resonant accelerometer is reported. The readout circuit is essentially an oscillator, consisting of an oscillator and a low noise automatic amplitude control (AAC) loop. A differential sense resonator is proposed to facilitate fully differential circuit topology and improves the SNR under a 3.3-V supply. A second-order AAC loop filter and a novel chopper stabilized rectifier are employed in the AAC loop to remove the noises, in particular, the $1/{rm f}$ noise, and to minimize the phase noise caused by the amplitude stiffening effect. The strong driving feedthrough is avoided by separating the drive and sense operation in the time domain, while using the same electrodes. The complete resonant accelerometer operates under a 3.3-V supply and achieves 140-Hz/g scaling factor, 20 $mu {rm g}/sqrt{{hbox{Hz}}}$ resolution and 4 $mu {rm g}$ bias stability. The readout circuit draws 7 mA under 3.3-V supply.
机译:报告了用于SOI谐振加速度计的全差分CMOS读出电路。读出电路实质上是一个振荡器,由一个振荡器和一个低噪声自动幅度控制(AAC)环路组成。提出了一种差分感应谐振器,以促进全差分电路拓扑结构并改善3.3V电源下的SNR。 AAC环路中使用了二阶AAC环路滤波器和新型斩波稳定整流器,以消除噪声,特别是$ 1 / {rm f} $噪声,并使振幅增强效应引起的相位噪声最小。通过使用相同的电极在时域中分离驱动和感测操作,可以避免强驱动馈通。完整的谐振加速度计在3.3V电源下工作,达到140Hz / g的比例因子,分辨率为20 $ mu {rm g} / sqrt {{hbox {Hz}}} $,偏置电压为4 $ mu {rm g} $稳定性。读数电路在3.3V电源下消耗7mA电流。

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