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A VCO-Based CMOS Readout Circuit for Capacitive MEMS Microphones

机译:基于VCO的电容MEMS麦克风的CMOS读出电路

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摘要

Microelectromechanical systems (MEMS) microphone sensors have significantly improved in the past years, while the readout electronic is mainly implemented using switched-capacitor technology. The development of new battery powered “always-on” applications increasingly requires a low power consumption. In this paper, we show a new readout circuit approach which is based on a mostly digital Sigma Delta ( ) analog-to-digital converter (ADC). The operating principle of the readout circuit consists of coupling the MEMS sensor to an impedance converter that modulates the frequency of a stacked-ring oscillator—a new voltage-controlled oscillator (VCO) circuit featuring a good trade-off between phase noise and power consumption. The frequency coded signal is then sampled and converted into a noise-shaped digital sequence by a time-to-digital converter (TDC). A time-efficient design methodology has been used to optimize the sensitivity of the oscillator combined with the phase noise induced by and thermal noise. The circuit has been prototyped in a 130 nm CMOS process and directly bonded to a standard MEMS microphone. The proposed VCO-based analog-to-digital converter (VCO-ADC) has been characterized electrically and acoustically. The peak signal-to-noise and distortion ratio (SNDR) obtained from measurements is 77.9 dB-A and the dynamic range (DR) is 100 dB-A. The current consumption is 750 A at 1.8 V and the effective area is 0.12 mm . This new readout circuit may represent an enabling advance for low-cost digital MEMS microphones.
机译:过去几年中,微机电系统(MEMS)麦克风传感器有了显着改善,而读出电子设备主要使用开关电容器技术实现。新的电池供电“始终在线”应用的开发越来越需要低功耗。在本文中,我们展示了一种新的读出电路方法,该方法基于大部分为数字Sigma Delta()模数转换器(ADC)的电路。读出电路的工作原理包括将MEMS传感器耦合到阻抗转换器,该阻抗转换器调制叠环振荡器的频率-一种新型的压控振荡器(VCO)电路,在相位噪声和功耗之间取得了很好的平衡。然后,对频率编码的信号进行采样,并通过时间数字转换器(TDC)将其转换为噪声形状的数字序列。一种省时的设计方法已被用于优化振荡器的灵敏度以及由噪声和热噪声引起的相位噪声。该电路已在130 nm CMOS工艺中原型化,并直接连接至标准MEMS麦克风。拟议中的基于VCO的模数转换器(VCO-ADC)具有电气和声学特性。通过测量获得的峰值信噪比和失真比(SNDR)为77.9 dB-A,动态范围(DR)为100 dB-A。 1.8 V时的电流消耗为750 A,有效面积为0.12 mm。这种新的读出电路可以代表低成本数字MEMS麦克风的促成发展。

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