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首页> 外文期刊>Sensors Journal, IEEE >A Low-Power Highly Sensitive Capacitive Accelerometer IC Using Auto-Zero Time-Multiplexed Differential Technique
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A Low-Power Highly Sensitive Capacitive Accelerometer IC Using Auto-Zero Time-Multiplexed Differential Technique

机译:采用自动零时分差分技术的低功耗高灵敏度电容式加速度传感器IC

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摘要

This paper presents a low-power highly sensitive switched-capacitor (SC) readout integrated circuit (IC) for a capacitive accelerometer. Fabricated using bulk micromachining technique, the mechanical sensor with a cantilever structure achieves a high sensitivity and low noise feature. An autozero time-multiplexed differential capacitance-to-voltage converter (AZTMD-CVC) is proposed in the SC readout interface. The CVC is based on a simple single-ended topology to yield a time-multiplexed differential output. As such, dc offset, 1/ noise, thermal drift, and component mismatch errors are significantly reduced in form of common mode errors through the time-multiplexed differential operation. In addition, the thermal noise of the AZTMD-CVC is analyzed and optimized with power so as to achieve good noise-power efficiency. The application specified IC chip is fabricated using 0.35- CMOS technology and draws a total current of at a ±2.5 V supply. The accelerometer system’s sensitivity is 1.95 V/g. The measured system noise floor is only Hz at 250 Hz and the output noise-power product figure of merit (FOM) is 0.28 (.
机译:本文提出了一种用于电容式加速度计的低功耗高灵敏度开关电容器(SC)读出集成电路(IC)。使用块状微加工技术制造的具有悬臂结构的机械传感器实现了高灵敏度和低噪声的特征。在SC读出接口中提出了一种自动归零时分多路差分电容电压转换器(AZTMD-CVC)。 CVC基于简单的单端拓扑,以产生时分复用的差分输出。这样,通过时分多路复用差分操作,以共模误差的形式显着减少了直流偏移,1 /噪声,热漂移和元件失配误差。此外,还对AZTMD-CVC的热噪声进行了功率分析和优化,以实现良好的噪声-功率效率。应用指定的IC芯片使用0.35-CMOS技术制造,并在±2.5 V的电源上汲取总电流。加速度计系统的灵敏度为1.95 V / g。测得的系统本底噪声仅为250 Hz时的Hz,输出噪声功率乘积的品质因数(FOM)为0.28(。

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