首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A 33fJ/Step SAR Capacitance-to-Digital Converter Using a Chain of Inverter-Based Amplifiers
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A 33fJ/Step SAR Capacitance-to-Digital Converter Using a Chain of Inverter-Based Amplifiers

机译:使用基于反相器的放大器链的33fJ / step SAR电容数字转换器

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摘要

A 12 – bit energy-efficient capacitive sensor interface circuit that fully relies on capacitance-domain successive approximation (SAR) technique is presented. Analysis shows that for SAR capacitance-to-digital converter (CDC) comparator offset voltage will result in parasitic-dependent conversion errors, which necessitates using an offset cancellation technique. Based on the presented analysis, a SAR CDC that uses a chain of cascode inverter-based amplifiers with near-threshold biasing is proposed to provide robust, energy-efficient, and fast operation. A hybrid coarse-fine capacitive digital-to-analog converter (CapDAC) achieves 11.7 – bit effective resolution, and provides 83% area saving compared to a conventional binary weighted implementation. The prototype fabricated in a 0.18μm CMOS technology is experimentally verified using MEMS capacitive pressure sensor. Experimental results show an energy efficiency figure-of-merit (FoM) of 33fJ/Step which outperforms the state-of-the-art. The CDC output is insensitive to analog references; thus, a very low temperature sensitivity of 2.3ppm/∘C is achieved without the need for calibration.
机译:提出了一种完全依靠电容域逐次逼近(SAR)技术的12位节能电容式传感器接口电路。分析表明,对于SAR电容数字转换器(CDC),比较器偏移电压将导致寄生相关的转换误差,这需要使用偏移消除技术。基于提出的分析,提出了一种SAR CDC,该SAR CDC使用基于串级反相器的,具有接近阈值偏置的放大器链来提供稳定,节能和快速的操作。与传统的二进制加权实现方案相比,混合型粗精细电容式数模转换器(CapDAC)达到11.7位有效分辨率,并节省了83%的面积。采用MEMS电容式压力传感器的实验验证了采用0.18μmCMOS技术制造的原型。实验结果表明,其能效品质因数(FoM)为33fJ /步,优于最新技术。 CDC输出对模拟参考不敏感。因此,无需校准即可实现2.3ppm /∘C的极低温度灵敏度。

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