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A Precision, Energy-Efficient, Oversampling, Noise-Shaping Differential SAR Capacitance-to-Digital Converter

机译:精密,节能,过采样,噪声消除型差分SAR电容数字转换器

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This paper introduces an oversampling, noise-shaping differential successive-approximation-register capacitance-to-digital converter (CDC) architecture for interfacing capacitive sensors. The proposed energy-efficient CDC achieves high-precision capacitive resolution by employing oversampling and noise shaping. The switched-capacitor (SC) integrator is inserted between the comparator and the charge-redistribution digital-to-analog converter to implement noise shaping and to make the interface circuit insensitive to parasitic capacitances. An inverter-based operational transconductance amplifier with a common-mode feedback circuit is employed to implement the SC integrator with subthreshold biasing for low voltage and low power. The ring-oscillator-based comparator is implemented to achieve high energy efficiency. The test chip is fabricated in a 0.18-$mu ext{m}$CMOS technology. The proposed CDC experimentally achieves 150 aF absolute resolution and 12.74-ENOB with an oversampling ratio of 15 and a sampling clock of 18.51 kHz. The fabricated prototype dissipates 1.2 and 0.39$mu ext{W}$from analog and digital supplies, respectively, with an energy efficiency figure-of-merit of 187 fJ/conversion step.
机译:本文介绍了用于电容式传感器接口的过采样,噪声整形的差分逐次逼近寄存器电容数字转换器(CDC)架构。提议的节能CDC通过采用过采样和噪声整形来实现高精度的电容分辨率。开关电容器(SC)积分器插入比较器与电荷分配数模转换器之间,以实现噪声整形并使接口电路对寄生电容不敏感。采用具有共模反馈电路的基于逆变器的运算跨导放大器,可实现具有亚阈值偏置的SC积分器,以实现低电压和低功耗。实现基于环形振荡器的比较器以实现高能效。测试芯片以0.18-n $ mu text {m} $ nCMOS技术。提议的CDC在实验上达到150 aF的绝对分辨率和12.74-ENOB,过采样率为15,采样时钟为18.51 kHz。所制作的原型耗散1.2和0.39 n $ mu text {W} $ n来自模拟和数字电源,分别具有187 fJ /转换步骤的能效系数。

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