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18.2 A 16fJ/Conversion-Step Time-Domain Two-Step Capacitance-to-Digital Converter

机译:18.2 A 16FJ /转换步骤时域两步电容到数字转换器

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Capacitive sensors are widely used to measure various physical quantities, including pressure, humidity [1], and displacement [2]. Ultra-low-power capacitance-to-digital converters (CDCs) are required for sensors with limited battery capacity or powered by energy harvesters. A SAR CDC is simple to design and well-suited for low-to-medium resolution applications. However, to reach high resolution, it requires a low-noise comparator [3] or OTA-based active charge transfer [4], resulting in degraded power efficiency. The ΔΣ CDC [1] is suitable for high-resolution applications, but it requires OTAs and repeated charging of the sensing capacitor, leading to high power consumption. The Zoom CDC in [5] achieves high resolution with only one-time charging, but its energy efficiency is still limited by power-hungry OTAs. The open-loop SAR-VCO CDC in [6] achieves low power consumption by eliminating the OTA; however, the VCO gain variation causes inter-stage gain error and requires background calibration, which increases the design complexity and makes it unsuitable for single-shot measurement in sensor node applications due to the long convergence time.
机译:电容传感器广泛用于测量各种物理量,包括压力,湿度[1]和位移[2]。电池电量有限或由能量收割机提供电源的传感器需要超低功耗电容到数字转换器(CDC)。 SAR CDC易于设计,适合低于中脑分辨率的应用。然而,为了达到高分辨率,它需要低噪声比较器[3]或基于OTA的有源电荷转移[4],导致功率效率降低。 ΔΣCDC[1]适用于高分辨率应用,但是它需要OTA和传感电容器的重复充电,从而导致高功耗。 [5]中的缩放CDC实现了高分辨率,只有一次性充电,但其能效仍然受到功率饥饿的OTAS的限制。 [6]中的开环SAR-VCO CDC通过消除OTA实现了低功耗;但是,VCO增益变化导致阶段的跨性增益误差,并且需要改变设计复杂性,并使由于长收敛时间长,使其在传感器节点应用中不适合单次测量。

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