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A combined low power SAR capacitance-to-digital analog-to-digital converter for multisensory system

机译:用于多传感器系统的组合式低功耗SAR电容数字模数转换器

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A combined successive approximation (SAR) capacitance-to-digital converter (CDC)/analog-to-digital converter (ADC) for biomedical multisensory system is presented in this paper. The two converters have same circuit blocks and can be exchanged by four switches. Capacitance or voltage from different sensing elements can be measured and converted to digital output directly. This single chip takes place of separated CDC and ADC so that the power consumption of the multisensory system is reduced. The asynchronous SAR circuit has low power and small area. A dynamic comparator with zero-static power is adopted. Switches are carefully designed to reduce the non-idealities of the converter. Several techniques, such as bootstrapped switches, bottom-plate sampling, dummy switches are used to improve the performance of the circuit. The CDC/ADC is fabricated in 0.18 μm CMOS process. Measurement results show that the ENOB of this 11 bits converter is 10.15 bits and its FOM is 45 fJ/conversion-step under 200 kHz sampling. The power consumption is 9.4 μW with 1.4 V power supply voltage and the core area is 0.1764 mm~2.
机译:本文提出了一种用于生物医学多传感器系统的组合逐次逼近(SAR)电容数字转换器(CDC)/模拟数字转换器(ADC)。这两个转换器具有相同的电路块,并且可以通过四个开关进行交换。来自不同传感元件的电容或电压可以被测量并直接转换为数字输出。该单芯片代替了分离的CDC和ADC,从而降低了多传感器系统的功耗。异步SAR电路功耗低,面积小。采用具有零静态功率的动态比较器。开关经过精心设计,以减少转换器的非理想性。自举开关,底板采样,虚拟开关等多种技术可用于改善电路性能。 CDC / ADC采用0.18μmCMOS工艺制造。测量结果表明,在200 kHz采样频率下,该11位转换器的ENOB为10.15位,其FOM为45 fJ /转换步长。电源电压为1.4 V时,功耗为9.4μW,核心区域为0.1764 mm〜2。

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