首页> 外文会议>IEEE Biomedical Circuits and Systems Conference >A 0.8 #x00B5;W 8-bit 1.5#x223C;20-pF-input-range capacitance-to-digital converter for lab-on-chip digital microfluidics systems
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A 0.8 #x00B5;W 8-bit 1.5#x223C;20-pF-input-range capacitance-to-digital converter for lab-on-chip digital microfluidics systems

机译:用于实验室数码微流体系统的0.8μW8位1.5〜20-PF输入范围电容对数字转换器

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This paper presents an ultra-low-power capacitance-to-digital converter (CDC) for digital microfluidics systems that demand a wide capacitive sensing range. It is structured with a switched-capacitor capacitance-to-current front-end interface, followed by a differential current-mode SAR analog-to-digital converter (ADC). By using subthreshold-biased transistors, the differential current-mode SAR ADC significantly saves power and reduces sensitivity to supply voltage and clock variation. The 8-bit 1-kS/s CDC designed in 0.35-µm CMOS exhibits a capacitance sensing range from 1.5 to 20 pF while consuming a total power of 0.8 µW. The ENOB of the current SAR ADC is 7.46.
机译:本文为数字微流体系统提供了一种超低功耗电容对数字转换器(CDC),需求宽的电容传感范围。它用开关电容电容到电流前端接口构建,然后是差分电流模式SAR模数转换器(ADC)。通过使用亚阈值偏置晶体管,差分电流模式SAR ADC显着节省了功率并降低了对电源电压和时钟变化的灵敏度。设计成0.35微米CMOS的8位1-KS / S CDC在1.5至20pf的电容感应范围内具有0.8μW的总功率。目前SAR ADC的eNOB为7.46。

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