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A Low Power 12-bit 1-kS/s SAR ADC for Biomedical Signal Processing

机译:用于生物医学信号处理的低功耗12位1-kS / s SAR ADC

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In this paper, a 12-bit 1-kS/s successive approximation register analog-to-digital converter (ADC) is presented for biomedical signal processing system. A multi-segmentation digital-to-analog converter architecture and a hybrid switching scheme are proposed to reduce the total unit capacitor count. A new ultra low-leakage switch is proposed for sample-andhold and capacitor control switch blocks in order to improve conversion accuracy and reduce leakage current. The proposed ADC is fabricated in 130-nm CMOS process with a core area of 0.16 mm(2). The measurement results show that the ADC achieves 10.47 ENOB and consumes 110-nW power at a sampling rate of 1 kS/s with 1.0-V supply voltage. A Walden figure of merit of 76 fJ/conversion-step is obtained.
机译:本文提出了一种用于生物医学信号处理系统的12位1-kS / s逐次逼近寄存器模数转换器(ADC)。提出了一种多段数模转换器架构和一种混合开关方案,以减少总的单位电容器数量。提出了一种用于采样保持和电容器控制开关模块的新型超低泄漏开关,以提高转换精度并减少漏电流。拟议的ADC采用130nm CMOS工艺制造,核心面积为0.16 mm(2)。测量结果表明,在1.0V电源电压下,ADC达到10.47 ENOB并以1 kS / s的采样速率消耗110nW的功率。获得了76 fJ /转换步骤的Walden品质因数。

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