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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >16-Channel CMOS Impedance Spectroscopy DNA Analyzer With Dual-Slope Multiplying ADCs
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16-Channel CMOS Impedance Spectroscopy DNA Analyzer With Dual-Slope Multiplying ADCs

机译:具有双斜率乘法ADC的16通道CMOS阻抗谱DNA分析仪

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摘要

We present a 16-channel, mixed-signal CMOS DNA analyzer that utilizes frequency response analysis (FRA) to extract the real and imaginary impedance components of the biosensor. Two computationally intensive operations, the multiplication and integration required by the FRA algorithm, are performed by an in-channel dual-slope multiplying ADC in the mixed-signal domain resulting in minimal area and power consumption. Multiplication of the input current by a digital coefficient is implemented by modulating the counter-controlled duration of the charging phase of the ADC. Integration is implemented by accumulating output digital bits in the ADC counter over multiple input samples. The 1.05 mm$times$1.6 mm prototype fabricated in a 0.13 $,mu$m standard CMOS technology has been validated in prostate cancer DNA detection. Each channel occupies an area of only 0.06 mm$^{2}$ and consumes 42 $mu$W of power from a 1.2 V supply.
机译:我们提出了一种16通道混合信号CMOS DNA分析仪,该分析仪利用频率响应分析(FRA)提取生物传感器的真实和虚构阻抗分量。在混合信号域中,通过通道内双斜率乘法ADC执行两个计算密集型操作,即FRA算法所需的乘法和积分,从而实现了最小的面积和功耗。输入电流与数字系数的乘积是通过调制ADC充电阶段受计数器控制的持续时间来实现的。积分是通过在ADC计数器中的多个输入采样上累加输出数字位来实现的。 1.03毫米×1.6毫米原型机采用0.13微米标准CMOS技术制造,已在前列腺癌DNA检测中得到验证。每个通道仅占0.06 mm $ ^ {2} $的面积,并从1.2 V电源消耗42μmuW的功率。

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