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CMOS impedance spectrum analyzer with dual-slope multiplying ADC

机译:具有双斜率乘法ADC的CMOS阻抗频谱分析仪

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We present a multi-channel, mixed-signal VLSI architecture that utilizes frequency response analysis (FRA) to extract the real and imaginary components of a biosensor impedance. Two computationally intensive operations, the multiplication and integration required by the FRA algorithm, are efficiently performed by an in-channel dual-slope multiplying ADC with minimal resources overhead. 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 1.2mm×1.6mm prototype fabricated in a 0.13µm standard CMOS technology has been validated in DNA catalytic reporter detection. Each channel occupies an area of only 0.06mm2 and consumes 42µW of power from a 1.2V supply.
机译:我们提出了一种多通道,混合信号VLSI架构,该架构利用频率响应分析(FRA)提取生物传感器阻抗的实部和虚部。通道内双斜率乘法ADC以最小的资源开销有效地执行了两个计算密集型运算,即FRA算法所需的乘法和积分。输入电流与数字系数的乘积是通过调制ADC充电阶段的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。采用0.13µm标准CMOS技术制造的1.2mm×1.6mm原型已在DNA催化报道分子检测中得到验证。每个通道仅占0.06mm 2 的面积,并从1.2V电源消耗42µW的功率。

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