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A CMOS Read-Out IC for Cyanobacteria Detection With 40 nApp Sensitivity and 45-dB Dynamic Range

机译:具有40个NAPP敏感性和45dB动态范围的蓝细菌检测的CMOS读出IC

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摘要

This paper presents a low-power high-sensitivity CMOS read-out integrated circuit (ROIC) realized in a 0.13 mu m CMOS technology for cyanobacteria detection and monitoring with the current sensing capability of nano-ampere levels. The proposed CMOS ROIC consists of a current-conveyor transimpedance amplifier (CC-TIA) and a 9 bit successive approximation register (SAR) analog-to-digital converter (ADC). Electrically measured results of the proposed ROIC demonstrate 98.6 dB Omega transimpedance gain, 1.19 pA/root Hz noise current spectral density, and 1.8 mA current consumption from a single 1.2 V supply. The ROIC can precisely recover the digital output codes corresponding to the input current levels of 40 nApp similar to 7.2 mu App (i.e., 45 dB dynamic range). Optical experiments utilizing a 405 nm wavelength laser source and a low-cost PIN-photodiode confirm the fluorescence intensity with respect to the quantity of cyanobacteria, demonstrating that the normalized voltage (QD655/QD565) is a linear function of the mcyD gene copy numbers. The CMOS ROIC chip occupies the area of 1.1 x 2.0 mm(2).
机译:本文提出了一种低功率高灵敏度CMOS读出集成电路(ROIC),以0.13 mu M CMOS技术实现用于蓝藻检测和监测纳米安培水平的电流检测能力。所提出的CMOS ROIC由电流输送机跨阻抗放大器(CC-TIA)和9位连续近似寄存器(SAR)模数转换器(ADC)组成。所提出的ROIC的电测量结果显示了98.6dB Omega跨阻抗增益,1.19 PA / ROTET HZ噪声电流谱密度,从单个1.2 V电源的1.8 mA电流消耗。 ROIC可以精确地恢复与类似于7.2μAPP的输入电流水平相对应的数字输出代码(即45 dB动态范围)。利用405nm波长激光源和低成本销光电二极管的光学实验证实了相对于蓝藻量的荧光强度,证明归一化电压(QD655 / QD565)是MCYD基因拷贝数的线性函数。 CMOS ROIC芯片占地面积为1.1 x 2.0 mm(2)。

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