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Fully integrated CMOS nano-particle assembly circuit for biological detections

机译:用于生物检测的全集成CMOS纳米粒子组装电路

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Recently, along with the booming of research and production of CMOS Integrated Bio-sensing System, selective assembly of organic nano-particles on the on-chip electrodes, which serves for specific bio-sensing and detection purposes, is in high demand in areas like biological analysis and detection, DNA probing and surveying systems and etc. In this paper, a fully integrated bio-circuit targeting at electrical selective assembly of charged nano-particles is proposed and designed in SMIC 0.18 μm CMOS mixed signal process. The proposed circuit integrates the 16 pixels of 19 μm × 19 μm electrode array, counter electrode, potentiostat circuit, digital decoding circuit, as well as control logics on a single chip, and provides a rail-to-rail range of assembling voltage, a potential resolution of 8 bit, and a maximal assembling current up to 459 μA, biased at a current of 1 μA. Meanwhile, a novel electrode-reuse scheme is also proposed to further simplify the architecture and save chip area as well, without degrading the functionalities. Experimental results from on-chip selective assembly of 50 nm polystyrene nano-particles are included and discussed to verify the feasibility of the proposed circuits. Keywords CMOS nano-particle assembly circuit (NAC) - Fully integration - Selective assembly - On-chip potentiostat - Electrode-reuse
机译:近年来,随着CMOS集成生物传感系统的研究和生产的蓬勃发展,在诸如以下领域中对有机纳米颗粒在片上电极上的选择性组装(用于特定的生物传感和检测目的)有很高的需求。本文提出并设计了一种以SMIC 0.18μmCMOS混合信号处理为目标的完全集成的生物电路,该电路针对带电纳米粒子的电选择性组装。拟议的电路在单个芯片上集成了16个像素的19μm×19μm电极阵列,对电极,恒电位仪电路,数字解码电路以及控制逻辑,并提供了轨到轨范围的组装电压,电位分辨率为8位,最大组装电流高达459μA,偏置电流为1μA。同时,还提出了一种新颖的电极重用方案,以在不降低功能的情况下进一步简化架构并节省芯片面积。包括并讨论了片上选择性组装50 nm聚苯乙烯纳米粒子的实验结果,以验证所提出电路的可行性。关键字CMOS纳米粒子组装电路(NAC)-完全集成-选择性组装-片上恒电位仪-电极重复使用

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