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Label-Free CMOS Bio Sensor With On-Chip Noise Reduction Scheme for Real-Time Quantitative Monitoring of Biomolecules

机译:具有片上降噪方案的无标签CMOS生物传感器,用于实时定量监测生物分子

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We present a label-free CMOS field-effect transistor sensing array to detect the surface potential change affected by the negative charge in DNA molecules for real-time monitoring and quantification. The proposed CMOS bio sensor includes a new sensing pixel architecture implemented with correlated double sampling for reducing offset fixed pattern noise and $1/{rm f}$ noise of the sensing devices. We incorporated non-surface binding detection which allows real-time continuous monitoring of DNA concentrations without immobilizing them on the sensing surface. Various concentrations of 19-bp oligonucleotides solution can be discriminated using the prototype device fabricated in 1- $mu{rm m}$ double-poly double-metal standard CMOS process. The detection limit was measured as 1.1 ${rm ng}/mu {rm l}$ with a dynamic range of 40 dB and the transient response time was measured less than 20 seconds.
机译:我们提出了一种无标签的CMOS场效应晶体管传感阵列,以检测受DNA分子中负电荷影响的表面电势变化,以进行实时监测和定量。所提出的CMOS生物传感器包括一种新的传感像素架构,该架构采用相关双采样实现,以减少偏移的固定图案噪声和传感设备的$ 1 / {rm f} $噪声。我们采用了非表面结合检测技术,可以实时连续监测DNA浓度,而无需将其固定在传感表面上。可以使用以1-μm/ mm双-多晶硅双金属标准CMOS工艺制造的原型设备来区分各种浓度的19-bp寡核苷酸溶液。测得的检出限为1.1 $ {rm ng} / mu {rm l} $,动态范围为40 dB,瞬态响应时间小于20秒。

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