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Low-noise dual-channel current amplifier for DNA sensing with solid-state nanopores

机译:低噪声双通道电流放大器,用于通过固态纳米孔进行DNA传感

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摘要

A compact platform for nanopore-based detection is presented. The system is tailored for high-capacitance (hundreds of pF) solid-state nanopores with integrated tunneling electrodes for DNA detection and label-free sequencing. This platform includes two low-noise current sensing channels and auxiliary biasing and selectable filtering circuits. In order to overcome the noise/bandwidth trade-off of the standard transimpedance configuration, an improved integrator-differentiator topology is adopted. The use of a discrete couple of matched JFETs at the differential input allows achieving very low equivalent input voltage noise (1.5nV/√Hz) critical with high input capacitance. Thus, the transimpedance amplifiers provide 100MO gain, 75kHz bandwidth and 11pArms noise, comparable with the state-of-the-art performance. The system design, its characterization and λ-DNA detection with a sub-20nm pore are reported.
机译:提出了一个用于基于纳米孔的检测的紧凑平台。该系统专为高电容(数百pF)固态纳米孔而设计,具有集成的隧穿电极,用于DNA检测和无标记测序。该平台包括两个低噪声电流检测通道以及辅助偏置和可选滤波电路。为了克服标准互阻配置的噪声/带宽折衷,采用了改进的积分器-微分器拓扑。在差分输入端使用一对匹配的JFET的离散耦合,可实现对高输入电容来说非常关键的非常低的等效输入电压噪声(1.5nV /√Hz)。因此,跨阻放大器提供了100MO的增益,75kHz的带宽和11pA rms 的噪声,可与最新性能媲美。报告了系统设计,其表征和20 nm以下孔的λ-DNA检测。

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