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A Hybrid Semi-Digital Transimpedance Amplifier With Noise Cancellation Technique for Nanopore-Based DNA Sequencing

机译:一种基于噪声消除技术的混合半数字互阻放大器,用于基于纳米孔的DNA测序

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摘要

Over the past two decades, nanopores have been a promising technology for next generation deoxyribonucleic acid (DNA) sequencing. Here, we present a hybrid semi-digital transimpedance amplifier (HSD-TIA) to sense the minute current signatures introduced by single-stranded DNA (ssDNA) translocating through a nanopore, while discharging the baseline current using a semi-digital feedback loop. The amplifier achieves fast settling by adaptively tuning a DC compensation current when a step input is detected. A noise cancellation technique reduces the total input-referred current noise caused by the parasitic input capacitance. Measurement results show the performance of the amplifier with 31.6 M mid-band gain, 950 kHz bandwidth, and 8.5 fA/Hz input-referred current noise, a noise reduction due to the noise cancellation technique. The settling response is demonstrated by observing the insertion of a protein nanopore in a lipid bilayer. Using the nanopore, the HSD-TIA was able to measure ssDNA translocation events.
机译:在过去的二十年中,纳米孔已成为下一代脱氧核糖核酸(DNA)测序的有前途的技术。在这里,我们提出了一种混合半数字跨阻放大器(HSD-TIA),以感测通过纳米孔移位的单链DNA(ssDNA)引入的微小电流信号,同时使用半数字反馈回路释放基线电流。当检测到阶跃输入时,放大器通过自适应地调整DC补偿电流来实现快速建立。噪声消除技术可降低由寄生输入电容引起的总输入参考电流噪声。测量结果表明,该放大器具有31.6 M中频带增益,950 kHz带宽和8.5 fA / Hz输入参考电流噪声的性能,这是由于噪声消除技术所致。通过观察蛋白质纳米孔在脂质双层中的插入来证明沉降反应。使用纳米孔,HSD-TIA能够测量ssDNA易位事件。

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