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A Low Power Sub- src='/images/tex/241.gif' alt='mu'> W Chemical Gilbert Cell for ISFET Differential Reaction Monitoring

机译:用于ISFET差分反应监测的低功率Sub- src =“ / images / tex / 241.gif” alt =“ mu”> W化学吉尔伯特电池

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This paper presents a low power current-mode method for monitoring differentially derived changes in pH from ion-sensitive field-effect transistor (ISFET) sensors, by adopting the Chemical Gilbert Cell. The fabricated system, with only a few transistors, achieves differential measurements and therefore drift minimisation of continuously recorded pH signals obtained from biochemical reactions such as DNA amplification in addition to combined gain tunability using only a single current. Experimental results are presented, demonstrating the capabilities of the front-end at a microscopic level through integration in a lab-on-chip (LoC) setup combining a microfluidic assembly, suitable for applications that require differential monitoring in small volumes, such as DNA detection where more than one gene needs to be studied. The system was designed and fabricated in a typical 0.35 $mu$ m CMOS process with the resulting topology achieving good differential pH sensitivity with a measured low power consumption of only 165 nW due to weak inversion operation. A tunable gain is demonstrated with results confirming 15.56 dB gain at 20 nA of ISFET bias current and drift reduction of up to 100 times compared to a single-ended measurement is also reported due to the differential current output, making it ideal for robust, low-power chemical measurement.
机译:本文提出了一种低功率电流模式方法,该方法通过采用化学吉尔伯特电池来监测离子敏感的场效应晶体管(ISFET)传感器的pH值的差分衍生变化。仅有几个晶体管的装配式系统可实现差分测量,因此,除了仅使用单个电流的组合增益可调性外,就可以将生物化学反应(例如DNA扩增)获得的连续记录的pH信号的漂移最小化。提出了实验结果,通过集成在芯片实验室(LoC)装置中并结合了微流体组件,在微观水平上展示了前端的功能,适用于需要小批量差异监测的应用,例如DNA检测需要研究多个基因的地方。该系统的设计和制造采用典型的0.35 $ mu $ m CMOS工艺,所得到的拓扑结构具有良好的差分pH敏感性,并且由于反相操作较弱,因此测得的低功耗仅为165 nW。演示了可调增益,结果证实了在20 nA ISFET偏置电流下的增益为15.56 dB,并且由于差分电流输出,与单端测量相比,漂移减小了100倍,因此非常适用于鲁棒,低功耗-功率化学测量。

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