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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Design of a CMOS Potentiostat Circuit for Electrochemical Detector Arrays
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Design of a CMOS Potentiostat Circuit for Electrochemical Detector Arrays

机译:电化学检测器阵列CMOS恒电位仪电路的设计

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High-throughput electrode arrays are required for advancing devices for testing the effect of drugs on cellular function. In this paper, we present design criteria for a potentiostat circuit that is capable of measuring transient amperometric oxidation currents at the surface of an electrode with submillisecond time resolution and picoampere current resolution. The potentiostat is a regulated cascode stage in which a high-gain amplifier maintains the electrode voltage through a negative feedback loop. The potentiostat uses a new shared amplifier structure in which all of the amplifiers in a given row of detectors share a common half circuit permitting us to use fewer transistors per detector. We also present measurements from a test chip that was fabricated in a 0.5-mum, 5-V CMOS process through MOSIS. Each detector occupied a layout area of 35 mumtimes15 mum and contained eight transistors and a 50-fF integrating capacitor. The rms current noise at 2-kHz bandwidth is ap110 fA. The maximum charge storage capacity at 2 kHz is 1.26times106 electrons
机译:先进设备需要高通量电极阵列,以测试药物对细胞功能的影响。在本文中,我们提出了一种恒电位仪电路的设计标准,该电路能够以毫秒级的时间分辨率和皮安电流分辨率测量电极表面的瞬态安培氧化电流。恒电位仪是稳压共源共栅级,其中高增益放大器通过负反馈环路保持电极电压。稳压器使用一种新的共享放大器结构,其中给定检测器行中的所有放大器共享一个共同的半电路,从而使我们每个检测器可以使用更少的晶体管。我们还介绍了通过MOSIS以0.5微米,5V CMOS工艺制造的测试芯片的测量结果。每个检测器占用35 m×15 m的布局面积,并包含八个晶体管和一个50fF的积分电容器。 2 kHz带宽时的均方根电流噪声为ap110 fA。 2 kHz时的最大电荷存储容量为1.26×106电子

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