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A Microwatt Dual-Mode Electrochemical Sensing Current Readout With Current-Reducer Ramp Waveform Generation

机译:具有电流减速器斜坡波形发电的微型双模电化学感应电流读数

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An electrochemical sensing chip with an integrated current-reducer pattern generator and a current-mirror based low-noise chopper-stabilization potentiostat circuit is presented. The pattern generator, utilizing the current reducer technique and pseudo resistors, creates a sub-Hz ramp signal for the cyclic voltammetric (CV) measurement without large-size passive components. The proposed design adopts the chopper-stabilization and low-noise biasing technique for the potentiostat and a counter-based time-to-digital converter to reduce the amplitude noise effects and to convert the sensing current signal to digital codes for further data processing. The design is fabricated using a 0.18-m CMOS process and achieves a 41pA current resolution in the current range of 5A while maintaining the R-2 linearity of 0.998. The system consumes 16W from a 1.2V supply when a 5A sensing current is detected. The power efficiency of the readout interface is 0.31, and the sensing current dynamic range is 108dB. The design is fully integrated into a single chip and is successfully tested in the dual-mode (CA/CV) measurements with commercial gold electrodes in a potassium ferricyanide solution in sub-millimolar concentrations.
机译:提出了一种具有集成电流减速器图案发生器和基于电流镜的低噪声斩波稳定电位电路的电化学传感芯片。利用电流减速器技术和伪电阻器的图案发生器为循环伏安(CV)测量的子Hz斜坡信号,而无需大尺寸的无源元件。所提出的设计采用促进稳定和低噪声偏置技术,以及对基于反对数字转换器的低噪声偏置技术,以降低幅度噪声效应,并将感测电流信号转换为数字代码以进行进一步的数据处理。使用0.18-m CMOS工艺制造设计,并在5A的电流范围内实现41Pa电流分辨率,同时保持R-2线性为0.998。当检测到5A感测电流时,系统从1.2V电源中消耗16W。读出界面的功率效率为0.31,传感电流动态范围为108dB。该设计完全集成到单个芯片中,并在亚毫摩尔浓度的铁氰化物溶液中的商用金电极成功地测试。

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