Department of Electrical Engineering, National Cheng Kung University, Tainan, Taiwan.
Sensors (Basel). 2010;10(3):1782-97. doi: 10.3390/s100301782. Epub 2010 Mar 4.
Presented is a single-ended potentiostat topology with a new interface connection between sensor electrodes and potentiostat circuit to avoid deviation of cell voltage and linearly convert the cell current into voltage signal. Additionally, due to the increased harmonic distortion quantity when detecting low-level sensor current, the performance of potentiostat linearity which causes the detectable current and dynamic range to be limited is relatively decreased. Thus, to alleviate these irregularities, a fully-differential potentiostat is designed with a wide output voltage swing compared to single-ended potentiostat. Two proposed potentiostats were implemented using TSMC 0.18-μm CMOS process for biomedical application. Measurement results show that the fully differential potentiostat performs relatively better in terms of linearity when measuring current from 500 pA to 10 uA. Besides, the dynamic range value can reach a value of 86 dB.
本文提出了一种采用新型接口连接传感器电极和电化学工作站的单端恒电位仪拓扑结构,可避免电池电压偏差,并将电池电流线性转换为电压信号。此外,由于在检测低电平传感器电流时增加了谐波失真量,因此会相对降低限制可检测电流和动态范围的恒电位仪线性度性能。因此,为了减轻这些不规则性,设计了一种具有与单端恒电位仪相比更宽输出电压摆幅的全差分恒电位仪。使用 TSMC 0.18-μm CMOS 工艺实现了两种提出的恒电位仪,用于生物医学应用。测量结果表明,在测量 500pA 至 10uA 的电流时,全差分恒电位仪在电流测量方面具有相对更好的线性度。此外,动态范围值可达到 86dB。