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A Low-Power CMOS Operational Amplifier IC for a Heterogeneous Paper-Based Potentiostat

机译:用于异质纸基恒电位仪的低功耗CMOS运算放大器IC

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Electrochemical biosensing is used to detect specific analytes in fluids, such as bacterial and chemical contaminants. A common implementation of an electrochemical readout is a potentiostat, which usually includes potentiometric, amperometric, and impedimetric detection. Recently several researchers have developed small, low-cost, single-chip silicon-based potentiostats. With the advances in heterogeneous integration technology, low-power potentiostats can be implemented on paper and similar low cost substrates. This paper deals with the design of a low-power paper-based amperometric front-end for a low-cost and rapid detection environment. In amperometric detection a voltage signal is provided to a sensor system, while a small current value generated by an electrochemical redox reaction in the system is measured. In order to measure low current values, the noise of the circuit must be minimized, which is accomplished with a pre-amplification front-end stage, typically designed around an operational amplifier core. An appropriate circuit design for a low-power and low-cost amperometric front-end is identified, taking the heterogeneous integration of various components into account. The operational amplifier core is on a bare custom CMOS chip, which will be integrated onto the paper substrate alongside commercial off-the-shelf electronic components. A general-purpose low-power two-stage CMOS amplifier circuit is designed and simulated for the ams 350 nm 5 V process. After the layout design and verification, the IC was submitted for a multi-project wafer manufacturing run. The simulated results are a bandwidth of 2.4 MHz, a common-mode rejection ratio of 70.04 dB, and power dissipation of 0.154 mW, which are comparable with the analytical values.
机译:电化学生物传感技术用于检测流体中的特定分析物,例如细菌和化学污染物。电化学读数的一种常见实现方式是恒电位仪,它通常包括电位,安培和阻抗检测。最近,一些研究人员开发了小型,低成本,单芯片硅基稳压器。随着异构集成技术的进步,可以在纸和类似的低成本基板上实现低功耗稳压器。本文讨论了一种用于低成本,快速检测环境的低功耗纸基电流表前端的设计。在安培检测中,将电压信号提供给传感器系统,同时测量由系统中的电化学氧化还原反应产生的小电流值。为了测量低电流值,必须将电路的噪声降至最低,这是通过通常在运算放大器内核周围设计的前置放大前端级实现的。考虑到各种组件的异构集成,确定了适用于低功耗和低成本安培计前端的适当电路设计。运算放大器内核位于裸露的定制CMOS芯片上,该芯片将与商用现货电子组件一起集成到纸质基板上。设计了通用的低功耗两级CMOS放大器电路,并针对ams 350 nm 5 V工艺进行了仿真。经过布局设计和验证后,IC被提交用于多项目晶圆制造过程。仿真结果是带宽为2.4 MHz,共模抑制比为70.04 dB,功耗为0.154 mW,与分析值相当。

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