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Noise canceling chopper stabilized front-end for electrochemical biosensors with improved dynamic range

机译:用于动态范围改善的电化学生物传感器的降噪斩波稳定前端

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This paper presents a front-end circuit for electrochemical biosensors used in applications like DNA sensing. Novelty in this work lies in the front-end architecture which uses noise canceling (NC) combined with chopper stabilization (CS) for rejecting 1/ƒ noise and to our knowledge, a front-end using the principle of noise canceling for 1/ƒ noise rejection has not been reported. Motivation for using this front-end are: 1) The circuit exhibits low noise performance with its sensitivity not being limited by 1/ƒ noise thanks to noise canceling and chopping. 2) The canceling property in this topology is used effectively to achieve improved linearity and higher dynamic range (DR) in addition to 1/ƒ noise rejection. The fully differential front-end circuit is designed in 0.18 µm CMOS process and consumes 46 µA while operating on 1.8 V supply voltage. Based on the simulation results, a DR improvement of greater than 10 dB is achieved by the use of canceling technique.
机译:本文提出了一种用于DNA生物传感等电化学生物传感器的前端电路。这项工作的新颖之处在于前端架构,该架构使用降噪(NC)结合斩波稳定(CS)来抑制1 /ƒ噪声,而据我们所知,前端体系结构使用了1 /ƒ噪声消除的原理没有噪音抑制的报道。使用此前端的动机是:1)该电路表现出低噪声性能,由于噪声消除和斩波,其灵敏度不受1 /ƒ噪声的限制。 2)除1 /ƒ噪声抑制外,此拓扑中的抵消特性可有效地用于实现改善的线性度和更高的动态范围(DR)。全差分前端电路采用0.18 µm CMOS工艺设计,在1.8 V电源电压下工作时消耗46 µA电流。根据仿真结果,通过使用抵消技术可将DR改善大于10 dB。

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