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Ultra low power all-digital CMOS sensor read out circuit for optically powered biomedical systems

机译:用于光动力生物医学系统的超低功耗全数字CMOS传感器读出电路

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In this paper, an ultra low power all digital sensor read out circuit architecture which requires very low power is proposed. The proposed circuit is targeted for optically powered biomedical applications. The read-out circuit is utilized for the measurement of capacitive and resistive type of transducers. The measurement method is based on the fact that both capacitive and resistive sensors can be utilized to introduce delay in the signal transmission path. The proposed circuit architecture is composed of entirely digital components and it measures the introduced delay using only single input clock signal. The proposed architecture is implemented on UMC 180 nm CMOS technology and simulation results are presented. The proposed circuit operates with 1.2 V supply that is generated by the optical power harvesting and charge pump unit, while consuming 70.4 mW. The results confirm that the proposed circuit can be utilized in optically powered biomedical applications for carrying out capacitive and resistive sensor measurements.
机译:本文提出了一种需要非常低功耗的超低功耗全数字传感器读出电路架构。拟议的电路的目标是光动力生物医学应用。读出电路用于电容式和电阻式换能器的测量。测量方法基于以下事实:电容式传感器和电阻式传感器均可用于在信号传输路径中引入延迟。所提出的电路体系结构完全由数字组件组成,并且仅使用单个输入时钟信号即可测量引入的延迟。所提出的架构是在UMC 180 nm CMOS技术上实现的,并给出了仿真结果。拟议的电路使用1.2 V电源工作,该电源由光功率收集和电荷泵单元产生,而功耗为70.4 mW。结果证实了所提出的电路可以用于光动力生物医学应用中,以执行电容和电阻传感器测量。

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