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A Low Power Fully-Digital Multi-Level Voltage Monitor Operating in a Wide Voltage Range for Energy Harvesting IoT

机译:低功耗全数字多级电压监视器,在宽电压范围内运行的能量收集物联网

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IoT devices operating on harvested energy from the environment need to deal with the variability of the available energy and consequently adapt the application workload. To support this adaptivity, this paper presents a fully-digital multi-level voltage monitor, operating from an unregulated supply voltage down to sub-threshold. The proposed fully-digital voltage monitor eliminates the overhead of analog components and additional power supplies. The proposed design is based on frequency variation with supply voltage of two specifically designed ring oscillators leveraging the dynamic leakage suppression logic. Simulation results of process variations including corners and random mismatch show a maximum standard deviation of 30mV over a supply voltage range from 0.3 V to 0. 9V after one-point calibration. The simulation results also indicate a maximum of 0.3%/°C relative voltage deviation over a temperature range from 0°C to 90°C. The total power consumption of the proposed voltage monitor is 7nW at 0. 5V, designed in a 28-nm FDSOI technology. The designed digital voltage monitor results in the smallest chip area of 293 $mu m^{2}$, as compared to the state-of-the-art.
机译:从环境中运行的IOT设备需要处理可用能量的可变性,从而调整应用程序工作负载。为了支持这种适应性,本文介绍了一个完全数字多级电压监视器,从下降到子阈值的未管电源电压。所提出的全数字电压监视器消除了模拟组件的开销和额外的电源。所提出的设计基于频率变化,电源电压为两个专门设计的环形振荡器,利用动态泄漏抑制逻辑。仿真结果的过程变化包括角和随机失配的仿真结果显示,在一个点校准后,电源电压在电源电压范围内的最大标准偏差为30mV。仿真结果还指示最大0.3%/°C的相对电压偏差在0°C至90°C的温度范围内。所提出的电压监视器的总功耗为7nW,0.5V,设计成28nm FDSOI技术。与最先进的相比,设计的数字电压监视器导致最小的芯片面积为293 $ mu m ^ {2} $。

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