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Infrastructure Circuits for Lifetime Improvement of Ultra-Low Power IoT Devices

机译:用于延长超低功耗IoT设备使用寿命的基础设施电路

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An ultra-low power (ULP), energy-harvesting system-on-chip, that can operate in various application scenarios, is needed for enabling the trillions of Internet-of-Things (IoT) devices. However, energy from the ambient sources is little and system power consumption is high. Circuits and system development require an optimal use of available energy. In this paper, we present circuits that can improve the energy utilization in an IoT device by providing improvements at critical points of the flow of harvested energy. A boost converter circuit, that can harvest energy from 10-mV input voltage and a few nanowatt of input power, makes more harvested energy available for the IoT device. A single-inductor-multiple-output buck-boost converter provides high-efficiency and low-voltage power management solution to put most of the harvested energy for system use. A real time clock and ULP bandgap reference circuit significantly reduce the standby power consumption. The proposed ULP circuits are developed in 130-nm CMOS technology. The combined effects of these circuits and the system design technique can improve the life-time of an example IoT device by over four times in higher power consumption mode and over 70 times in ULP mode.
机译:需要超低功耗(ULP)的能量收集片上系统,该系统可以在各种应用场景中运行,以实现数万亿个物联网(IoT)设备。但是,来自周围环境的能量很少,系统功耗也很高。电路和系统开发需要最佳利用可用能量。在本文中,我们介绍了可通过在收集的能量流的关键点进行改进来改善IoT设备中能量利用的电路。升压转换器电路可以从10mV输入电压和几纳瓦的输入功率中收集能量,从而使更多的收集能量可用于IoT设备。单电感多输出降压-升压转换器提供了一种高效,低压的电源管理解决方案,可以将大部分收集的能量用于系统使用。实时时钟和ULP带隙基准电路大大降低了待机功耗。拟议的ULP电路是在130纳米CMOS技术中开发的。这些电路和系统设计技术的共同作用可以将示例物联网设备的寿命在高功耗模式下提高四倍以上,在ULP模式下提高70倍以上。

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