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A Self-Starting 70 mV-1 V, 65% Peak Efficient, TEG Energy Harvesting Chip with 5 ms Startup Time

机译:具有5 ms启动时间的自启动70 mV-1 V,峰值效率为65%的TEG能量采集芯片

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This paper presents design and measurement results of a DC DC converter, intended to harvest energy from a thermo-electric generator (TEG). The prototype chip was fabricated in 130 nm CMOS technology. The designed converter can extract maximum power from a TEG, without using an input capacitor (C-IN) or a closed loop maximum peak power tracking circuit to regulate the input voltage (V-IN). The converter uses a low voltage oscillator coupled with charge pump to directly power the auxiliary circuits; and auxiliary circuits drives two inductors in two half cycles of a clock pulse. The measurement has been performed by using a TEG, and a voltage source (50-200 mV) with a series resistance of 5 ohms. The result shows that the prototype can self-starts from 70 mV with 5 ms startup time and can work up to a minimum of 50 mV; and can extract, 57.2% (at 50 mV) to 65% (at 200 mV), of the available power.
机译:本文介绍了旨在从热电发电机(TEG)收集能量的DC DC转换器的设计和测量结果。原型芯片采用130 nm CMOS技术制造。设计的转换器可以从TEG提取最大功率,而无需使用输入电容器(C-IN)或闭环最大峰值功率跟踪电路来调节输入电压(V-IN)。转换器使用低压振荡器和电荷泵直接为辅助电路供电。辅助电路在一个时钟脉冲的两个半周期内驱动两个电感器。通过使用TEG和具有5欧姆串联电阻的电压源(50-200 mV)进行测量。结果表明,该原型可以从70 mV自启动,启动时间为5 ms,最高可工作至50 mV。并可以提取57.2%(在50 mV时)至65%(在200 mV时)的可用功率。

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