Session T4A: Tutorial: Tiny DC-sourced single inductor charge-supply ICs

G. Rincón-Mora
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Abstract

A challenge wireless micro-sensors and other microsystems face is short lifetime, because tiny batteries store little energy. Although miniaturized fuel cells and atomic sources store more energy than lithium ions and super capacitors, they source less power, so they cannot power as many functions. Unfortunately, their power-dense counterparts cannot sustain life for long. Thankfully, the environment also holds vast amounts of energy, and of typical sources, like light, motion, temperature, and radiation, sunlight produces the highest power density, but only when available. The fact is, combining miniaturized fuel or photovoltaic cells with tiny lithium-ion batteries or super capacitors can be more compact, reliable, and longer lasting than any single technology. Managing a hybrid system of this sort to supply a microwatt application, however, requires an intelligent, low-loss dc-dc power converter. This talk discusses the state of the art in miniaturized charger-supply systems that draw power from an energy-dense dc source and supplementary power from a battery to supply a load and recharge the battery with excess power from the energy-dense source.
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讲座T4A:微型直流单电感充电电源集成电路
无线微传感器和其他微系统面临的一个挑战是寿命短,因为微小的电池储存的能量很少。尽管小型化的燃料电池和原子源比锂离子和超级电容器储存更多的能量,但它们产生的能量更少,因此无法为许多功能提供动力。不幸的是,它们的能量密集的同类不能长时间维持生命。值得庆幸的是,环境也拥有大量的能量,而典型的能源,如光、运动、温度和辐射,阳光产生最高的功率密度,但只有在可用的情况下。事实上,将小型燃料电池或光伏电池与小型锂离子电池或超级电容器相结合,可以比任何单一技术更紧凑、更可靠、更持久。然而,管理这种混合系统以提供微瓦应用,需要一个智能的,低损耗的dc-dc电源转换器。本讲座讨论了微型充电器供电系统的最新进展,该系统从能量密集的直流电源和电池的补充电源中获取电力,为负载供电,并用能量密集源的多余电力为电池充电。
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