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On chip post-processed microbattery powered with RF and thermal energy through a power management circuit

机译:通过电源管理电路为RF和热能供电的片上后处理微电池

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摘要

The proposed microsystem architecture comprises two power sources, and a microbattery used as a storage unit; a complete integrated circuit transforms and manages the harvested energy and interfaces the microbattery. The first source is a RF power receiver combined with a classical RF converter. The second micropower source is a IV miniature thermogenerator based on sintered bismuth telluride thermoelements, combined with a micropower DC/DC up converter. The converter architecture includes an innovative power switch control designed for better power efficiency, and improved supply noise performance. The microbattery is a lithium, solid-state, battery post-processed on the integrated circuit. A discharge monitor with 5nW power consumption, along with a 78% efficiency charge unit interfaces the battery. These harvesting and power storage devices are foreseen as a way to provide power on a chip, allowing either permanent active security for smart card applications or sensors supply for monitoring applications for example.
机译:所提出的微系统架构包括两个电源和一个用作存储单元的微电池。完整的集成电路可以转换和管理收集的能量,并与微型电池连接。第一个来源是结合了经典RF转换器的RF功率接收器。第二个微功率源是一个IV型微型热能发电机,它基于烧结的碲化铋热电元件,并结合了一个微功率DC / DC上变频器。转换器架构包括创新的电源开关控制,旨在提高电源效率并改善电源噪声性能。微型电池是在集成电路上经过后处理的固态锂电池。具有5nW功耗的放电监控器以及效率为78%的充电单元与电池连接。可以预见,这些采集和电力存储设备可以为芯片上的电源供电,从而可以为智能卡应用程序提供永久的主动安全性,或者为监视应用程序提供传感器电源。

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