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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Modular 1 mm src='/images/tex/1030.gif' alt='^{3}'> Die-Stacked Sensing Platform With Low Power I src='/images/tex/732.gif' alt='^{2}'> C Inter-Die Communication and Multi-Modal Energy Harvesting
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A Modular 1 mm src='/images/tex/1030.gif' alt='^{3}'> Die-Stacked Sensing Platform With Low Power I src='/images/tex/732.gif' alt='^{2}'> C Inter-Die Communication and Multi-Modal Energy Harvesting

机译:模块化的1毫米 src =“ / images / tex / 1030.gif” alt =“ ^ {3}”> 具有低功耗I src =“ / images / tex / 732.gif” alt =“ ^ {2}”> C芯片间通信和多模式能量收集

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摘要

A 1.0 mm$^{3}$ general-purpose sensor node platform with heterogeneous multi-layer structure is proposed. The sensor platform benefits from modularity by allowing the addition/removal of IC layers. A new low power ${rm I}^{2}$C interface is introduced for energy efficient inter-layer communication with compatibility to commercial ${rm I}^{2}$C protocols. A self-adapting power management unit is proposed for efficient battery voltage down conversion for wide range of battery voltages and load current. The power management unit also adapts itself by monitoring energy harvesting conditions and harvesting sources and is capable of harvesting from solar, thermal and microbial fuel cells. An optical wakeup receiver is proposed for sensor node programming and synchronization with 228 pW standby power. The system also includes two processors, timer, temperature sensor, and low-power imager. Standby power of the system is 11 nW.
机译:提出了一种具有异构多层结构的1.0 mm ^ {3} $通用传感器节点平台。传感器平台通过允许增加/去除IC层而受益于模块化。引入了新的低功耗$ {rm I} ^ {2} $ C接口,以实现节能的层间通信,并兼容商用$ {rm I} ^ {2} $ C协议。提出了一种自适应电源管理单元,可针对宽范围的电池电压和负载电流进行有效的电池电压下变频。功率管理单元还可以通过监视能量收集条件和收集资源来进行自我调整,并能够从太阳能,热能和微生物燃料电池中进行收集。提出了一种光唤醒接收器,用于传感器节点编程和与228 pW待机功率的同步。该系统还包括两个处理器,计时器,温度传感器和低功率成像仪。系统的待机功率为11 nW。

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