A modular 1mm3 die-stacked sensing platform with optical communication and multi-modal energy harvesting

Yoonmyung Lee, Gyouho Kim, S. Bang, Yejoong Kim, Inhee Lee, P. Dutta, D. Sylvester, D. Blaauw
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引用次数: 116

Abstract

Wireless sensor nodes have many compelling applications such as smart buildings, medical implants, and surveillance systems. However, existing devices are bulky, measuring >;1cm3, and they are hampered by short lifetimes and fail to realize the “smart dust” vision of [1]. Smart dust requires a mm3-scale, wireless sensor node with perpetual energy harvesting. Recently two application-specific implantable microsystems [2][3] demonstrated the potential of a mm3-scale system in medical applications. However, [3] is not programmable and [2] lacks a method for re-programming or re-synchronizing once encapsulated. Other practical issues remain unaddressed, such as a means to protect the battery during the time period between system assembly and deployment and the need for flexible design to enable use in multiple application domains.
一个模块化的1mm3模堆叠传感平台,具有光通信和多模态能量收集
无线传感器节点有许多引人注目的应用,如智能建筑、医疗植入物和监视系统。然而,现有设备体积庞大,尺寸>;1cm3,寿命短,无法实现[1]的“智能粉尘”愿景。智能粉尘需要一个毫米级的无线传感器节点,具有永久的能量收集功能。最近,两种特定应用的植入式微系统[2][3]展示了mm3级系统在医疗应用中的潜力。然而,[3]是不可编程的,并且[2]缺乏一种方法来重新编程或重新同步一旦封装。其他实际问题仍未得到解决,例如在系统组装和部署之间的一段时间内保护电池的方法,以及在多个应用领域中使用的灵活设计需求。
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