从数字处理器到模拟构建模块:通过超低电压设计实现新应用

D. Blaauw, D. Sylvester, Yoonmyung Lee, Inhee Lee, S. Bang, Inhee Lee, Yejoong Kim, Gyouho Kim, H. Ghead
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引用次数: 3

摘要

只提供摘要形式。摩尔定律在过去的几十年里受到了广泛的关注。然而,鲜为人知的“贝尔定律”可能对电子系统的转变产生了同样的影响。贝尔定律表明,每十年,一个完整的计算系统的体积就会缩小100倍,而这样的设备的人均数量则会增加。贝尔定律推动了20世纪60年代的大型主机向新千年的小型手持设备的转变。人们普遍认为,按照贝尔定律发展的下一类计算系统是微型传感系统,它将在我们日常生活的许多方面发挥作用。我们特别关注毫米大小的系统,这种几乎看不见的系统将在计算领域开辟许多新的应用领域,例如用于监测生命体征和疾病的医疗植入式设备,监视和进入检测,以及环境监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From digital processors to analog building blocks: Enabling new applications through ultra-low voltage design
Summary form only given. Moore's Law has received much attention over the last decades. However, the lesser known “Bell's law” has potentially had equal impact on the transformation of electronic systems. Bell's law dictates that every decade the size of a complete computing system shrinks in volume by 100x while the number of such devices per person increases. Bell's law has driven the transformation of gigantic mainframes in the 1960s to small handheld devices in the new millenium. It is generally held, that the next class of computing systems on the trajectory of Bell's law are miniature sensing systems that will instrument numerous aspects of our daily lives. In particular, we focus on millimeter sized systems which, being nearly invisible, will open up a host of new application areas in computing such as medical implantable devices for monitoring vital signs and disease, surveillance and entry detection, and environmental monitoring.
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