首页> 外文会议>VLSI Design, Automation and Test, 2009. VLSI-DAT '09 >Microscopic wireless - Exploring the boundaries of ultra low-power design
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Microscopic wireless - Exploring the boundaries of ultra low-power design

机译:微观无线-探索超低功耗设计的边界

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Summary form only given. The continuous reduction of size, and cost of wireless transceivers pretty soon will allow for every appliance, component or object to be networked (ldquoThe Internet of Thingsrdquo). However, a substantial reduction in power dissipation by one or two orders of magnitude is still necessary. In this presentation, we identify the opportunities and challenges offered by technology evolution. While CMOS scaling offers some advantages, it also comes with additional burdens such as leakage and variability. Even more, energy per operation may not reduce very much once we reach the 32 nm node. Fortunately, other emerging devices such as RF-NEMS resonators or other elements emerging from the vast cauldron of nanotechnology may create new opportunities. We will show some example of ULP wireless transceivers created through a combination of aggressive technology utilization, use of novel technologies and innovative architectures. We believe that this combination is what it takes to continue the promise of electronics scaling.
机译:仅提供摘要表格。无线收发器的尺寸不断缩小和成本不断降低,很快将使每个设备,组件或对象都可以联网(“物联网”)。然而,仍然需要将功耗的实质性降低一两个数量级。在本演示中,我们确定了技术发展所带来的机遇和挑战。尽管CMOS缩放具有一些优势,但也带来了额外的负担,例如泄漏和可变性。更重要的是,一旦到达32 nm节点,每次操作的能量可能不会减少很多。幸运的是,其他新兴设备,例如RF-NEMS谐振器或从巨大的纳米技术大锅中出现的其他元件,可能会创造新的机会。我们将展示一些ULP无线收发器的示例,这些示例是通过积极地利用技术,使用新颖技术和创新架构而创建的。我们相信,这种结合才是继续实现电子定标的前提。

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