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Innovative Materials, Devices, and CMOS Technologies for Low-Power Mobile Multimedia

机译:适用于低功耗移动多媒体的创新材料,器件和CMOS技术

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摘要

The paradigm and the usage of CMOS are changing, and so are the requirements at all levels, from transistor to an entire CMOS system. The traditional drivers, such as speed and density of integration, are subject to other prerogatives related to variability, manufacturability, power consumption/dissipation (mobile products!), mix of varied digital and analog/RF functions (system-on-chip integration), etc. Controllability of variations and static leakage will add to, and in certain products prevail, over speed and density. Implications at all levels are multiple and are more diverse than just speed and smallness. The goal of the authors has been to see the problem globally from the product level and to place its components in their true proportions. Therefore, we will start with drawing the product-level picture and placing it in a historical perspective. Next, we will review the state of the art, the requirements, and solutions at the level of materials, transistor, and technology. Detailed analysis and potential solutions for prolonging CMOS as the leading information technology are presented in this paper.
机译:从晶体管到整个CMOS系统,CMOS的范式和用法都在变化,各个层次的要求也在变化。诸如速度和集成密度之类的传统驱动器还受其他特权的约束,这些特权涉及可变性,可制造性,功耗/功耗(移动产品!),各种数字和模拟/ RF功能的混合(片上系统集成)。变化和静态泄漏的可控制性会增加速度和密度,在某些产品中占主导地位。在各个层面上的含义是多种多样的,而不仅仅是速度和细小程度。作者的目的是从产品层面全局地看问题,并将其组成部分按真实比例放置。因此,我们将从绘制产品级别的图片并将其置于历史角度开始。接下来,我们将在材料,晶体管和技术水平上回顾最新技术,要求和解决方案。本文介绍了延长CMOS作为领先信息技术的详细分析和可能的解决方案。

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