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Understanding CMOS Technology Through TAMTAMS Web

机译:通过TAMTAMS Web了解CMOS技术

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摘要

In the last decades, the CMOS technology has undergone an extraordinary evolution. Because of the continuous scaling process, CMOS transistors are now so small that millions can be easily fitted in a single chip. Shrinking transistor sizes have complex consequences on the performance of both the transistor itself and the system that is based upon it. Understanding and teaching the CMOS scaling process and its consequences on circuits are an increasingly difficult task. Furthermore, the scaling process is reaching an end, due to the continuously growing fabrication costs and the unavoidable physical limits on the smallest size achievable. As a consequence, many emerging technologies, such as carbon nanotubes and nanowires, are being studied as possible CMOS substitutes. Describing and teaching these new technologies, alongside the scaled transistor itself, adopting a complete and well-organized approach is a process that presents further difficulties. To solve these problems, we have started in the past years the development of TAMTAMS, a tool conceived to analyze CMOS circuits, from device to system level. The tool is based on models derived from the literature or, in some cases, internally developed and verified. It allows to analyze the main characteristics of a CMOS transistor, such as currents, threshold voltage, or mobility, considering different technology nodes and parameters, and to understand how they influence the circuits performance. The tool structure is open and modular, allowing, therefore, easy integration of further CMOS technologies and to compare them. In this paper, we present a total overview of the original tool, TAMTAMS Web. While the general concept behind the tool is still the same, the tool was completely rewritten around a Web interface. TAMTAMS Web is freely accessible to students and to any one interested in CMOS technology. As a future development, several post-CMOS technologies will be added to TAMTAMs Web, allowing, therefore, a comparison with the state-of-the-art CMOS. TAMTAMS Web is actively used in the Integrated System Technology (IST) held at the Politecnico di Torino. It defines a new way of learning, because students learn and understand the modern electronic technology both using TAMTAMS Web as an instrument, and being part of the development process, as part of the IST course.
机译:在过去的几十年中,CMOS技术经历了非凡的发展。由于采用了连续缩放工艺,因此CMOS晶体管非常小,以至于可以在单个芯片中轻松安装数百万个晶体管。晶体管尺寸的缩小对晶体管本身以及基于晶体管的系统的性能都会产生复杂的影响。了解和教授CMOS缩放过程及其对电路的影响是一项日益艰巨的任务。此外,由于制造成本的不断增长以及不可避免的对最小尺寸的物理限制,定标过程即将结束。结果,正在研究许多新兴技术,例如碳纳米管和纳米线,它们可能是CMOS的替代品。描述和教授这些新技术以及规模化晶体管本身,采用完整且组织良好的方法是一个过程,这会带来更多的困难。为了解决这些问题,我们在过去的几年中开始开发TAMTAMS,这是一种旨在分析从器件到系统级的CMOS电路的工具。该工具基于从文献中得出的模型,或者在某些情况下由内部开发和验证。它允许分析CMOS晶体管的主要特性,例如电流,阈值电压或迁移率,并考虑不同的技术节点和参数,并了解它们如何影响电路性能。该工具结构是开放和模块化的,因此可以轻松集成其他CMOS技术并进行比较。在本文中,我们对原始工具TAMTAMS Web进行了总体概述。尽管该工具的基本概念仍然相同,但该工具已完全围绕Web界面重写。学生和对CMOS技术感兴趣的任何人都可以免费访问TAMTAMS Web。作为未来的发展,将在TAMTAM的Web中添加几种后置CMOS技术,从而可以与最新的CMOS进行比较。 TAMTAMS Web在都灵理工大学举行的集成系统技术(IST)中得到了积极使用。它定义了一种新的学习方式,因为学生既可以使用TAMTAMS Web作为工具来学习和理解现代电子技术,又可以作为IST课程的一部分而参与开发过程。

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