将阈值逻辑和后cmos技术整合到本科逻辑设计课堂的知识模块

J. Das, S. Bhanja
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引用次数: 1

摘要

这项工作是在“核心”传统逻辑设计课堂上介绍先进逻辑及其应用和一些后cmos技术实现的努力。在这个简短的一讲的知识模块中,我们的目标是阈值逻辑和它最流行的应用,神经计算。本文还讨论了一种特殊类型的阈值函数,并给出了一种后cmos实现方法。介绍了一种后cmos存储器,称为自旋转移转矩磁阻RAM (STT-MRAM)。该模块的目的是鼓励学生进行研究,并激励他们选修高级逻辑和后cmos纳米技术。通过模块前和模块后的调查收集学生的反馈。反馈表明,所有参与者都对该模块感到满意,并且该模块成功地实现了其目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel knowledge module to integrate threshold logic and post-CMOS technology into undergraduate logic design classroom
This work is an effort to introduce advanced logic, their applications and some of their post-CMOS technological implementations in “core” conventional logic design classroom. In this short one-lecture knowledge module, we aimed at threshold logic and its most popular application, the neural computing. Majority, a special type of threshold function was also discussed and one of its post-CMOS implementation was shown. A post-CMOS memory called Spin Transfer Torque-Magnetoresistive RAM (STT-MRAM) was also introduced. The purpose of the module was to encourage research among students and to motivate them towards electives in advanced logic and post-CMOS nanotechnologies. Students' feedback were collected through a pre and a post-module survey. The feedback suggest that all the participants were satisfied with the module and the module was successful in fulfilling its objectives.
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