2003•Unpublished venueRequires access

A case for CMOS/nano co-design

Matthew M. Ziegler, Mircea R. Stan

Open publisher page 12 citations

Abstract

The challenge of extending Moore's Law past the physical and economic barriers of present semiconductor technologies calls for novel nanoelectronic solutions. Circuits composed of mixed silicon semiconductors and nanoelectronics can provide a means for gradually switching technology paradigms. We suggest a design methodology to accompany this concept. Furthermore, we explore design tradeoffs for a nanoscale crossbar technology that supports CMOS/nano co-design.

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What this paper is about

The challenge of extending Moore's Law past the physical and economic barriers of present semiconductor technologies calls for novel nanoelectronic solutions. Circuits composed of mixed silicon semiconductors and nanoelectronics can provide a means for gradually switching technology paradigms. We suggest a design methodology to accompany this concept. Furthermore, we explore design tradeoffs for a nanoscale crossbar technology that supports CMOS/nano co-design.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The challenge of extending Moore's Law past the physical and economic barriers of present semiconductor technologies calls for novel nanoelectronic solutions. Circuits composed of mixed silicon semiconductors and nanoelectronics can provide a means for gradually switching technology paradigms. We suggest a design methodology to accompany this concept. Furthermore, we explore design tradeoffs for a nanoscale crossbar technology that supports CMOS/nano co-design.

Key concepts: Nanoelectronics, CMOS, Crossbar switch, Nanoscopic scale, Moore's law, Integrated circuit design, Semiconductor, Silicon

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