2005Unpublished venueRequires access

High Speed Digital Computation With GaAs Technology

J.F. Jensen, L.E. Larson, M. Waldner

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Abstract

Digital integrated circuit technology operating at gigabit data rates will have a significant impact on the performance of digital systems in the next decade. (GaAs) is a popular choice for this technology due to the high electron mobility and saturated drift velocity it exhibits. Since the first realization of simple logic gates in the early 1970's, GaAs IC technology has matured to the point where LSI circuits with over 100,000 devices are being fabricated. for GaAs technology in high-speed digital systems in the near and long term. Gallium Arsenide

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What this paper is about

Digital integrated circuit technology operating at gigabit data rates will have a significant impact on the performance of digital systems in the next decade. (GaAs) is a popular choice for this technology due to the high electron mobility and saturated drift velocity it exhibits. Since the first realization of simple logic gates in the early 1970's, GaAs IC technology has matured to the point where LSI circuits with over 100,000 devices are being fabricated. for GaAs technology in high-speed digital systems in the near and long term. Gallium Arsenide

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Available abstract

Digital integrated circuit technology operating at gigabit data rates will have a significant impact on the performance of digital systems in the next decade. (GaAs) is a popular choice for this technology due to the high electron mobility and saturated drift velocity it exhibits. Since the first realization of simple logic gates in the early 1970's, GaAs IC technology has matured to the point where LSI circuits with over 100,000 devices are being fabricated. for GaAs technology in high-speed digital systems in the near and long term. Gallium Arsenide

Key concepts: Gallium arsenide, Gigabit, Logic gate, Digital electronics, Computer science, Integrated circuit, Realization (probability), Computation

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