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A feedforward artificial neural network based on quantum effect vector-matrix multipliers.

A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Research Abstract Details 

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  • A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Abstract Text:

    h j levyH J Levy,t c mcgillT C McGill,

    The vector-matrix multiplier is the engine of many artificial neural network implementations because it can simulate the way in which neurons collect weighted input signals from a dendritic arbor. A new technology for building analog weighting elements that is theoretically capable of densities and speeds far beyond anything that conventional VLSI in silicon could ever offer is presented. To illustrate the feasibility of such a technology, a small three-layer feedforward prototype network with five binary neurons and six tri-state synapses was built and used to perform all of the fundamental logic functions: XOR, AND, OR, and NOT.

    A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Publishing Authors By Initials

    hj levyHJ Levy,tc mcgillTC McGill,

    For similar abstracts research abstracts see: abstracts research

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    A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: IEEE transactions on neural networks / a publicati

    VOLUME: 4

    Page Numbers: 427-33

    Journal Abbreviation:

    ISSN: 1045-9227

    DAY: 12

    MONTH: 02

    YEAR: 1993

    A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 101211035

    A feedforward artificial neural network based on quantum effect vector-matrix multipliers. Keywords Mesh Terms:

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    Grant and Affiliation Information for A feedforward artificial neural network based on quantum effect vector-matrix multipliers.

    AFFILIATION: Dept. of Appl. Phys., California Inst. of Technol., Pasadena, CA.

    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: IEEE Trans Neural Netw

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