Building a Brain May Mean Going Analog: Analog circuits consume less power per operation than CMOS technologies, and so should prove more efficient.

The article discusses the use of analog circuits in computing in comparison to the use of complementary metal oxide semi-conductor (CMOS) technology. Topics include work led by researcher Hideo Ohno in comparison to work led by researcher Mark Stiles, the use of Josephson junctions using separated s...

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Publicado en:Communications of the ACM Vol. 60; no. 7; pp. 13 - 16
Autor principal: Savage, Neil
Formato: Artículo
Publicado: Association for Computing Machinery Jul2017
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        atl: Building a Brain May Mean Going Analog: Analog circuits consume less power per operation than CMOS technologies, and so should prove more efficient.
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        au: Savage, Neil
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        Analog computer circuits
        Complementary metal oxide semiconductors
        Ohno, Hideo
        Stiles, Mark
        Josephson junctions
        Neural computer circuits
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          Analog computer circuits
          Complementary metal oxide semiconductors
          Ohno, Hideo
          Stiles, Mark
          Josephson junctions
          Neural computer circuits
      ab: The article discusses the use of analog circuits in computing in comparison to the use of complementary metal oxide semi-conductor (CMOS) technology. Topics include work led by researcher Hideo Ohno in comparison to work led by researcher Mark Stiles, the use of Josephson junctions using separated super-conducting material, and neural computing by the firm International Business Machines Corp. (IBM).
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    language: English
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