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<title><![CDATA[Researchers take nanowire transistors vertical, double up on density]]></title>
<link>http://www.engadget.com/2012/06/21/researchers-take-nanowire-transistors-vertical/?utm_medium=feed&amp;utm_source=Feed_Classic&amp;utm_campaign=Engadget</link>
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<![CDATA[
<p> <a href="http://www.engadget.com/2012/06/21/researchers-take-nanowire-transistors-vertical/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget"><img alt="researchers-take-nanowire-transistors-vertical" height="230" src="http://www.blogcdn.com/www.engadget.com/media/2012/06/nanowire-transistor-06-21-12-01-1340268636.jpg" style="margin:16px 12px; width: 230px; height: 253 px; float: right;" /></a></p><p> <a href="http://www.engadget.com/2011/05/04/intel-will-mass-produce-22nm-3d-transistors-for-all-future-cpus/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget">3D silicon</a> is all the rage, and now nanowire transistors have further potential to keep <a href="http://www.engadget.com/2012/06/15/engadget-primed-nanometers/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget">Moore's Law</a> on life support. Researchers at A*STAR have found a way to double the number of transistors on a chip by placing the atomic-scale wires vertically, rather than in the run-of-the-mill planar mode, creating two "wrap-around gates" that put a pair of transistors on a single nanowire. In the future, the tech could be merged with <a href="http://www.engadget.com/2011/12/12/new-quantum-tunneling-transistors-to-make-pcs-less-power-hungry/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget">tunnel field effect transistors</a> -- which use dissimilar semiconductor materials -- to create a markedly denser design. That combo would also burn a miniscule percentage of the power required conventionally, according to the scientists, making it useful for low-powered <a href="http://www.engadget.com/2011/02/11/researchers-from-harvard-and-mitre-announce-worlds-first-progra/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget">processors</a>, logic boards and non-volatile memory, for starters. So, a certain Intel founder might keep being right after all, at least for a <a href="http://www.engadget.com/2012/02/21/single-atom-transistors-point-to-the-future-of-quantum-computers/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget">few years more</a>.</p>

<p><strong><a href="http://www.engadget.com/2012/06/21/researchers-take-nanowire-transistors-vertical/?utm_source=Feed_Classic&amp;utm_medium=feed&amp;utm_campaign=Engadget#comments">Comments</a></strong></p>


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<category>logic gate</category><category>logic gates</category><category>LogicGate</category><category>LogicGates</category><category>moores law</category><category>MooresLaw</category><category>nanowire</category><category>nanowire transistor</category><category>nanowires</category><category>NanowireTransistor</category><category>quantum computing</category><category>QuantumComputing</category><category>tfet</category><category>transistor</category><category>tunnel field effect transistors</category><category>TunnelFieldEffectTransistors</category><category>wrap around gates</category><category>WrapAroundGates</category>

<dc:creator><![CDATA[Steve Dent]]></dc:creator>
<pubDate>Thu, 21 Jun 2012 08:49:00 -0400</pubDate>
<dc:identifier>21|20263133</dc:identifier>

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