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The origin of the 130 nm value is historical, as it reflects a trend of 70% scaling every 2–3 years. The naming is formally determined by the
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that was reached in the 2000–2001 timeframe by such leading semiconductor companies as
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International
Technology Roadmap for Semiconductors lithography nodes
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International
Technology Roadmap for Semiconductors
57:. Unsourced material may be challenged and removed.
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633:Thoroughbred-B, Thorton, and Barton - 2004-07-28
619:AMD Athlon XP-M Thoroughbred, Barton, and Dublin
522:Processors using 130 nm manufacturing technology
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808:This nanotechnology-related article is a
117:Learn how and when to remove this message
616:AMD Athlon MP Thoroughbred - 2002-08-27
511:manufactured with this process include
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647:Clawhammer and Newcastle - 2003-09-23
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55:adding citations to reliable sources
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600:Prestonia and Gallatin - 2002-02-25
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660:1891ВМ4Я (1891VM4YA) - 2008-04-27
518:family of Pentium III processors.
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613:Thoroughbred, Thorton, and Barton
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715:"Микропроцессор МЦСТ R500S/МЦСТ"
479:semiconductor process technology
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42:needs additional citations for
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812:. You can help Knowledge by
721:(in Russian). Archived from
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689:Микропроцессор Эльбрус/МЦСТ
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593:Northwood-128 - 2002-09-18
549:- October 2002 - June 2003
654:Sledgehammer - 2003-06-30
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477:) process is a level of
780:manufacturing processes
626:Applebred - 2003-08-21
586:Northwood - 2002-01-07
666:1891BM3 - 2008-07-27
529:PowerPC 7447 and 7457
864:Nanotechnology stubs
51:improve this article
744:"CPU from DM&P"
640:Paris - 2004-07-28
507:Some of the first
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18:130 nanometer
814:expanding it
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751:. Retrieved
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727:. Retrieved
723:the original
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698:. Retrieved
696:(in Russian)
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579:- 2003-03-12
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372: ~ 2025
354: – 2022
345: – 2020
336: – 2018
327: – 2016
318: – 2014
309: – 2012
300: – 2010
291: – 2009
282: – 2007
273: – 2005
264: – 2003
255: – 2001
252:
249: – 1999
243: – 1996
237: – 1993
231: – 1990
225: – 1987
219: – 1984
210: – 1981
201: – 1977
192: – 1974
183: – 1971
174: – 1968
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49:Please help
44:verification
41:
658:Elbrus 2000
554:Pentium III
410:Moore's law
253:130 nm
247:180 nm
241:250 nm
235:350 nm
229:600 nm
223:800 nm
208:1.5 μm
137:fabrication
853:Categories
753:2015-09-10
748:Dmp.com.tw
729:2015-09-10
700:2015-09-10
674:References
664:MCST-R500S
404:multi-gate
385:Half-nodes
325:10 nm
316:14 nm
307:22 nm
298:28 nm
289:32 nm
280:45 nm
271:65 nm
262:90 nm
181:10 μm
172:20 μm
77:newspapers
645:Athlon 64
611:Athlon XP
584:Pentium 4
574:Pentium M
559:- 2001-06
527:Motorola
370:2 nm
352:3 nm
343:5 nm
334:7 nm
217:1 μm
199:3 μm
190:6 μm
567:Tualatin
557:Tualatin
540:GameCube
516:Tualatin
504:(ITRS).
425:Industry
719:Mcst.ru
694:Mcst.ru
652:Opteron
638:Sempron
636:AMD K8
631:Sempron
629:AMD K7
591:Celeron
564:Celeron
390:Density
363:Future
91:scholar
771:180 nm
606:- 2001
604:VIA C3
596:Intel
589:Intel
582:Intel
577:Banias
572:Intel
562:Intel
552:Intel
493:, and
475:130 nm
400:Device
205:
135:device
93:
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79:
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64:
788:90 nm
624:Duron
536:Gekko
513:Intel
483:Intel
98:JSTOR
84:books
810:stub
778:CMOS
650:AMD
643:AMD
622:AMD
609:AMD
598:Xeon
545:IBM
534:IBM
531:2002
509:CPUs
495:TSMC
469:The
395:CMOS
70:news
491:IBM
53:by
855::
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