High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz

We have successfully experimentally integrated graphene interconnects with commercial 0.25 ¿m technology CMOS ring oscillator circuit using conventional fabrication techniques, and demonstrated high speed on-chip graphene interconnects that operates above 1 GHz.

Bibliographic Details
Main Authors: Chen, Xiangyu, Lee, Kyeong-Jae, Akinwande, Deji, Close, Gael F., Yasuda, Shinichi, Paul, Bipul, Fujita, Shinobu, Kong, Jing, Wong, H. -S. Philip
Other Authors: Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Format: Article
Language:en_US
Published: Institute of Electrical and Electronics Engineers (IEEE) 2012
Online Access:http://hdl.handle.net/1721.1/71870
https://orcid.org/0000-0003-0551-1208
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author Chen, Xiangyu
Lee, Kyeong-Jae
Akinwande, Deji
Close, Gael F.
Yasuda, Shinichi
Paul, Bipul
Fujita, Shinobu
Kong, Jing
Wong, H. -S. Philip
author2 Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
author_facet Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Chen, Xiangyu
Lee, Kyeong-Jae
Akinwande, Deji
Close, Gael F.
Yasuda, Shinichi
Paul, Bipul
Fujita, Shinobu
Kong, Jing
Wong, H. -S. Philip
author_sort Chen, Xiangyu
collection MIT
description We have successfully experimentally integrated graphene interconnects with commercial 0.25 ¿m technology CMOS ring oscillator circuit using conventional fabrication techniques, and demonstrated high speed on-chip graphene interconnects that operates above 1 GHz.
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spelling mit-1721.1/718702022-09-23T11:54:32Z High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz Chen, Xiangyu Lee, Kyeong-Jae Akinwande, Deji Close, Gael F. Yasuda, Shinichi Paul, Bipul Fujita, Shinobu Kong, Jing Wong, H. -S. Philip Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science Kong, Jing Lee, Kyeong-Jae Kong, Jing We have successfully experimentally integrated graphene interconnects with commercial 0.25 ¿m technology CMOS ring oscillator circuit using conventional fabrication techniques, and demonstrated high speed on-chip graphene interconnects that operates above 1 GHz. 2012-07-27T15:27:06Z 2012-07-27T15:27:06Z 2010-03 2009-12 Article http://purl.org/eprint/type/ConferencePaper 978-1-4244-5640-6 978-1-4244-5639-0 http://hdl.handle.net/1721.1/71870 Xiangyu Chen et al. “High-speed Graphene Interconnects Monolithically Integrated with CMOS Ring Oscillators Operating at 1.3GHz.” IEEE, 2009. 1–4. © Copyright 2009 IEEE https://orcid.org/0000-0003-0551-1208 en_US http://dx.doi.org/10.1109/IEDM.2009.5424293 2009 IEEE International Electron Devices Meeting (IEDM) Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use. application/pdf Institute of Electrical and Electronics Engineers (IEEE) IEEE
spellingShingle Chen, Xiangyu
Lee, Kyeong-Jae
Akinwande, Deji
Close, Gael F.
Yasuda, Shinichi
Paul, Bipul
Fujita, Shinobu
Kong, Jing
Wong, H. -S. Philip
High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title_full High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title_fullStr High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title_full_unstemmed High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title_short High-speed graphene interconnects monolithically integrated with CMOS ring oscillators operating at 1.3GHz
title_sort high speed graphene interconnects monolithically integrated with cmos ring oscillators operating at 1 3ghz
url http://hdl.handle.net/1721.1/71870
https://orcid.org/0000-0003-0551-1208
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