J. Brandenburg
Intel
3 Papers
69 Citations
J. Brandenburg is an academic researcher from Intel. The author has contributed to research in topics: Integrated injection logic & NMOS logic. The author has an hindex of 3, co-authored 3 publications.
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Papers
An enhanced 130 nm generation logic technology featuring 60 nm transistors optimized for high performance and low power at 0.7 - 1.4 V
Scott E. Thompson,Mohsen Alavi,R. Arghavani,A. Brand,Robert M. Bigwood,J. Brandenburg,B. Crew,Valery M. Dubin,Makarem A. Hussein,P. Jacob,C. Kenyon,E. Lee,B. McIntyre,Z. Ma,Peter K. Moon,P. Nguyen,M. Prince,R. Schweinfurth,Swaminathan Sivakumar,Pete Smith,M. Stettler,S. Tyagi,M. Wei,J. Xu,Simon Yang,M. Bohr +25 more
- 02 Dec 2001
TL;DR: In this paper, Tyagi et al. presented a leading edge 130 nm technology with 6 layers of Cu interconnects and 1.3 V operation, and a 5% linear shrink to reduce the 6-T SRAM cell to 2.00 µm.
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A 130 nm generation logic technology featuring 70 nm transistors, dual Vt transistors and 6 layers of Cu interconnects
Sunit Tyagi,Mohsen Alavi,Robert M. Bigwood,T. Bramblett,J. Brandenburg,W. Chen,B. Crew,Makarem A. Hussein,P. Jacob,C. Kenyon,C. Lo,B. McIntyre,Z. Ma,Peter K. Moon,P. Nguyen,L. Rumaner,R. Schweinfurth,Swaminathan Sivakumar,M. Stettler,Scott E. Thompson,B. Tufts,J. Xu,Simon Yang,M. Bohr +23 more
- 10 Dec 2000
TL;DR: In this paper, a leading edge 130 nm generation logic technology with 6 layers of dual damascene Cu interconnects is reported, where dual Vt transistors are employed with 1.5 nm thick gate oxide and operating at 1.3 V.
A 90 nm logic technology featuring 50 nm strained silicon channel transistors, 7 layers of Cu interconnects, low k ILD, and 1 /spl mu/m/sup 2/ SRAM cell
Scott E. Thompson,Nidhi Anand,Mark Armstrong,C. Auth,B. Arcot,Mohsen Alavi,P. Bai,J. Bielefeld,Robert M. Bigwood,J. Brandenburg,M. Buehler,Stephen M. Cea,V. Chikarmane,C. H. Choi,R. Frankovic,Tahir Ghani,G. Glass,W. Han,Thomas Hoffmann,Makarem A. Hussein,P. Jacob,Ajay Jain,Chia-Hong Jan,Subhash M. Joshi,C. Kenyon,Jason Klaus,S. Klopcic,J. Luce,Z. Ma,B. McIntyre,Kaizad Mistry,Anand Portland Murthy,P. Nguyen,H. Pearson,T. Sandford,R. Schweinfurth,R. Shaheed,Swaminathan Sivakumar,M. Taylor,B. Tufts,Charles H. Wallace,P.-H. Wang,Cory E. Weber,Mark T. Bohr +43 more
- 08 Dec 2002
TL;DR: In this paper, a leading edge 90 nm technology with 1.2 nm physical gate oxide, 50 nm gate length, strained silicon, NiSi, 7 layers of Cu interconnects, and low k carbon-doped oxide (CDO) for high performance dense logic is presented.