 | 2012 |
| 9 |  | Leland Chang,
Michael Clinton:
Session 13 overview: High-performance embedded SRAM: Memory subcommittee.
ISSCC 2012: 228-229 |
| 2011 |
| 8 |  | Jae-sun Seo,
Bernard Brezzo,
Yong Liu,
Benjamin D. Parker,
Steven K. Esser,
Robert K. Montoye,
Bipin Rajendran,
José A. Tierno,
Leland Chang,
Dharmendra S. Modha,
Daniel J. Friedman:
A 45nm CMOS neuromorphic chip with a scalable architecture for learning in networks of spiking neurons.
CICC 2011: 1-4 |
| 7 |  | Gary S. Ditlow,
Robert K. Montoye,
Salvatore N. Storino,
Sherman M. Dance,
Sebastian Ehrenreich,
Bruce M. Fleischer,
Thomas W. Fox,
Kyle M. Holmes,
Junichi Mihara,
Yutaka Nakamura,
Shohji Onishi,
Robert Shearer,
Dieter Wendel,
Leland Chang:
A 4R2W register file for a 2.3GHz wire-speed POWER™ processor with double-pumped write operation.
ISSCC 2011: 256-258 |
| 6 |  | Nicky Lu,
Leland Chang,
Daisaburo Takashima:
Future system and memory architectures: Transformations by technology and applications.
ISSCC 2011: 530 |
| 5 |  | Chris H. Kim,
Leland Chang:
Guest editors' introduction: Nanoscale Memories Pose Unique Challenges.
IEEE Design & Test of Computers 28(1): 6-8 (2011) |
| 4 |  | Masood Qazi,
Kevin Stawiasz,
Leland Chang,
Anantha P. Chandrakasan:
A 512kb 8T SRAM Macro Operating Down to 0.57 V With an AC-Coupled Sense Amplifier and Embedded Data-Retention-Voltage Sensor in 45 nm SOI CMOS.
J. Solid-State Circuits 46(1): 85-96 (2011) |
| 2010 |
| 3 |  | Masood Qazi,
Kevin Stawiasz,
Leland Chang,
Anantha Chandrakasan:
A 512kb 8T SRAM macro operating down to 0.57V with an AC-coupled sense amplifier and embedded data-retention-voltage sensor in 45nm SOI CMOS.
ISSCC 2010: 350-351 |
| 2009 |
| 2 |  | Daeyeon Kim,
Yoonmyung Lee,
Jin Cai,
Isaac Lauer,
Leland Chang,
Steven J. Koester,
Dennis Sylvester,
David Blaauw:
Low power circuit design based on heterojunction tunneling transistors (HETTs).
ISLPED 2009: 219-224 |
| 2006 |
| 1 |  | Scott Hanson,
Bo Zhai,
Kerry Bernstein,
David Blaauw,
Andres Bryant,
Leland Chang,
Koushik K. Das,
Wilfried Haensch,
Edward J. Nowak,
Dennis Sylvester:
Ultralow-voltage, minimum-energy CMOS.
IBM Journal of Research and Development 50(4-5): 469-490 (2006) |