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(Invited) Technology Breakthrough by Ferroelectric HfO2 for Low Power Logic and Memory Applications
ECS Transactions
◽
10.1149/08602.0021ecst
◽
2018
◽
Vol 86
(2)
◽
pp. 21-25
Author(s):
Masaharu Kobayashi
Keyword(s):
Low Power
◽
Memory Applications
◽
Low Power Logic
Download Full-text
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Cited By
References
(Invited) Technology Breakthrough by Ferroelectric HfO2 for Low Power Logic and Memory Applications
ECS Meeting Abstracts
◽
10.1149/ma2018-02/16/695
◽
2018
◽
Keyword(s):
Low Power
◽
Memory Applications
◽
Low Power Logic
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Scaled III-V-on-Si transistors for low-power logic and memory applications
Japanese Journal of Applied Physics
◽
10.35848/1347-4065/abd707
◽
2020
◽
Author(s):
Daniele Caimi
◽
Marilyne Sousa
◽
Siegfried Karg
◽
Cezar Zota
Keyword(s):
Low Power
◽
Memory Applications
◽
Low Power Logic
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Impacts of Ferroelectric Parameters on the Electrical Characteristics of Fefet for Low-Power Logic and Memory Applications
2021 China Semiconductor Technology International Conference (CSTIC)
◽
10.1109/cstic52283.2021.9461542
◽
2021
◽
Author(s):
Kaifeng Wang
◽
Qianqian Huang
◽
Chang Su
◽
Liang Chen
◽
Mengxuan Yang
◽
...
Keyword(s):
Low Power
◽
Electrical Characteristics
◽
Memory Applications
◽
Low Power Logic
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Partition Based Product Term Retiming for Reliable Low Power Logic Structure
Advances in Intelligent Systems and Computing - Advances in Information and Communication Networks
◽
10.1007/978-3-030-03402-3_13
◽
2018
◽
pp. 178-189
Author(s):
S. Jalaja
◽
A. M. Vijaya Prakash
Keyword(s):
Low Power
◽
Product Term
◽
Low Power Logic
◽
Logic Structure
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Selectively clocked skewed logic (SCSL): a robust low-power logic style for high-performance applications
ISLPED'01: Proceedings of the 2001 International Symposium on Low Power Electronics and Design (IEEE Cat. No.01TH8581)
◽
10.1109/lpe.2001.945414
◽
2002
◽
Cited By ~ 3
Author(s):
N. Sirisantana
◽
A. Cao
◽
S. Davidson
◽
Cheng-Kok Koh
◽
K. Roy
Keyword(s):
Low Power
◽
High Performance
◽
Low Power Logic
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Low power and stable resistive switching in graphene oxide-based RRAM embedded with ZnO nanoparticles for nonvolatile memory applications
Journal of Materials Science Materials in Electronics
◽
10.1007/s10854-021-06287-6
◽
2021
◽
Author(s):
Rakesh Singh
◽
Ravi Kumar
◽
Anil Kumar
◽
Dinesh Kumar
◽
Mukesh Kumar
Keyword(s):
Graphene Oxide
◽
Low Power
◽
Resistive Switching
◽
Zno Nanoparticles
◽
Nonvolatile Memory
◽
Memory Applications
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Opportunities and Challenges of Emerging Nanotechnologies for Future High-Speed and Low-Power Logic Applications
2005 IEEE Conference on Electron Devices and Solid-State Circuits
◽
10.1109/edssc.2005.1635194
◽
2006
◽
Cited By ~ 2
Author(s):
R. Chau
Keyword(s):
Low Power
◽
High Speed
◽
Low Power Logic
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Novel III-N heterostructure devices for low-power logic and more
2016 IEEE 16th International Conference on Nanotechnology (IEEE-NANO)
◽
10.1109/nano.2016.7751336
◽
2016
◽
Cited By ~ 3
Author(s):
P. Fay
◽
W. Li
◽
L. Cao
◽
K. Pourang
◽
S. M. Islam
◽
...
Keyword(s):
Low Power
◽
Low Power Logic
◽
Heterostructure Devices
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High-Performance Flexible ${\rm Ni}/{\rm Sm}_{2}{\rm O}_{3}/{\rm ITO}$ ReRAM Device for Low-Power Nonvolatile Memory Applications
IEEE Electron Device Letters
◽
10.1109/led.2013.2272455
◽
2013
◽
Vol 34
(9)
◽
pp. 1145-1147
◽
Cited By ~ 12
Author(s):
Somnath Mondal
◽
Ching-Hao Chueh
◽
Tung-Ming Pan
Keyword(s):
Low Power
◽
Nonvolatile Memory
◽
High Performance
◽
Memory Applications
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High-Speed, Low-Power Logic ICs using Quasi-Normally-Off GaAs MESFETs
10.1109/esscirc.1980.5468776
◽
1980
◽
Author(s):
G. Nuzillat
◽
G. Bert
◽
F. Damay-Kavala
◽
C. Arnodo
Keyword(s):
Low Power
◽
High Speed
◽
Low Power Logic
Download Full-text
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