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Electronics: high and low power

Electronics and Power, 1969
Electrical equipment in British warships has traditionally been divided into `high-power' and `low-power' categories, but the rate of progress of electronic devices has been such that the old barriers are being broken down. Among the latest electronic equipment designed for use in naval vessels are new speed controllers and voltage regulators at one ...
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The Future of Low-Power Electronics

2015
The number of integrated transistors has increased so rapidly that it has become evident that a further increase of the performance is limited by the power dissipation. The future IT and electronics, therefore, require more efficient power-reduction solutions.
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Low-Power Electron Devices

2012
Low-power electron devices are extremely important in terms of energy saving by taking advantage of the information and communication technology (ICT) as well as power reduction of electronic apparatuses themselves. Although the low-power approaches should be done in every technological aspect of the ICT technology, the low-power electron device (CMOS)
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Tunnel FETs for low power electronics

2016 IEEE SOI-3D-Subthreshold Microelectronics Technology Unified Conference (S3S), 2016
We report on Tunnel Field-Effect Transistors for low power electronics. Thanks to their potential to reach sub-60mV/dec subthreshold slope, these devices are very attractive for use in circuits with sub-0.5V supply voltage. However, proper device design as well as material choice is not obvious and many implementations have shown larger slope than ...
Anne Vandooren   +9 more
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Low-Power Electronics Design

2018
TECHNOLOGIES AND DEVICES History of Low-Power Electronics Christian Piguet Evolution of Deep Submicron Bulk and SOI Technologies Marc Belleville and Olivier Faynot Leakage in CMOS Nanometric Technologies Antoni Ferre and Joan Figueras Microelectronics, Nanoelectronics, and the Future of Electronics Jing Wang and Mark Lundstrom Advanced Research in On ...
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Ultra low power electronics in the next decade

Proceedings of the 16th ACM/IEEE international symposium on Low power electronics and design, 2010
We are seeing a shift in electronic technology from centralized and high-touch to ubiquitous and low-touch. Semiconductors are enabling intelligent systems to be developed that enable a more immersive environment expanding the role and applications of electronic technology.
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Energy harvesting with low-power electronics

SPIE Proceedings, 2010
In this paper, a novel concept of energy harvesting, applicable to both wired and wireless self-powered low-power electronic devices, is discussed. Types of energy harvesting include solar/optical, thermal, IR, and mechanical. Overall power budgets and control circuitry are discussed, including maximizing Mean Time between Battery Replacement ...
Tomasz Jannson   +7 more
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Advanced materials for low power electronics

Solid-State Electronics, 1996
Abstract This paper will review recent advances in the development of key material structures essential for the cost effective manufacture of promising low power technology candidates such as scaled CMOS [bulk/silicon-on-insulator (SOI)], BiCMOS and HBTs.
P.K. Vasudev, M. Mendicino, T.E. Seidel
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Low power green electronic devices

RSM 2013 IEEE Regional Symposium on Micro and Nanoelectronics, 2013
Summary form only given. The IC chips consume a large amount of energy globally and will continue to increase in the near future. The present IC is a charge-based technology that has logic and memory functions to mimic the human brain. To operate the IC at higher speed, the CMOS inverter of logic IC needs to deliver higher current to charge the ...
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Low power electronics for NEMO detector

AIP Conference Proceedings, 2000
For the realization of the submarine detector NEMO it is necessary to design an acquisition system which is able to capture the signals coming from photo-multipliers (PMs) of the optical modules (OMs) and to satisfy several specifications: low power consumption; few submarine interconnections for reliability and simplicity of the deployment ...
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