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Low-power electronics

IEEE Design & Test of Computers, 1994
Plans for a government sponsored research program call for the development of a new electronics technology base for hand-size information systems. This base will enable the design and implementation of semiconductor technologies that consume two orders of magnitude less power than conventional technology would have allowed.
Zachary J. Lemnios, Kaigham J. Gabriel
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Energy harvesting technologies for low‐power electronics

Transactions on Emerging Telecommunications Technologies, 2012
ABSTRACTPower consumption is one of the most critical issues when designing low‐cost electronic devices, such as sensing nodes in wireless sensor networks. To support their operation, such systems usually contain a battery; however, when the battery has consumed all its energy, the node (e.g. the sensor) must be retrieved and the battery replaced.
Unai Alvarado   +5 more
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Batteries for low power electronics

Proceedings of the IEEE, 1995
Progress in battery technology is closely tied to that in electronics, however, it is slow in comparison. Growth in new systems once in production, is also slow, depending upon the development of new devices which need their performance characteristics. This has been true, in particular for lithium cells operating at 3 V.
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Devices for Low Power Electronics

2009
The introduction of the concept of integrated circuits in 1958 by Jack Kilby and Robert Noyce enabled the electronics industry to achieve a phenomenal growth over the past several decades. The dimensions of semiconductor devices have been continuously shrinking to meet the needed requirements of high speed and low power as demanded by the circuit ...
Syed Kamrul Islam   +1 more
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High Performance and Low Power Electronics on Flexible Substrate

2007 44th ACM/IEEE Design Automation Conference, 2007
We propose a design and optimization methodology for high performance and ultra low power digital applications on flexible substrate using low temperature polycrystalline silicon thin film transistor (LTPS TFT). We show that by using ultra-thin bodies and minimizing the mid-gap trap density by hydrogenation, LTPS TFTs (in 200 nm technology) can achieve
Jing Li 0073   +3 more
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