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» Logic design for low-voltage low-power CMOS circuits
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ARVLSI
2001
IEEE
305views VLSI» more  ARVLSI 2001»
13 years 11 months ago
Logic Design Considerations for 0.5-Volt CMOS
As the operating supply voltage for commercial CMOS devices falls below 2 V, research activities are underway to develop CMOS integrated circuits that can operate at supply voltag...
K. Joseph Hass, Jack Venbrux, Prakash Bhatia
DAC
2003
ACM
14 years 8 months ago
A 16-bit mixed-signal microsystem with integrated CMOS-MEMS clock reference
In this work, we report on an unprecedented design where digital, analog, and MEMS technologies are combined to realize a generalpurpose single-chip CMOS microsystem. The converge...
Robert M. Senger, Eric D. Marsman, Michael S. McCo...
ISLPED
2009
ACM
168views Hardware» more  ISLPED 2009»
14 years 1 months ago
Low power circuit design based on heterojunction tunneling transistors (HETTs)
The theoretical lower limit of subthreshold swing in MOSFETs (60 mV/decade) significantly restricts low voltage operation since it results in a low ON to OFF current ratio at low ...
Daeyeon Kim, Yoonmyung Lee, Jin Cai, Isaac Lauer, ...
GLVLSI
2003
IEEE
185views VLSI» more  GLVLSI 2003»
14 years 22 days ago
Noise tolerant low voltage XOR-XNOR for fast arithmetic
With scaling down to deep submicron and nanometer technologies, noise immunity is becoming a metric of the same importance as power, speed, and area. Smaller feature sizes, low vo...
Mohamed A. Elgamel, Sumeer Goel, Magdy A. Bayoumi
VLSID
2005
IEEE
139views VLSI» more  VLSID 2005»
14 years 7 months ago
Variable Input Delay CMOS Logic for Low Power Design
Modern digital circuits consist of logic gates implemented in the complementary metal oxide semiconductor (CMOS) technology. The time taken for a logic gate output to change after...
Tezaswi Raja, Vishwani D. Agrawal, Michael L. Bush...