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  • Designing integrated circuits able to work under low-voltage (LV) low-power (LP) condition is currently undergoing a very considerable boom. Reducing voltage supply and power consumption of integrated circuits is crucial factor since in general it ensures the device reliability, prevents overheating of the circuits and in particular prolongs the operation period for battery powered devices. Recently, non-conventional techniques i.e. bulk-driven (BD), floating-gate (FG) and quasi-floating-gate (QFG) techniques have been proposed as powerful ways to reduce the design complexity and push the voltage supply towards threshold voltage of the MOS transistors (MOST). Therefore, this paper presents the operation principle, the advantages and disadvantages of each of these techniques, enabling circuit designers to choose the proper design technique based on application requirements. As an example of application three operational transconductance amplifiers (OTA) base on these non-conventional techniques are pre
  • Designing integrated circuits able to work under low-voltage (LV) low-power (LP) condition is currently undergoing a very considerable boom. Reducing voltage supply and power consumption of integrated circuits is crucial factor since in general it ensures the device reliability, prevents overheating of the circuits and in particular prolongs the operation period for battery powered devices. Recently, non-conventional techniques i.e. bulk-driven (BD), floating-gate (FG) and quasi-floating-gate (QFG) techniques have been proposed as powerful ways to reduce the design complexity and push the voltage supply towards threshold voltage of the MOS transistors (MOST). Therefore, this paper presents the operation principle, the advantages and disadvantages of each of these techniques, enabling circuit designers to choose the proper design technique based on application requirements. As an example of application three operational transconductance amplifiers (OTA) base on these non-conventional techniques are pre (en)
Title
  • A Survey of Non-conventional Techniques for Low-voltage Low-power Analog Circuit Design
  • A Survey of Non-conventional Techniques for Low-voltage Low-power Analog Circuit Design (en)
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  • A Survey of Non-conventional Techniques for Low-voltage Low-power Analog Circuit Design
  • A Survey of Non-conventional Techniques for Low-voltage Low-power Analog Circuit Design (en)
skos:notation
  • RIV/00216305:26220/13:PU103169!RIV14-MPO-26220___
http://linked.open...avai/riv/aktivita
http://linked.open...avai/riv/aktivity
  • P(ED2.1.00/03.0072), P(FR-TI3/485), P(GAP102/11/1379)
http://linked.open...iv/cisloPeriodika
  • 2, IF: 0.6
http://linked.open...vai/riv/dodaniDat
http://linked.open...aciTvurceVysledku
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  • 59126
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  • RIV/00216305:26220/13:PU103169
http://linked.open...riv/jazykVysledku
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  • Low-voltage Low-power analog circuit design, bulk-driven, floating-gate, quasi-floating-gate, OTA. (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...odStatuVydavatele
  • CZ - Česká republika
http://linked.open...ontrolniKodProRIV
  • [D454A8569164]
http://linked.open...i/riv/nazevZdroje
  • Radioengineering
http://linked.open...in/vavai/riv/obor
http://linked.open...ichTvurcuVysledku
http://linked.open...cetTvurcuVysledku
http://linked.open...vavai/riv/projekt
http://linked.open...UplatneniVysledku
http://linked.open...v/svazekPeriodika
  • 2013 (22)
http://linked.open...iv/tvurceVysledku
  • Khateb, Fabian
  • Bay Abo Dabbous, Salma
  • Vlassis, Spyridon
http://linked.open...ain/vavai/riv/wos
  • 000321319100002
issn
  • 1210-2512
number of pages
http://localhost/t...ganizacniJednotka
  • 26220
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