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An Energy-Efficient Level Shifter for Low-Power Applications

Author:
سیدرسول حسینی بلداجی
,
مهدی صابری
,
رضا لطفی
,
Seyed Rasool Hosseini
,
Mehdi Saberi
,
Reza Lotfi
Year
: 2015
Abstract: One effective way to reduce the power consumption of biomedical implantable devices is to employ different supply voltages for different parts of the system depending on the processing speed of each part. This, however, necessitates the use of voltage level converters. This paper presents a power-efficient voltage level-shifting architecture that is capable of converting low levels of input voltages (even subthreshold levels) to high levels of output voltages. In order to reduce the transition time of the output signal and consequently power consumption, the proposed circuit utilizes a diode connected transistor to reduce the swing of the critical node. Moreover, the pull-down network is also improved. Post-layout simulation results of the proposed structure in a 0.18-μm CMOS technology show that at the target design of input low supply voltage of 0.4 V and high supply voltage of 1.8 V, the level-shifter has a propagation delay of 31ns, a static power dissipation of 1.16nW, and a power dissipation of 0.68μW for a 1-MHz input

signal.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3391215
Keyword(s): Level shifter,dual-supply circuits,low power digital integrated circuits,sub-threshold operation
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    An Energy-Efficient Level Shifter for Low-Power Applications

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contributor authorسیدرسول حسینی بلداجیen
contributor authorمهدی صابریen
contributor authorرضا لطفیen
contributor authorSeyed Rasool Hosseinifa
contributor authorMehdi Saberifa
contributor authorReza Lotfifa
date accessioned2020-06-06T14:18:40Z
date available2020-06-06T14:18:40Z
date copyright5/24/2015
date issued2015
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3391215
description abstractOne effective way to reduce the power consumption of biomedical implantable devices is to employ different supply voltages for different parts of the system depending on the processing speed of each part. This, however, necessitates the use of voltage level converters. This paper presents a power-efficient voltage level-shifting architecture that is capable of converting low levels of input voltages (even subthreshold levels) to high levels of output voltages. In order to reduce the transition time of the output signal and consequently power consumption, the proposed circuit utilizes a diode connected transistor to reduce the swing of the critical node. Moreover, the pull-down network is also improved. Post-layout simulation results of the proposed structure in a 0.18-μm CMOS technology show that at the target design of input low supply voltage of 0.4 V and high supply voltage of 1.8 V, the level-shifter has a propagation delay of 31ns, a static power dissipation of 1.16nW, and a power dissipation of 0.68μW for a 1-MHz input

signal.
en
languageEnglish
titleAn Energy-Efficient Level Shifter for Low-Power Applicationsen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsLevel shifteren
subject keywordsdual-supply circuitsen
subject keywordslow power digital integrated circuitsen
subject keywordssub-threshold operationen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1048974.html
conference titleIEEE International Symposium on Circuits and Systemsen
conference locationLisbonfa
identifier articleid1048974
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