DocumentCode :
3576235
Title :
High speed energy efficient level shifter for multi core processors
Author :
Gundala, Srinivasulu ; Ramanaiah, Venkata K. ; Kesari, Padmapriya
Author_Institution :
Dept. of ECE, SITAMS, Chittoor, India
fYear :
2014
Firstpage :
393
Lastpage :
397
Abstract :
The energy efficiency and power consumption are the two primary and major concerns in present emerging applications like miniaturized bio medical sensors, pace makers, multimedia processors, etc. The energy and power consumption may decreases by multiple ways. The multiple power supply voltage design is an efficient and dominant technique for the reduction of energy and power consumption at processor level. The multi core processors uses level shifters and this level shifter may become burden, when its own energy and power consumption is high, at the same time there is area overhead also. In this paper a high speed Energy efficient level shifter circuit is proposed that performs level up shifting & Level down shifting. The design is designed & simulated using 90nm model files. The proposed one is a unique design, is encompass a level shifter and provision for auto selection of type of shift (Level up/Level down). The proposed level shifter strength has study at signal frequency of 1 MHz, 500 KHz, and 100 KHz with a load capacitance variation from 10fF-60fF. The proposed design has an average delay of 2.8 ns & power consumption is 36.4 nW at 0.4V VIN and 0.18 ns & 16 nW at IV VTN.
Keywords :
low-power electronics; microprocessor chips; multiprocessing systems; biomedical sensors; capacitance 10 fF to 60 fF; energy consumption; energy efficient level shifter circuit; frequency 0.1 MHz; frequency 0.5 MHz; frequency 1 MHz; multicore processors; multimedia processors; pace makers; power 16 nW; power 36.4 nW; power consumption; power supply voltage design; size 90 nm; time 0.18 ns; time 2.8 ns; CMOS integrated circuits; Delays; Energy efficiency; MOSFET; Power demand; Program processors; Energy efficiency; Level shifter; delay; multi core; power dissipation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits, Communication, Control and Computing (I4C), 2014 International Conference on
Print_ISBN :
978-1-4799-6545-8
Type :
conf
DOI :
10.1109/CIMCA.2014.7057830
Filename :
7057830
Link To Document :
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