Title
Low-Power Multiple-Valued Source-Coupled Logic Circuits Using Dual-Supply Voltages for a Reconfigurable VLSI
Abstract
A novel dual-supply-voltage technique is proposed for a low-power multiple-valued VLSI without decreasing speed. A high-supply voltage is required to generate multiple-valued voltage signals in a current-voltage converter, and a low-supply voltage is used to generate binary voltage signals in a comparator whose speed is not decreased by the low-supply voltage. Moreover, level shifters used to prevent direct-path currents in the conventional dual-VDD CMOS circuits are not necessary to be provided because of constant current flow in the multiple-valued source-coupled logic circuits. As a result, the power consumption of a cell using dual-supply voltages for a multiple-valued reconfigurable VLSI is reduced to 79% in comparison with that of the cell using a single-supply voltage.
Year
DOI
Venue
2013
10.1109/ISMVL.2013.36
ISMVL
Keywords
Field
DocType
multiple-valued voltage signal,logic circuits,dual-supply-voltage technique,dual-supply voltage,multiple-valued reconfigurable vlsi,power consumption,convertors,high-supply voltage,low-supply voltage,binary voltage signal,low-power electronics,dual-supply voltages,direct-path currents prevention,multiple-valued source-coupled logic circuit,vlsi,constant current flow,low-power multiple-valued source-coupled logic circuits,comparators (circuits),source-coupled logic,single-supply voltage,low-power multiple-valued vlsi,reconfigurable vlsi,comparator,current-voltage converter,level shifters,binary voltage signals,multiple-valued voltage signals,multiple-valued reconfigurable,low power electronics
Logic gate,CPU core voltage,Computer science,Voltage optimisation,Mesh analysis,Electronic engineering,CMOS,Electrical engineering,Integrated injection logic,Dropout voltage,Voltage divider
Conference
ISSN
ISBN
Citations 
0195-623X E-ISBN : 978-0-7695-4976-7
978-0-7695-4976-7
1
PageRank 
References 
Authors
0.35
11
2
Name
Order
Citations
PageRank
Xu Bai1379.94
Michitaka Kameyama243199.93