DocumentCode
82647
Title
A Wide-Range Level Shifter Using a Modified Wilson Current Mirror Hybrid Buffer
Author
Shien-Chun Luo ; Ching-Ji Huang ; Yuan-Hua Chu
Author_Institution
Ind. Technol. Res. Inst., Hsinchu, Taiwan
Volume
61
Issue
6
fYear
2014
fDate
Jun-14
Firstpage
1656
Lastpage
1665
Abstract
Wide-range level shifters play critical roles in ultra- low-voltage circuits and systems. Although state-of-the-art level shifters can convert a subthreshold voltage to the standard supply voltage, they may have limited operating ranges, which restrict the flexibility of dynamic voltage scaling. Therefore, this paper presents a novel level shifter, of which the operating range is from a deep subthreshold voltage to the standard supply voltage and includes upward and downward level conversion. The proposed level shifter is a hybrid structure comprising a modified Wilson current mirror and generic CMOS logic gates. The simulation and measurement results were verified using a 65-nm technology. The minimal operating voltage of the proposed level shifter was less than 200 mV based on the measurement results. In addition to the operating range, the delay, power consumption, and duty cycle of the proposed level shifter were designed for practical applications.
Keywords
CMOS logic circuits; buffer circuits; current mirrors; logic gates; low-power electronics; power convertors; deep subthreshold voltage; delay; downward level conversion; duty cycle; dynamic voltage scaling; generic CMOS logic gates; modified Wilson current mirror; modified Wilson current mirror hybrid buffer; power consumption; size 65 nm; standard supply voltage; ultra-low-voltage circuits; upward level conversion; wide-range level shifter; Delays; Logic gates; MOS devices; Mirrors; Power demand; Standards; Transistors; Current mirror; dynamic voltage scaling; level shifter; process variation; standard cell library; subthreshold circuit;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2013.2295015
Filename
6728720
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