DocumentCode
1182791
Title
A novel current-mode instrumentation amplifier based on operational floating current conveyor
Author
Ghallab, Yehya H. ; Badawy, Wael ; Kaler, Karan V.I.S. ; Maundy, Brent J.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Calgary, Alta., Canada
Volume
54
Issue
5
fYear
2005
Firstpage
1941
Lastpage
1949
Abstract
This paper presents a novel current-mode instrumentation amplifier (CMIA) that utilizes an operational floating current conveyor (OFCC) as a basic building block. The OFCC, as a current-mode device, shows flexible properties with respect to other current- or voltage-mode circuits. The advantages of the proposed CMIA are threefold. First, it offers a higher differential gain and a bandwidth that is independent of gain, unlike a traditional voltage-mode instrumentation amplifier. Second, it maintains a high common-mode rejection ratio (CMRR) without requiring matched resistors, and finally, the proposed CMIA circuit offers a significant improvement in accuracy compared to other current-mode instrumentation amplifiers based on the current conveyor. The proposed CMIA has been analyzed, simulated, and experimentally tested. The experimental results verify that the proposed CMIA outperforms existing CMIAs in terms of the number of basic building blocks used, differential gain, and CMRR.
Keywords
current conveyors; current-mode circuits; instrumentation amplifiers; operational amplifiers; bandwidth; common-mode rejection ratio; current-mode circuit; current-mode instrumentation amplifier; differential gain; operational amplifier; operational floating current conveyor; voltage-mode circuit; Analytical models; Bandwidth; Circuit simulation; Circuit testing; Differential amplifiers; Flexible printed circuits; Instruments; Operational amplifiers; Resistors; Voltage; Common-mode rejection ratio (CMRR); current conveyor; current-mode circuits; instrumentation amplifier; operational amplifier; operational floating current conveyor (OFCC);
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2005.854254
Filename
1514647
Link To Document