DocumentCode :
791690
Title :
Admittance Matrix Models for the Nullor Using Limit Variables and Their Application to Circuit Design
Author :
Haigh, David G. ; Radmore, Paul M.
Author_Institution :
Dept. of Electr. & Electron. Eng., Imperial Coll., London
Volume :
53
Issue :
10
fYear :
2006
Firstpage :
2214
Lastpage :
2223
Abstract :
A framework for symbolic analysis and synthesis of linear active circuits has previously been proposed which is based on the use of admittance matrices and infinity-variables. The notation has the important advantage that it can describe both ideal circuit elements, for which an infinite limit is implied, and nonideal circuit elements for which matrix elements are considered finite. The nullor is a very important circuit element because it can represent the ideal operational amplifier and the ideal transistor. For the nonideal case, the use of finite matrix elements implies that the operational amplifier and transistor are both modelled as a voltage-controlled current source, which is fine if the transistor is a field effect transistor or if the operational amplifier is of the transconductance type, but not otherwise. The purpose of this paper is to apply the infin-variable framework in order to derive alternative models for the nullor that can be used to model voltage, current and transresistance operational amplifiers and bipolar junction transistors. We also show that the infin-variable description of an ideal transistor can include a factor to represent transistor geometry
Keywords :
active networks; bipolar transistor circuits; circuit analysis computing; electric admittance; linear network analysis; matrix algebra; operational amplifiers; admittance matrix models; bipolar junction transistors; circuit design; field effect transistor; finite matrix elements; ideal operational amplifier; ideal transistor; infinity variables; limit variables; linear active circuits; nullor; symbolic analysis; symbolic synthesis; transistor geometry; voltage-controlled current source; Active circuits; Admittance; Circuit synthesis; Equations; FETs; H infinity control; Matrix converters; Operational amplifiers; Transconductance; Voltage; Active circuits; admittance matrix; circuit modelling; nullor; operational amplifier; transistor;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2006.882809
Filename :
1710201
Link To Document :
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