Title
A Novel CCII-Based Tunable inductance and High Frequency Current-Mode Band Pass Filter Application
Abstract
In this paper, we introduce an implementation of a CCII-based grounded inductance operating in class AB. In order to get tunable characteristics of the design, a translinear CCII configuration is used as a basic block for its high level of controllability. A frequency characterization of the translinear CCII is done. In order to optimize its static and dynamic characteristics, an algorithmic driven methodology is developed ending to the optimal transistor geometries. The optimized CCII has a current bandwidth of 1.28 GHz and a voltage bandwidth of 5.48 GHz. It is applied in the simulated inductance design. We first consider the conventional topology of the grounded inductance based on the generalized impedance converter principle. Making use of the controllable series parasitic resistance at port X in translinear CCII, we design tunable characteristics of the inductance. The effect of current conveyor's nonidealities has been taken into account. A compensation strategy has been presented. It is based on the insertion of a high active CCII-based negative resistance and a very low passive resistance. The compensation strategy does not affect the inductance tuning process. Simulation results show that the proposed inductance can be tuned in the range [0.025 mu H; 15.4 mu H]. The simulated inductance has been applied in a fully integrated tunable high frequency band pass filter to illustrate the versatility of the circuit. The filter is electrically tunable by controlling the conveyor's bias current.
Year
DOI
Venue
2006
10.1142/S0218126606003386
JOURNAL OF CIRCUITS SYSTEMS AND COMPUTERS
Keywords
Field
DocType
current conveyor,second generation,inductance,class AB,tunable
Parasitic element,Inductance,Band-pass filter,Computer science,Frequency band,Control theory,Equivalent series inductance,Negative resistance,Electronic engineering,Bandwidth (signal processing),Current conveyor
Journal
Volume
Issue
ISSN
15
6
0218-1266
Citations 
PageRank 
References 
2
0.44
0
Authors
3
Name
Order
Citations
PageRank
Samir Ben Salem184.25
Dorra Sellami Masmoudi2428.85
Mourad Loulou32416.49