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Novel second-order current mode filters using CCIIs
      
With non-ideal CCIIs the design equations are slightly altered owing to CCII port current and voltage tracking errors (εi,v).
      
In this paper, solutions for class A CCIIs are discussed and design arrangements are suggested to achieve improved performance in terms of gain accuracy, impedance level, offset and linearity.
      
Realization of Universal Active Complex Filter Using CCIIs and CFCCIIs
      
In this paper, two universal building blocks for complex filter using CCIIs, CFCCIIs, grounded resistors and grounded capacitors are presented.
      
Generalization of a Theorem for Replacing CCIIs by CFOAs in Current-Mode Circuits
      
Systematic Generation of Current-Mode Linear Transformation Filters Based on Multiple Output CCIIs
      
We discuss techniques for improving bandwidth in these CCIIs, and develop a new CCII structure with larger bandwidth than traditional circuits.
      
The aim of this paper is to give simple design guidelines for the noise evaluation in differential pair-based second generation current conveyors (CCIIs).
      
In this paper a novel single-ended to differential converter topology, based on second generation current conveyors (CCIIs) is proposed.
      
The operation range for the carrier current, bias currents for CCIIs, is ranged from ten to few hundred microamps.
      
CCIIs like all active devices have terminal current limitations that can not be exceeded.
      
A new circuit employing second-generation current conveyors (CCIIs), and unmatched resistors for converting a grounded immittance to the corresponding floating immittance with either positive or negative adjustable multiplier, is presented.
      
The proposed circuit employs only two dual output second-generation current conveyors (DO-CCIIs) and does not require passive element matching.
      
Because of the larger-than-zero input resistance of the CCIIs, the resulting reduced pole-Q values must be accounted for in the design process.
      
 

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