A new realization of floating inductance and two R-L impedance simulators are presented, respectively employing three and two first generation current conveyors (CCI)s as active elements. All of the circuits use only plus type (CCI+)s and minimum number of passive elements. The circuits do not require component matching. The performances of the circuits are tested using SPICE simulation program
In this paper, a floating inductance and frequency-dependent negative resistance (FDNR) depending on...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
In this paper, five novel and minimum number count floating inductor simulators (FIs) are proposed. ...
In this paper, an active-C circuit for realizing lossless floating inductor (FI) or series/parallel ...
In this paper, an active-C circuit for realizing lossless floating inductor (FI) or series/parallel ...
In this paper, new floating immittance function simulators employing second-generation current contr...
In this paper, a new active circuit for realizing lossless floating inductor using current controlle...
In this paper, new topologies for realizing lossless and lossy floating inductors using current cont...
In this paper a new floating inductance simulator employing only active elements is proposed. The pr...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
In this paper, a novel lossless floating inductor simulator with four resistors, a grounded capacito...
This article introduces grounded immittance function simulators and a floating negative immittance f...
Abstract- A novel circuit for realizing floating inductance, floating capacitance, floating frequenc...
A new circuit employing second-generation current conveyors (CCIIs), and unmatched resistors for con...
A simple circuit for a lossless floating inductor is described. The circuit is designed using the cu...
In this paper, a floating inductance and frequency-dependent negative resistance (FDNR) depending on...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
In this paper, five novel and minimum number count floating inductor simulators (FIs) are proposed. ...
In this paper, an active-C circuit for realizing lossless floating inductor (FI) or series/parallel ...
In this paper, an active-C circuit for realizing lossless floating inductor (FI) or series/parallel ...
In this paper, new floating immittance function simulators employing second-generation current contr...
In this paper, a new active circuit for realizing lossless floating inductor using current controlle...
In this paper, new topologies for realizing lossless and lossy floating inductors using current cont...
In this paper a new floating inductance simulator employing only active elements is proposed. The pr...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
In this paper, a novel lossless floating inductor simulator with four resistors, a grounded capacito...
This article introduces grounded immittance function simulators and a floating negative immittance f...
Abstract- A novel circuit for realizing floating inductance, floating capacitance, floating frequenc...
A new circuit employing second-generation current conveyors (CCIIs), and unmatched resistors for con...
A simple circuit for a lossless floating inductor is described. The circuit is designed using the cu...
In this paper, a floating inductance and frequency-dependent negative resistance (FDNR) depending on...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
In this paper, five novel and minimum number count floating inductor simulators (FIs) are proposed. ...