In this paper, new floating immittance function simulators employing second-generation current controlled conveyors are proposed. The first four of the presented circuits employ only a single grounded capacitor as passive component and can realize either a negative or a positive floating inductor or capacitor. The last two of the proposed circuits do not employ passive components and can realize either negative or positive floating resistances. All of the proposed circuits do not require passive element matching. As an application, a third-order butterworth filter is realized using the proposed positive floating inductance simulator. SPICE simulation results and large signal behavior of the filter are included
A generalized circuit based on five positive polarity second-generation current conveyors is introdu...
In this study, a new general floating element simulator circuit employing two voltage differencing c...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...
This article introduces grounded immittance function simulators and a floating negative immittance f...
New negative parallel immittance simulators using current conveyors are presented. From the basic co...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
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...
A new realization of floating inductance and two R-L impedance simulators are presented, respectivel...
A new circuit employing second-generation current conveyors (CCIIs), and unmatched resistors for con...
Abstract- A novel circuit for realizing floating inductance, floating capacitance, floating frequenc...
In this paper, new topologies for realizing lossless and lossy floating inductors using current cont...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
In this paper, a new active circuit for realizing lossless floating inductor using current controlle...
A generalized circuit based on five positive polarity second-generation current conveyors is introdu...
In this study, a new general floating element simulator circuit employing two voltage differencing c...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...
This article introduces grounded immittance function simulators and a floating negative immittance f...
New negative parallel immittance simulators using current conveyors are presented. From the basic co...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
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...
A new realization of floating inductance and two R-L impedance simulators are presented, respectivel...
A new circuit employing second-generation current conveyors (CCIIs), and unmatched resistors for con...
Abstract- A novel circuit for realizing floating inductance, floating capacitance, floating frequenc...
In this paper, new topologies for realizing lossless and lossy floating inductors using current cont...
A circuit for realizing floating inductance, grounded to a floating admittance converter, floating f...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
In this paper, a new active circuit for realizing lossless floating inductor using current controlle...
A generalized circuit based on five positive polarity second-generation current conveyors is introdu...
In this study, a new general floating element simulator circuit employing two voltage differencing c...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...