In this paper, a new quadrature oscillator (QO) and a new lossless grounded inductor simulator (LGIS) are proposed. The proposed QO uses only one negative-type modified differential voltage current conveyor (MDVCC-) with single Z terminal, two resistors and two grounded capacitors. The proposed LGIS employs only one MDVCC- with single Z terminal, two resistors and one grounded capacitor. However, the proposed LGIS requires a single passive component matching condition. Furthermore, a band-pass filter application is derived from the proposed LGIS. A number of simulations based on SPICE program and an experimental test are accomplished in order to demonstrate the performance of all the circuits. (C) 2017 Elsevier GmbH. All rights reserved
In this paper, a novel lossless floating inductor simulator with four resistors, a grounded capacito...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
In this paper, a new quadrature oscillator (QO) and a new lossless grounded inductor simulator (LGIS...
In this paper, a new quadrature oscillator (QO) and a new lossless grounded inductor simulator (LGIS...
A new grounded inductor simulator (GIS) with the property of improved low frequency performance is p...
In this study, two new lossless grounded inductor simulators (GISs) made up of a single plus-type se...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
In this paper, four series lossy inductor simulators including a minimum number of active and passiv...
In this paper novel lossless grounded inductance simulators employing only a single first-generation...
In this paper, two lossy grounded inductor simulators (GISs) and one lossless GIS including an inver...
A new CMOS based current follower (CF) with externally controllable X terminal intrinsic resistor ha...
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper, a novel lossless floating inductor simulator with four resistors, a grounded capacito...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
In this paper, a new quadrature oscillator (QO) and a new lossless grounded inductor simulator (LGIS...
In this paper, a new quadrature oscillator (QO) and a new lossless grounded inductor simulator (LGIS...
A new grounded inductor simulator (GIS) with the property of improved low frequency performance is p...
In this study, two new lossless grounded inductor simulators (GISs) made up of a single plus-type se...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
In this paper, four series lossy inductor simulators including a minimum number of active and passiv...
In this paper novel lossless grounded inductance simulators employing only a single first-generation...
In this paper, two lossy grounded inductor simulators (GISs) and one lossless GIS including an inver...
A new CMOS based current follower (CF) with externally controllable X terminal intrinsic resistor ha...
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper, a novel lossless floating inductor simulator with four resistors, a grounded capacito...
In this article, a novel simulator circuit using two differential voltage current conveyors (DVCCs) ...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...