In this study, we present a new topology for realizing a grounded inductor employing only a single current conveyor, called a negative-type modified inverting second-generation current conveyor (MICCII-), and a minimum number of passive components, two resistors, and one capacitor. The non-ideality effects of the MICCII-on a simulated inductor are investigated. To demonstrate the performance of the presented inductance simulator, we use it to construct a third order Butterworth high-pass filter and a parallel resonant circuit. Simulation results are given to confirm the theoretical analysis
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with...
In this paper, an implementation of a simulated grounded inductor (SGI) based on a recently develope...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
There is quite a large number of active simulated inductor realizations in the literature, but all o...
There is quite a large number of active simulated inductor realizations in the literature, but all o...
This paper presents a new realization of a grounded simulated inductor using a single dual output se...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper, a new active grounded inductor controlled in current is described. This structure is ...
This paper presents a new realization of a grounded simulated inductor using a single dual output se...
This paper introduces a simulated grounded inductor (SGI) circuit realization based on two terminal ...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper novel lossless and lossy grounded parallel inductance simulators are reported. All gro...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with...
In this paper, an implementation of a simulated grounded inductor (SGI) based on a recently develope...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
Actively simulated grounded inductors have been used in several applications ranging from filter to ...
There is quite a large number of active simulated inductor realizations in the literature, but all o...
There is quite a large number of active simulated inductor realizations in the literature, but all o...
This paper presents a new realization of a grounded simulated inductor using a single dual output se...
New five grounded immittance function simulators are proposed in this paper. The first one is a posi...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper, a new active grounded inductor controlled in current is described. This structure is ...
This paper presents a new realization of a grounded simulated inductor using a single dual output se...
This paper introduces a simulated grounded inductor (SGI) circuit realization based on two terminal ...
In this work, we present a new topology for realizing a grounded inductor employing only a single cu...
In this paper novel lossless and lossy grounded parallel inductance simulators are reported. All gro...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with...
In this paper, an implementation of a simulated grounded inductor (SGI) based on a recently develope...
In this work, we present new topologies for realizing one lossless grounded inductor and two floatin...