Circuits and Systems

Circuits and Systems

ISSN Print: 2153-1285
ISSN Online: 2153-1293
www.scirp.org/journal/cs
E-mail: cs@scirp.org
"New Electronically-Controllable Lossless Synthetic Floating Inductance Circuit Using Single VDCC"
written by Dinesh Prasad, Javed Ahmad,
published by Circuits and Systems, Vol.5 No.1, 2014
has been cited by the following article(s):
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[11] Electronically Tunable Floating Inductance Simulator Using a Single EX-CCCII
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[12] A Transconductance-Mode Multifunction Filter with High Input and High Output Impedance Nodes Using Voltage Differencing Current Conveyors (VDCCs)
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[13] 2 Proposed Floating Lossless Inductance Simulator
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[14] Comment-An Active Inductor Employing A New FTFNTA
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[15] Actively Simulated Floating Lossless Inductor for Short Range Wireless Communication
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[16] Realization of resistorless floating inductor using modified CDTA
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[17] Novel current mode universal filter and dual-mode quadrature oscillator using VDCC and all grounded passive elements
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[18] Voltage-Mode First-Order Allpass Filter with Grounded Capacitor and Electronic Controllability
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[19] Simple Three-Input Single-Output Current-Mode Universal Filter Using Single VDCC
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[20] Realization of Third-Order Voltage-Mode/Current-Mode Quadrature Oscillator Circuit Employing VDCCs and All Grounded Capacitors
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[21] Single VDCC-Based Electronically Tunable Voltage-Mode Second Order Universal Filter
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[22] Methods for Extension of Tunability Range in Synthetic Inductance Simulators
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[23] Electronically tunable grounded/floating inductance simulators using Z-copy CFCCC
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[24] Reconfigurable Impedance Converter for Synthesis of Integer and Fractional-Order Synthetic Elements
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[25] Simple Three-Input Single-Output Current-Mode Universal Filter Using Single VDCC.
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[26] Simple Realization of Quadrature Sinusoidal Oscillator with Independent Control
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[27] Novel Ms⁁ 2 type FDNR simulation configuration with electronic control and grounded capacitances
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[28] New CM/VM 3rd-order quadrature oscillator using VDCCs
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[29] New Grounded FDNR Simulation Circuit with Electronic Control
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[30] New VDCC based electronically tunable grounded frequency dependent negative resistance simulator employing grounded passive elements
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[31] New Synthetic Grounded FDNR with Electronic Controllability Employing Cascaded VDCCs and Grounded Passive Elements
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[32] VOLTAGE DIFFERENCING CURRENT CONVEYOR (VDCC) AND ITS APPLICATIONS
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[33] Realization of current mode universal filter and a dual-mode single resistance controlled quadrature oscillator employing VDCC and only grounded passive …
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[34] New two-CFOA-based floating immittance simulators
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[35] Electronically Tunable Quadrature Sinusoidal Oscillator with Equal Output Amplitudes during Frequency Tuning Process
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[36] New Grounded Immittance Simulators Employing A Single CFCC
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[37] A New Simulator for Realizing Floating Resistance/Capacitance with Electronic Control
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[38] Discussion on two solutions of inductance simulators using single controlled gain voltage differencing current conveyor and the most important parasitic effects
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[39] Practically implemented electronically controlled CMOS voltage differencing current conveyor
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[40] A universal current mode KHN biquad filter using voltage differencing current conveyor
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[41] Inductance simulator based on dual controlled CMOS voltage differencing current conveyor
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[42] A new configuration for simulating passive elements in floating state employing VDCCs and grounded passive elements
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[43] Reconnection-Less Electronically Reconfigurable Filter with Adjustable Gain Using Voltage Differencing Current Conveyor
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[44] VDCC based voltage mode Tow-Thomas biquad filter
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[45] Sinusoidal Oscillator Realizations Using Modern Electronic Circuit Building Blocks
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[46] A modified VDVTA and its applications to floating simulators and a quadrature oscillator
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[47] VDCC Based Dual-Mode Quadrature Sinusoidal Oscillator with Outputs at Appropriate Impedance Levels
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[48] Novel VDCC based low-pass and high-pass Ladder filters
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[49] Floating capacitance multiplier simulator for grounded RC colpitts oscillator design
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[50] Varieties of Current Conveyors
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[51] Second Generation Applications of Other Types of Current Conveyors in Realizing Synthetic Impedances
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[52] A Voltage mode biquad with lowpass, bandpass and notch outputs using Voltage Differencing Current Conveyor
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[53] Single Voltage Differencing Current Conveyor Based Second-Order Filter Realization
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[54] Návrh kmitočtových filtrů s netradičními složenými aktivními prvky
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[55] VOLTAGE DIFFERENCING CURRENT CONVEYOR AND ITS APPLICATIONS IN IMPLEMENTATION OF AMPLIFIERS AND FILTERS
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[56] New Single VDCC-based Explicit Current-Mode SRCO Employing All Grounded Passive Components
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[57] Novel multi-terminal building blocks with tuning ability and its application in analog signal processing
[58] VDTA-C based voltage mode Tow-Thomas Biquad filter
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