"Electronically Controllable Fully-Uncoupled Explicit Current-Mode Quadrature Oscillator Using VDTAs and Grounded Capacitors"
written by Dinesh Prasad, Mayank Srivastava, Data Ram Bhaskar,
published by Circuits and Systems, Vol.4 No.2, 2013
has been cited by the following article(s):
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[18] Minimum Component, Electronically Tunable Simulator for Grounded Inductor with Low Parasitic Effects
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[19] Compact quadrature oscillator with voltage and current outputs using only single VDTA and grounded capacitors
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[21] VDTA BASED GROUNDED TO FLOATING ADMITTANCE ELECTRONICALLY CONVERTER
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[23] A Novel Purely Active Electronically Controllable Configuration for Simulating Resistance in Floating Form
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[28] Novel active PID controller employing VDTA
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[29] New active only scaling configuration for grounded passive elements with electronic scaling facility
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[30] Novel CMOS Current Inverting Differential Input Transconductance Amplifier and Its Application
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[31] New electronically controllable grounded to floating admittance converter with no requirement of passive elements
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[32] Voltage Differencing Transconductance Amplifiers based Mmixed-mode Quadrature Oscillator
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[33] VDTA Based Electronically Tunable Purely Active Simulator Circuit for Realizing Floating Resistance.
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[34] A third order quadrature sinusoidal oscillator based on CMOS/FGCMOS inverters
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[35] Novel current mode electronically tunable lossless integrator employing VDTA
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[36] Voltage differencing transconductance amplifier based resistorless and electronically tunable wave active filter
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[37] VDTA Based Electronically Tunable Purely Active Simulator Circuit for Realizing Floating Resistance
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[40] Third-order sinusoidal oscillator using VDTAs and grounded capacitors with amplitude controllability
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[42] Transadmittance-type Universal Current-Mode Biquad Filter Using VDTAs
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[43] Electronically Tunable Third-Order Quadrature Oscillator Using VDTAS
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[44] Fully uncoupled electronically controllable sinusoidal oscillator employing VD-DIBAs
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