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Capacitance Characteristics Behavior of 0.5 Order FC Using CFOA Based FC Multiplier
by
Pandey, Neeta
, Pandey, Rajeshwari
, Verma, Rakesh
in
Capacitance
/ capacitance multipliers
/ capacitance scaling
/ Circuits
/ Computer engineering
/ Current feedback amplifiers
/ current feedback operational amplifier (cfoa)
/ Electrical engineering
/ fractional capacitor
/ Impedance
/ Integrators
/ Metal oxides
/ Multipliers
/ Operational amplifiers
/ Oscillators
/ Scalers
/ Scaling factors
/ Simulation
2022
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Capacitance Characteristics Behavior of 0.5 Order FC Using CFOA Based FC Multiplier
by
Pandey, Neeta
, Pandey, Rajeshwari
, Verma, Rakesh
in
Capacitance
/ capacitance multipliers
/ capacitance scaling
/ Circuits
/ Computer engineering
/ Current feedback amplifiers
/ current feedback operational amplifier (cfoa)
/ Electrical engineering
/ fractional capacitor
/ Impedance
/ Integrators
/ Metal oxides
/ Multipliers
/ Operational amplifiers
/ Oscillators
/ Scalers
/ Scaling factors
/ Simulation
2022
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Capacitance Characteristics Behavior of 0.5 Order FC Using CFOA Based FC Multiplier
by
Pandey, Neeta
, Pandey, Rajeshwari
, Verma, Rakesh
in
Capacitance
/ capacitance multipliers
/ capacitance scaling
/ Circuits
/ Computer engineering
/ Current feedback amplifiers
/ current feedback operational amplifier (cfoa)
/ Electrical engineering
/ fractional capacitor
/ Impedance
/ Integrators
/ Metal oxides
/ Multipliers
/ Operational amplifiers
/ Oscillators
/ Scalers
/ Scaling factors
/ Simulation
2022
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Capacitance Characteristics Behavior of 0.5 Order FC Using CFOA Based FC Multiplier
Journal Article
Capacitance Characteristics Behavior of 0.5 Order FC Using CFOA Based FC Multiplier
2022
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Overview
This paper presents a method for capacitance scaling of Fractional Capacitor (FC) which is implemented using Current Feedback Operational Amplifiers (CFOA) based Capacitance Multipliers (C Multipliers). The circuit facilitates the change in FC value without changing component values in R-C network used for FC modelling or fabricating a new FC. The performance of the proposed circuit is examined for non ideal effects of CFOA. Effective impedance of scaled FC is examined through MATLAB simulations. The functionality of the realized scalers is verified using SPICE simulations where the FC is modelled using domino RC ladder network. Simulation results for impedance magnitude and phase responses are presented for various scaling factors and are compared with theoretical counterparts. The circuit application of proposed FC scaler is demonstrated through implementation of fractional order lossy and lossless integrators; and may be extended to fractional order filters, oscillators, controllers etc.
Publisher
Faculty of Electrical Engineering and Computer Science VSB - Technical University of Ostrava,VSB-Technical University of Ostrava
Subject
MBRLCatalogueRelatedBooks
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