Z-copy Voltage Controlled Current Follower Differential Input Transconductance Amplifier in Controllable Biquadratic Band-Pass Filter
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Šotner, Roman
Jeřábek, Jan
Dostál, Tomáš
Vrba, Kamil
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Mark
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Kaunas University of Technology
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Abstract
This paper presents the results of study on utilization of Z-copy Voltage Controlled Current Follower Differential Input Transconductance Amplifier (ZCVCCFDITA) active element in a single purpose filtering structure. This active element has three voltage-controlled parameters (intrinsic resistance of current input, voltage gain and transconductance of output section) and is very useful for design of oscillators, signal generators and frequency filters with just one active element. In this paper, the important parameters of possible behavioural model of ZC-VCCFDITA are shown and a particular solution of the controllable bandpass filter is presented. Theoretical, calculated, simulated and moreover also measured results are mutually compared.
This paper presents the results of study on utilization of Z-copy Voltage Controlled Current Follower Differential Input Transconductance Amplifier (ZCVCCFDITA) active element in a single purpose filtering structure. This active element has three voltage-controlled parameters (intrinsic resistance of current input, voltage gain and transconductance of output section) and is very useful for design of oscillators, signal generators and frequency filters with just one active element. In this paper, the important parameters of possible behavioural model of ZC-VCCFDITA are shown and a particular solution of the controllable bandpass filter is presented. Theoretical, calculated, simulated and moreover also measured results are mutually compared.
This paper presents the results of study on utilization of Z-copy Voltage Controlled Current Follower Differential Input Transconductance Amplifier (ZCVCCFDITA) active element in a single purpose filtering structure. This active element has three voltage-controlled parameters (intrinsic resistance of current input, voltage gain and transconductance of output section) and is very useful for design of oscillators, signal generators and frequency filters with just one active element. In this paper, the important parameters of possible behavioural model of ZC-VCCFDITA are shown and a particular solution of the controllable bandpass filter is presented. Theoretical, calculated, simulated and moreover also measured results are mutually compared.
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Keywords
Analog behavioural modelling , band-pass filter , current conveyor , current follower , controllable input resistance , current inverter , electronic adjusting (control) , transconductance , Z-copy voltage controlled current follower differential input transconductance amplifier. , Analog behavioural modelling , band-pass filter , current conveyor , current follower , controllable input resistance , current inverter , electronic adjusting (control) , transconductance , Z-copy voltage controlled current follower differential input transconductance amplifier.
Citation
Elektronika Ir Elektrotechnika. 2016, vol. 22, issue 4, p. 32-36.
http://eejournal.ktu.lt/index.php/elt/article/view/15911
http://eejournal.ktu.lt/index.php/elt/article/view/15911
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Peer-reviewed
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en
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Except where otherwised noted, this item's license is described as Creative Commons Attribution 4.0 International

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