National Repository of Grey Literature 6 records found  Search took 0.00 seconds. 
Design and simulations of low-power electronically controllable functional generators
Kolenský, Tomáš ; Dvořák, Radek (referee) ; Šotner, Roman (advisor)
The aim of the thesis is to get acquainted with the principle and function of functional generators. Furthermore, with their design using active elements that can be electronically controlled. The design and simulation results are presented in Chapter 4, which also shows schematics of simulated and measured circuits.
Design and simulations of low-power electronically controllable functional generators
Kolenský, Tomáš ; Dvořák, Radek (referee) ; Šotner, Roman (advisor)
The aim of the thesis is to get acquainted with the principle and function of functional generators. Furthermore, with their design using active elements that can be electronically controlled. The design and simulation results are presented in Chapter 4, which also shows schematics of simulated and measured circuits.
Modern active elements and their behavior in linear circuit blocks
Kosztyu, Tomáš ; Jeřábek, Jan (referee) ; Koton, Jaroslav (advisor)
The topic of this master’s thesis was a frequency filters and their realization using modern active elements like UVC, UCC, VFA, CFA and OTA. The base point of this thesis was designed frequency filters with these active elements, when the shape of the transfer function will be identical for all structures and compare the characteristics of active elements. The proposed frequency filters are second order with one or two active elements. In the first part of thesis are discussed basic properties of frequency filters, their properties and distribution. Next are described the general characteristics of active filters and their basic elements such as operational amplifier OTA, VFA and CFA, and recently more frequently used voltage and current conveyor. The second part is the frequency filters designed with these elements is the same transfer function. Subsequently, simulations are done all the filters and obtained the frequency response. Finally, these filters are experimentally made and made practical measurements.
Design and simulations of low-power electronically controllable functional generators
Kolenský, Tomáš ; Dvořák, Radek (referee) ; Šotner, Roman (advisor)
The aim of the thesis is to get acquainted with the principle and function of functional generators. Furthermore, with their design using active elements that can be electronically controlled. The design and simulation results are presented in Chapter 4, which also shows schematics of simulated and measured circuits.
Design and simulations of low-power electronically controllable functional generators
Kolenský, Tomáš ; Dvořák, Radek (referee) ; Šotner, Roman (advisor)
The aim of the thesis is to get acquainted with the principle and function of functional generators. Furthermore, with their design using active elements that can be electronically controlled. The design and simulation results are presented in Chapter 4, which also shows schematics of simulated and measured circuits.
Modern active elements and their behavior in linear circuit blocks
Kosztyu, Tomáš ; Jeřábek, Jan (referee) ; Koton, Jaroslav (advisor)
The topic of this master’s thesis was a frequency filters and their realization using modern active elements like UVC, UCC, VFA, CFA and OTA. The base point of this thesis was designed frequency filters with these active elements, when the shape of the transfer function will be identical for all structures and compare the characteristics of active elements. The proposed frequency filters are second order with one or two active elements. In the first part of thesis are discussed basic properties of frequency filters, their properties and distribution. Next are described the general characteristics of active filters and their basic elements such as operational amplifier OTA, VFA and CFA, and recently more frequently used voltage and current conveyor. The second part is the frequency filters designed with these elements is the same transfer function. Subsequently, simulations are done all the filters and obtained the frequency response. Finally, these filters are experimentally made and made practical measurements.

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