Zobrazeno 1 - 6
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pro vyhledávání: '"Aleksey Shkolin"'
Autor:
Aleksey Shkolin
Publikováno v:
CAD/EDA, MODELING AND SIMULATION IN MODERN ELECTRONICS: COLLECTION OF SCIENTIFIC PAPERS OF THE V INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE.
The issue of developing a behavioral model of pulse voltage converter IC is considered on the example of a microcircuit of domestic production 1290EF1. In order to verify the adequacy of the model, taking into account its frequency characteristics, r
Autor:
Pavel Yastrebov, Aleksey Shkolin, Vladimir Gromov, Konstantin Afanas'ev, Aleksey Malahanov, Vitaliy Fesov
Publikováno v:
Bulletin of Bryansk state technical university. 2017:80-87
Autor:
Aleksey Shkolin, Leonid Potapov
Publikováno v:
CAD/EDA, MODELING AND SIMULATION IN MODERN ELECTRONICS: COLLECTION OF SCIENTIFIC PAPERS OF THE III INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE.
It is shown that the thermal resistance of the junction-case is determined through a partial heat flux and is some characteristic of the crystal fastening in the case of high-frequency pulse voltage converters. It is practically impossible to measure
Autor:
Igor' Butarev, Aleksey Shkolin
Publikováno v:
CAD/EDA, MODELING AND SIMULATION IN MODERN ELECTRONICS: COLLECTION OF SCIENTIFIC PAPERS OF THE III INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE.
A model of the PWM controller based on the LT1076 microcircuit in Matlab Simulink, which allows a comparative analysis of operating modes and finding the boundaries of the stable operation of the device, is presented.
Autor:
Aleksey Shkolin
Publikováno v:
CAD/EDA, MODELING AND SIMULATION IN MODERN ELECTRONICS: COLLECTION OF SCIENTIFIC PAPERS OF THE III INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE.
This work is devoted to a method for numerically determining the frequency characteristics when modeling nonlinear dynamic objects, in particular during behavioral modeling of pulse converter circuits. The analysis of existing methods for modeling th
Autor:
Aleksey Shkolin, Dmitriy Gadashev
Publikováno v:
CAD/EDA, Modeling and Simulation in Modern Electronics. Part 2.