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№ |
Название организации |
Начало месяцгод |
Оканчание месяцгод |
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1 |
Алматинский университет энергетики и связи имени Гумарбека Даукеева, кафедра «Электроэнергетические сети» |
01.09.2021 |
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2 |
«Казахский национальный аграрный университет», старший преподаватель кафедры «Энергосбережение и автоматика» |
01.09.2018 |
31.09.2021 |
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3 |
Казахский национальный уиниверситет им. аль-Фараби, старший преподаватель кафедры «Кафедра теплофизики и технической физики» |
01.09.2016 |
31.08.2017 |
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4 |
Казахский национальный технический университет им.К. И. Сатпаева, старший преподаватель кафедры «Электроэнергетика и автоматизация технологических комплексов» |
02.09.2013 |
10.07.2016 |
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5 |
Казахский национальный технический университет им.К. И. Сатпаева, старший преподаватель кафедры «Электроэнергетика и автоматизация технологических комплексов» |
26.09.2008 |
01.09.2012 |
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6 |
Казахский национальный технический университет им.К. И. Сатпаева, преподаватель кафедры «Электроэнергетика и автоматизация технологических комплексов» |
31.12.2006 |
26.09.2008 |
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7 |
Казахский национальный технический университет им.К. И. Сатпаева, ассистент кафедры «Электроэнергетика и автоматизация технологических комплексов» |
03.12.2005 |
31.08.2006 |
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8 |
Казахский национальный технический университет им.К. И. Сатпаева, инженер 1 категории кафедры «Электроэнергетика и автоматизация технологических комплексов» |
25.09.1998 |
02.12.2002 |
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9 |
Казахский национальный технический университет им.К. И. Сатпаева, инженер кафедры «Электроэнергетика и автоматизация технологических комплексов» |
29.11.1996 |
25.09.1998 |
12.Отметки о судимости – нет
1991 - 1996 Казахский национальный технический университет им. К. И. Сатпаева. Специальность – 2105 – электропривод и автоматизация промышленных установок и технологических комплексов Квалификация – горный инженер электромеханик.
2012 - 2014 Гуманитарный Университет транспорта и права имени Д. А. Кунаева. 6М071800- Электроэнергетика, магистр технических наук.
1. Renewable energy sources;
2. Improvement of control systems for electric drive of mechanical units in technological processes
1. ФОТОЭЛЕКТРЛІК ЖҮЙЕЛЕРДЕГІ АҚАУЛАРДЫ АНЫҚТАУ ЖӘНЕ ДИАГНОСТИКАЛЫҚ ӘДІСТЕРГЕ ШОЛУ УДК 620.92: 621.311.001.57
2. Пути усточивого развития энергосбережения в Республике Казахстан. Журнал «Точная наука», 24 января 2022 г. ББК Ч 214(2Рос-4Ке)73я431 ISSN 2500-1132 УДК 378.001 Кемерово
Developing skills in designing power devices for electronic devices, such as stabilizing secondary power sources, pulse converters, transformers for various purposes. To be able to put into practice the methods of analysis of the main power supply devices: transformers, rectifiers, static converters, voltage stabilizers, conduct computer modeling of the power supply system nodes
The purpose of the discipline is to train students in the field of optimization theory for solving engineering problems; to give an idea of the principles and methods of mathematical modeling of operations; to introduce the main types of problems of operations research and methods of their solution for practical application. As a result of studying the discipline, students will receive theoretical and practical skills in the application of alternative analysis in solving single-criteria and multi-criteria optimization problems; methods of constructing mathematical models in solving professional problems.
The purpose of the discipline is for students to form an idea of the concept, types of computer graphics, raster graphics, vector graphics, fractal graphics, basic concepts of three-dimensional graphics, tools for working with raster graphics. The discipline is aimed at revealing the integrity of the perception of these data processing processes by working with vector graphics, Adobe Photoshop, Adobe Illustrator, CorelDRAW, 3D max graphic editors, as well as teaching students how to use graphic methods to achieve visualization.
−the basic laws of the construction of technological processes; −basic mathematical models of technological processes; −the bases of numerical simulation of technological processes; −basics of optimization of technological processes.
The purpose and objectives of the discipline are students to study physical processes in a solid, which determine the principle of operation, properties, characteristics and parameters of various devices and devices of semiconductor electronics in discrete and integral design, to acquire knowledge on the principles of construction, functionality, manufacture and use of MI in equipment of various functional purpose, including devices and systems of industrial electronics. Learning outcomes: after completing the course, the student must know: the basics of the theory of electrical circuits, the basic methods of analyzing electrical and magnetic circuits; purpose and principle of operation of components of microelectronic devices; measuring instruments for electrical and non-electrical quantities, main features and design principles of MI; be able to: measure electrical quantities with multimeters; carry out standard tests and technical control of electrical appliances and installations; perform technical calculations and assess the economic efficiency of the electrical appliances used, select the required type of devices and devices made using microelectronic technologies.
The purpose of the discipline is to study the physical foundations of the functioning of individual elements of a mechatronic system and the design of these systems in the environment MATLAB-Simulink. As a result of studying the discipline, the student will receive theoretical and practical skills in model research of general problems of analysis and synthesis of dynamics of mechatronic systems in the Matlab-Simulink environment, model research of power electronics devices in the Sim Power System package, model design of DC mechatronic systems, model design of asynchronous mechatronic systems, model design of synchronous mechatronic systems The student can use the acquired knowledge in the future when designing a technical system.
The purpose of the discipline is to develop students' knowledge and practical skills in the field of power supply to industrial enterprises. As a result of mastering the discipline, the student is able to calculate electrical loads, analyze electricity metering processes and evaluate the effectiveness of electrical safety measures. The acquired knowledge is used in the design, operation and maintenance of power supply systems.
The purpose of the discipline is to form deep knowledge, abilities, and skills for the professional operation of modern equipment and devices, as well as the use of current and prospective computer and information technologies, which will enable students to successfully solve theoretical and practical tasks in their professional activities related to the application of digital and technical systems. As a result of studying the discipline, students must master knowledge in the fields of software fundamentals, network tools for implementing information processes in electrical engineering complex tasks, problem-oriented software, and information-measuring systems, as well as be able to apply this knowledge in various professional and technical fields.
The purpose of the discipline is to develop students' knowledge and practical skills in the field of design and operation of power supply systems. As a result of mastering the discipline, the student is able to develop power supply schemes, design power supply systems and apply electrical safety requirements. The acquired knowledge is used in the design, operation and modernization of power supply systems for various purposes.
The purpose of this discipline is to provide students with basic knowledge about the general structure of radio engineering materials and their types. When studying the discipline, the emphasis is on the most universal methods and properties of the main classes of radio engineering materials and in the future the student will be able to use them for the manufacture of parts and devices of electronic equipment.