Educational program “Microelectronics of Energy Efficiency and Electronic Protection” (bachelor)

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An educational program focused on providing the necessary knowledge and skills for the development and application of new materials, elements and micro- and nanoelectronic systems for electronics of embedded systems and solar energy, elements of electronic protection against electromagnetic interference based on physical approaches and methods.
The emphasis is on the study of physical processes that ensure the operation of micro- and nanoelectronic devices, the introduction of modern design principles and methods for research of individual devices and embedded systems based on micro- and nanoelectronic structures. Special attention is paid to electronic protection, including methods and principles of protecting embedded systems from electromagnetic interference.

The focus of the educational program is aimed at providing modern theoretical and practical knowledge to form the applicant’s competencies for the development, research and application of new materials and devices of micro- and nanoelectronics for solar energy and embedded systems, development, research and application based on micro- and nanoelectronics materials of elements of electronic protection of embedded systems from electromagnetic interference.

Mandatory:
General training (GP):
ZP1. History and Culture of Ukraine
ZP2. Ukrainian Language (Professional)
ZP3. Ecology
ZP4. Foreign Language
ZP5. Philosophy
ZP6. Jurisprudence
ZP7. History of Science and Technology
ZP8. Higher Mathematics Part 1
ZP9. Higher Mathematics Part 2
ZP10. Higher Mathematics Part 3
ZP11. Higher Mathematics Part 4
ZP12. Physics Part 1
ZP13. Physics Part 2
ZP14. Physics Part 3
ZP15. Physical Education

Special (Professional) Training (SP):
SP1. Introduction to the Specialty. Familiarization Practice.
SP2. Fundamentals of Electronic Device Protection
SP3. Information Technologies
SP4. Engineering and Computer Graphics
SP5. Object-oriented programming
SP6. Optoelectronic materials and devices
SP7. Mathematical application software packages
SP8. Analog and digital circuit engineering
SP9. Quantum electronics
SP10. Theory of electrical and electronic circuits
SP11. Electronic protection
SP12. Development of devices based on microcontrollers
SP13. Microprocessor technology
SP14. Fundamentals of nanoelectronics
SP15. Mathematical methods of artificial intelligence
SP16. Automated design of electronic devices
SP17. Basics of human safety and health
SP18. Materials of micro-, nanoelectronics and solar energy
SP19. Physical methods of research of materials and devices of solar energy
SP20. Project work

Practical training:
PP1. Industrial practice
PP2. Pre-diploma practice
A. Certification

Electives:
Professional training (OKVP):
OKVP1. Object-oriented programming part 2
OKVP1. Electromagnetic systems
OKVP1. Hardware and software of computer technology
OKVP2. Database organization
OKVP2. Computational methods
OKVP2. Chemistry of materials and phase transformations
OKVP2. Probability theory
OKVP2. Fundamentals of web technologies
OKVP2. Crystalline structure of a solid
OKVP2. Methods of function optimization
OKVP2. Symbolic mathematics systems
OKVP3. Crystalline solar cells
OKVP3. Computer networks and distributed computing
OKVP3. Electronic signal measurement devices
OKVP4. Non-destructive testing methods
OKVP4. Measurement and processing of experimental results
OKVP4. Methods of mathematical physics
OKVP5. Thin film technologies
OKVP5. Numerical methods in physics
OKVP5. Physics of semiconductors and dielectrics
OKVP6. Methods of structural analysis part 1
OKVP6. Vacuum engineering and technologies
OKVP6. Energy conversion and storage systems
OKVP7. Electronics of defects in semiconductors
OKVP7. Devices for generating and forming signals
OKVP8. Methods of structural analysis part 2
OKVP8. Programmable micro- and nanosystems
OKVP9. Physical foundations of nanotechnologies
OKVP9. Fundamentals of information theory
OKVP9. Enterprise economics
OKVP10. Signal and image processing
OKVP10. Signal receiving devices
OKVP10. Materials of micro-, nanoelectronics and solar energy part 2
OKVP11. Technological Fundamentals of Electronics
OKVP11. Radiation Resistance of Materials
OKVP11. Spectral and Optical Analysis

Planned for 2025/2026 academic year.

Head of the Department:
Prof. Zaitsev Roman Valentinovich
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