Electrical Engineering and Fundamentals of Electronics
BASIC DATA
course listing
A - main register
course code
RAA0920
course title in Estonian
Elektrotehnika ja elektroonika alused
course title in English
Electrical Engineering and Fundamentals of Electronics
course volume CP
6.00
ECTS credits
9.00
to be declared
yes
assessment form
Examination
teaching semester
autumn - spring
language of instruction
Estonian
English
Prerequisite(s)
Prerequisite 1
Technical physics (RAE0810)
The course is a prerequisite
Electric Machines and Drives (EVR0140)
Practical Physics (EVR0130)
Study programmes that contain the course
Structural units teaching the course
EV - Virumaa College
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Anda teadmised aine rakendustest ja fundamentaalsetest mõistetest praktiliste ülesannete kaudu. Anda oskused inseneritehnika mõõteriistade ja tarkvara kasutamiseks. Anda oskused kavandada ja konstrueerida elektrotehnika erinevate keskkondade projekte ning neid kontrollida. Anda ülevaade elektrotehnika seotusest insenertehniliste ainete ja valdkondadega; arendada oskust lahendada probleeme, mis on seotud lihtsate elektronskeemide analüüsi ja sünteesiga.
course aims in English
To give knowledge about fundamentals and application of the subject with the help of practical tasks. To give skills of employment of engineering measuring devices and software. To teach skills to make out and develop projects of different electrotechnics media and to control them. To give an overview of the connections between subjects and fields of electrical engineerin; to develop skills to solve problems related to analysis and synthesis of simple electronic circuits.
learning outcomes in the course in Est.
Tunneb elektrotehnika erinevaid keskkondi: elektroonilised ahelad, pooljuhtseadised ja nende tootmine, optika sidekanalid, tagasiside juhtimissüsteemid, kujundite digitaalne töötlemine; on kursis lahendust nõudvate probleemidega elektrotehnikas ning tunneb parimate lahenduste leidmiseks kasutavaid seadmeid; oskab kasutada inseneritehnika mõõteriistu; omab elektrotehnikast laiendatud ettekujutust; oskab teadmisi elektrotehnikast kasutada inseneriteadustega seotud probleemide analüüsil ja meid ümbritseva elukeskkonna nähtuste kirjeldamisel ning iseseisva töö korral tarkvaraga; oskab elektrotehnikat seostada tootmise ja tehnika toimimisega; oskab projekteerida erinevaid elektroonseid skeeme, kasutades selleks ettenähtud tarkvara (viz., L@Bsoft; Tina Pro for Windows); oskab kasutada mõõteseadmeid skeemide koostamisel ning kontrollimisel.
learning outcomes in the course in Eng.
Knows various media of electrical engineering; electronic circuits and semiconductor devices and their manufacturing, optic channels, feedback control systems, image digital processing; knows actual problems of electrical engineering, is able to find proper solutions and required equipment for them; acquires wide notion of electrical engineering; is able to analyse problems of engineering , to describe environmental phenomena, to work independent with software; is able to connect electrical engineering with production and equipment work; can design different electronic schemes using proper software(viz., L@Bsoft; Tina Pro for Windows); can use measuring instruments when compiling and checking the schemes.
brief description of the course in Estonian
Elektromagnetismi põhialused. Elektrostaatika. Alalisvoolu seadused. Magnetostaatika. Elektromagnetiline induktsioon. Elektromagnetilised võnkumised. Vahelduvvool. Elektromagnetlained. Põhilised seosed ja seadused elektriahelates. Alalisvooluahelate arvutusmeetodid. Vahelduvvooluahelate arvutusmeetodid. Kolmefaasiline pingesüsteem. Põhilised seosed ja seadused magnetahelates. Elektrimõõtmised ja elektrilised mõõteriistad. Trafod. Elektrimasinad: asünkroonmasinad, sünkroonmasinad, alalisvoolumasinad. Vahelduvvoolu alaldamine. Elektriajamid, nende talitusviisid ja mootorite valik. Elektriajamite juhtimine. Elektrivarustus. Juhtmete ja kaitsmete valik. Elektriseadmete ekspluatatsioon. MOSFET-transistorid, Operatsioonvõimendid: ideaalsete operatsioonvõimendite põhiskeemid. Digitaal-analoogmuundurid. Analoog-digitaalmuundurid: määratlused ja omadused.
brief description of the course in English
Principle fundamentals of electromagnetism. Electrostatics. Laws of direct current. Magnetostatics. Electromagnetic induction. Electromagnetic oscillations. Alternative current. Electromagnetic waves. Principle connections and laws in electrical circuits. Calculation methods of direct current circuits. Calculation methods of alternative current circuits. Three-phase voltage system. Principle connections and law in magnetic circuits. Electrical measurements and electrical measurement instruments. Transformers. Electrical machines: asynchronic machines, synchronic machines, direct current machines. Rectification of alternative current. Electrical drives, their ways of performance and choice of motors. Control of electrical drives. Electrical equipment. Choice of wires and protections. Exploitation of electrical devices. The MOSFET transistors. Operational amplifier: basic circuits with Ideal Ampops. Data converters A/D and D/A: definitions and characteristics.
type of assessment in Estonian
eristav hindamine
type of assessment in English
grading
independent study in Estonian
Kirjalik kodune töö on etteantud ülesannete lahendamine, näidates ära lahenduskäigu. Ettekanne koostada ja esitada etteantud elektrotehnika teemal. Esitluseks valmistumine. Laboratoorsete tööde vormistamine, andmete analüüs, ettevalmitus tööde kaitsmiseks.
independent study in English
Written homework solving on the specified tasks, showing way of solution. To compile and submit presentation on the specified theme of Electrical Engieering. Preparation for presentation. Laboratory works forming, data analysis, preparation for works defence.
study literature
H. Puurand. Üldelektrotehnika. Tallinn, Valgus, 1996
R. Lahtmets. Elektrotehnika II. Vahelduvvool. Tallinn, 2002.
T. Lehtla. Elektriajamid. Tallinn, 2007.
А.ВЭРЭШ. Электротехника . Курс лекций , Кохтла-Ярве, 2012.
Abo, L. Raadiolülitused. Tallinn, Valgus, 1990.
Vodovozov, V., Jansikene, R. Elektroonika ja Jõupooljuhttehnika. Eesti Riiklik Arengukava, 2006.
study forms and load
daytime study: weekly hours
6.0
session-based study work load (in a semester):
lectures
1.5
lectures
6.0
practices
3.0
practices
12.0
exercises
1.5
exercises
6.0
lecturer in charge
-
type (CBL/PBL)
not specified
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2023/2024 autumn
Viktor Bolgov, V - Estonian Maritime Academy
Estonian
    display more
    2022/2023 autumn
    Aleksei Hõbesaar, EV - Virumaa College
    Estonian
      2021/2022 autumn
      Aleksei Hõbesaar, EV - Virumaa College
      Estonian
        RAA0920_HK_ENG.pdf 
        2020/2021 spring
        Veroonika Shirokova, EV - Virumaa College
        Estonian
          RAA0920_HK_ENG.pdf 
          Aleksei Hõbesaar, EV - Virumaa College
          Estonian
            RAA0920_HK_ENG.pdf 
            2019/2020 spring
            Veroonika Shirokova, EV - Virumaa College
            Estonian
              RAA0920_HK_ENG.pdf 
              2018/2019 spring
              Veroonika Shirokova, EV - Virumaa College
              Estonian,  Russian
                RAA0920_HK_ENG.pdf 
                2017/2018 spring
                Sergei Pavlov, EV - Virumaa College
                Estonian
                  RAA0920_HK_ENG.pdf 
                  Tatjana Baraškova, EV - Virumaa College
                  Estonian,  Russian
                    RAA0920_HK_ENG.pdf 
                    Course description in Estonian
                    Course description in English