course aims in Estonian
Õppeaine eesmärk on pakkuda praktilist sissejuhatust raadiosageduslikku elektroonikasse ja raadiotehnikasse, käsitledes raadiosageduslike vooluringide tööpõhimõtteid, eripärasid ja põhimõttelisi piiranguid. Kursus kujundab oskused lihtsamate raadiosageduslike ahelate analüüsimiseks, arvutamiseks, projekteerimiseks, koostamiseks ja mõõtmiseks.
course aims in English
The aim of the course is to provide a practical introduction to radio-frequency electronics and radio engineering, covering the operating principles, specific characteristics, and fundamental limitations of radio-frequency circuits. The course develops the skills required to analyse, calculate, design, assemble, and measure simple radio-frequency circuits.
learning outcomes in the course in Est.
Õppeaine edukalt läbinud üliõpilane:
- analüüsib raadioseadmete põhisõlmede tööd nende tööpõhimõtete ja peamiste parameetrite alusel;
- projekteerib etteantud nõuete alusel lihtsamaid raadiosageduslikke ahelaid, sh sobitusahelaid ja filtreid;
- mõõdab laboriseadmete abil raadiosageduslike signaalide ja seadmete põhiparameetreid;
- koostab enda projekti alusel toimiva raadiosagedusliku ahela.
learning outcomes in the course in Eng.
After completing this course, the student:
- analyses the operation of the main functional blocks of radio equipment based on their operating principles and key parameters;
- designs simple radio-frequency circuits, including matching networks and filters, based on specified requirements;
- measures the key parameters of radio-frequency signals and equipment using laboratory instruments;
- constructs a functioning radio-frequency circuit based on their own design.
brief description of the course in Estonian
Passiivkomponendid kõrgsagedusel, hajuparameetrid, Smithi diagramm. Diskreetelementide ja lainejuhtide rakendused: hargmikud, jagajad, filtrid, isolaatorid, diplekserid, tsirkulaatorid. Aktiivelemendid kõrgsagedusel, lülitid ja kõrgsagedusvõimendid, ostsillaatorid, segistid, sagedusmuundurid ja -süntesaatorid, modulaatorid- ja demodulaatorid.
brief description of the course in English
Passive components at high frequencies, parasitic parameters, and the Smith chart. Applications of discrete components and waveguides: junctions, dividers, filters, isolators, diplexers, and circulators. Active components at high frequencies; switches and high-frequency amplifiers; oscillators; mixers; frequency converters and synthesizers; modulators and demodulators.
type of assessment in Estonian
-
type of assessment in English
-
independent study in Estonian
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independent study in English
-
study literature
C. Bowick, RF Circuit Design. 2nd Edition, Elsevier, 2007.
D. M. Pozar, Microwave Engineering, Fourth Edition, John Wiley & Sons, Inc, 2012.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
type (CBL/PBL)
not specified