Microwave Communication and Television detailed Syllabus for Electronics & Communication Engineering (DECE), C18 curriculum has been taken from the TSSBTET official website and presented for the diploma students. For Course Code, Course Name, Lectures, Tutorial, Practical/Drawing, Internal Marks, Max Marks, Total Marks, Min Marks and other information, do visit full semester subjects post given below.
For all other Diploma in Electronics & Communication Engineering (DECE) Syllabus for 4th Sem C18 Curriculum TSSBTET, do visit Diploma in Electronics & Communication Engineering (DECE) Syllabus for 4th Sem C18 Curriculum TSSBTET Subjects. The detailed Syllabus for microwave communication and television is as follows.
Prerequisites:
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Course Outcomes:
Upon completion of the course, the student should be able to
- CO Course Outcome Linked PO Periods
- CO Comprehend Basic Concepts of transmission lines and waveguides. 1,2,3, 10
- CO Explain working of microwave tubes and semiconductor devices. 1,2,6,7 10
- CO Explain the principle of radar systems. 1,2,9 10
- CO Understand the working of satellite communication 1,2,5,7 10
- CO Comprehend TV Picture & Composite video signal 1,2,5,7,10 10
- CO Understand the basics of Colour Television and digital TV. 1,2,3,7,10 10
UNIT 1- Basic Concepts of transmission lines and waveguides Duration: 10 Periods (L: 7- T:3)
Transmission Lines- types and Electrical equivalent circuit- Primary and Secondary constants – group and phase velocities – types of distortions- Reflection coefficient and SWR-relation -equation for input impedance of a transmission line terminated with load ZL- various bands in microwave frequency range- dominant mode and cut-off wavelength in rectangular waveguide-cut-off frequency, cut-off wavelength, guide wavelength, phase velocity, group velocity and characteristic impedance in rectangular waveguide- need for microwave bends, corners and twists-different T-Junctions– need for isolators and circulators- need of directional coupler.
UNIT 2: Working of microwave tubes and semiconductor devicesDuration: 10 Periods (L: 8- T:2)
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UNIT 3: Principles Of Radar Systems
Basic principle of Radar with a block diagram- basic Radar range equation- range performance factors from range equation- block diagram of pulsed Radar system- need for duplexer in Radar- working of branch type Duplexer with sketch- types of indicators used in radar systems- disadvantages of pulsed radar- principle of CW radar- block diagram of CW radar- limitations of a CW Radar- block diagram of MTI Radar-applications of various Radar systems
UNIT 4: Working of Satellite Communication Duration: 10 Periods (L: 8- T:2)
Uses of microwave links- fixed microwave link with block diagram-need for satellite communication- Classify satellites- advantages of satellite communication over terrestrial radio communication- features of satellites in LEO,MEO,GEO – applications of satellites – azimuth and elevation with reference to satellites–terms apogee and perigee- uplink frequency and down link frequency- block diagram of communication satellite-functions of a transponder- types transponders used in satellites (single conversion, double conversion and regenerative)- working of the three types of transponders- block diagram of Earth station
UNIT- 5: TV Picture & Composite video signal Duration: 10 Periods (L: 6- T:4)
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Unit 6: Basics of Colour Television and digital TV
Main characteristic of human eye with regard to perception of colours-additive and subtractive mixing of colours-complementary colours, hue, saturation, and Colour circle- compatibility and reverse compatibility in TV system- three standards of Colour transmission system NTSC, PALand SECAM- chrominance signals are transmitted on one carrier in PAL system- block diagram of a Colour TV transmitter- block diagram of a Colour TV receiver -processing of Colour video signal (PAL system) in a Colour receiver- need of satellite for TV broadcasting over wide area – DTH and the merits – need for Set Top Box- features of HDTV- Explain the features of SMART TV.
Recommended Books:
- Electronic communication system by George Kennedy, TMH
- Electronic communications systems by Roy Blake, Thomson Delmar,2002.
- Introduction to RADAR Engineering by Merryl I Skolnik. TMH
- Microwave Integrated circuits by Samuel Leo 3 ed.-Prentice Hall
- Transmission lines umeshsinha.
- Satellite communication by dc agarval
Suggested e-learning resources
For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
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Suggested Student Activities:
- Students visits Library to refer to Manuals and related books of microwave Communication.
- Student inspects the available equipment in the Lab.
- Visit nearby Industry to familiarize with working of various radar satellite communication systems.
- Prepare a report on the limitations of microwave signals for conventional low frequency devices.
- Visit the local BSNL office and prepare a report on it.
- Visit the local Microwave station and prepare a report on it.
- Prepare a report on different types of antennas used in radar application.
- Prepare a report on Historical background of Satellite.
- Prepare a report on Indian satellites.
- Prepare a report on activities of ISRO.
For detail Syllabus of all other subjects of Electronics & Communication Engineering, C18 curriculum do visit Diploma In Electronics & Communication Engineering 4th Sem Syllabus for C18 curriculum.
For all Electronics & Communication Engineering results, visit TSSBTET DECE all semester results direct links.