Microwave Theory and Antennas detail syllabus for Telecommunication Engineering (Telecom), 2017 scheme is taken from VTU official website and presented for VTU students. The course code (17TE63), and for exam duration, Teaching Hr/week, Practical Hr/week, Total Marks, internal marks, theory marks, duration and credits do visit complete sem subjects post given below.
For all other telecom 6th sem syllabus for be 2017 scheme vtu you can visit Telecom 6th Sem syllabus for BE 2017 Scheme VTU Subjects. The detail syllabus for microwave theory and antennas is as follows.
Course Objectives:
This course will enable the Students to:
- Know the Principle of operation of Microwave Tubes.
- Understand the Concept of S-Parameters and various Microwave passive components.
- Understand the Basic Parameters as applied to Antennas
- Analyze Antennas and Arrays of Antennas.
Module 1
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Module 2
Microwave Network theory: Symmetrical Z and Y-Parameters, for reciprocal Networks, S matrix representation of multi-port Networks. (Text-1: 6.1, 6.2, 6.3) Microwave Passive Devices: Coaxial connectors and adapters, Attenuators, Phase shifters, Waveguide Tees, Magic tees, Circulators (Four port) and isolators (Faraday rotation Isolator). (Text-1: 6.4.2, 6.4.14, 6.4.15, 6.4.16, Except Applications of Magic TEE, 6.4.17) Directional coupler, Two – hole Directional coupler, S- Matrix of a Directional Coupler. (Text-2: 4.5, 4.5.1, 4.5.2).
Module 3
Strip Lines: Introduction, Micro Strip lines, Parallel strip lines, Coplanar strip lines, Shielded strip Lines. (Text-2: Chapter 11) Antenna Basics: Introduction, Basic Antenna Parameters, Patterns, Beam Area, Radiation Intensity, Beam Efficiency, Directivity and Gain, Antenna Apertures, Effective Height, Bandwidth, Radio Communication Link, Antenna Field Zones & Polarization. (Text-3: 2.1- 2.11, 2.13, 2.13, 2.15).
Module 4
For complete syllabus and results, class timetable and more pls download iStudy. Its a light weight, easy to use, no images, no pdfs platform to make students life easier.
Module 5
Loop and Horn Antenna: Introduction, Small loop, Comparison of Far fields of Small Loop and Short Dipole, The Loop Antenna General Case, Far field Patterns of Circular Loop Antenna with Uniform Current , Radiation Resistance of Loops, Directivity of Circular Loop Antennas with Uniform Current, Horn antennas Rectangular Horn Antennas. (Text-3: 7.1-7.8, 7.19, 7.20).
Antenna Types: Helical Antenna, Helical Geometry, Practical Design Considerations of Helical Antenna, Yagi-Uda array, Parabola General Properties, Log Periodic Antenna. (Text-3: 8.3, 8.5, 8.8, 9.5, 11.7).
Course Outcomes:
At the end of the course, the students will be able to:
- Describe the characteristic features of Microwave Tubes.
- Represent the Multiport Network in terms of S-Parameters and analyze their properties.
- Understand the design concept of Strip lines and Micro strips.
- Explain the basic parameters of Antennas
- Analyze the features of Antennas & Antenna Arrays.
- Recommend suitable Antennas for various applications.
Text Books:
- Microwave Engineering – Annapurna Das, Sisir K Das TMH Publication, 2nd , 2010
- Microwave Devices and circuits- Liao / Pearson Education
- Antennas and Wave Propagation, John D. Krauss, Ronald J Marhefka and Ahmad S Khan, 4th Special Indian Edition , McGraw- Hill Education Pvt. Ltd., 2010.
Reference Books:
- Microwave Engineering – David M Pozar, John Wiley India Pvt. Ltd., 3rdEdn, 2008
- Microwave Engineering – Sushrut Das, Oxford Higher Education, 2ndEdn, 2015
- Antennas and Wave Propagation – Harish and Sachidananda: Oxford University Press, 2007.
For detail syllabus of all other subjects of BE Telecom, 2017 scheme do visit Telecom 6th Sem syllabus for 2017 scheme.
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