ETE

CEC341: MICs and RF System Design syllabus for ETE 2021 regulation (Professional Elective-III)

MICs and RF System Design detailed syllabus for Electronics & Telecommunication Engineering (ETE) for 2021 regulation curriculum has been taken from the Anna Universities official website and presented for the ETE students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.

For Electronics & Telecommunication Engineering 5th Sem scheme and its subjects, do visit ETE 5th Sem 2021 regulation scheme. For Professional Elective-III scheme and its subjects refer to ETE Professional Elective-III syllabus scheme. The detailed syllabus of mics and rf system design is as follows.

Course Objectives:

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Unit I

ACTIVE RF COMPONENTS AND APPLICATIONS
RF diodes, BJT, RF FET’S, High electron mobility transistors, matching and biasing networks-impedance matching using discrete components, microstripline matching networks, amplifier classes of operation and biasing networks.

Unit II

RF FILTER DESIGN
Overview, Basic resonator and filter configuration, special filter realizations, smith chart based filter design, coupled filter.

Unit III

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Unit IV

NON RECIPROCAL COMPONENTS FOR MICs
Microstrip on Ferrimagnetic substrates, Microstrip circulators. Isolators and phase shifters, Design of microstrip circuits – high power and low power circuits.

Unit V

INTEGRATED ANTENNA DESIGN AND MEASUREMENTS
Integrated Antenna Design- Photonic Band Gap Antennas – Micro Machined Antenna – Micro Electro Mechanical System Antennas – Test Fixture Measurements – Probe Station Measurements -Thermal and Cryogenic Measurements- Experimental Field Probing Techniques.

Practical Exercises

  1. Design of low pass, high pass, band pass and band stop filter at RF using any software tool
  2. Design of low pass, high pass, band pass and band stop filter at RFDesign of low pass, high pass, band pass and band stop filter at RF
  3. Design of low pass, high pass, band pass and band stop filter at RF
  4. Design of low pass, high pass, band pass and band stop filter at RF
  5. Measurement of S parameters for a) Inductor b) Capacitor c) impedance matching circuits, filters using network analyzer
  6. Design a microstrip circuits

Course Outcomes:

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Text Books:

  1. Reinhold Ludwig and Powel Bretchko, RF Circuit Design – Theory and Applications, Pearson Education Asia, First Edition, 2001.(Unit – I, II)
  2. Bharathi Bhat, Shiban K. Koul, “Stripline-like Transmission Lines for Microwave Integrated Circuits”, New Age International Pvt Ltd Publishers, 2007.(Unit -III ,V)
  3. Gupta KC and Amarjit Singh, “Microwave Integrated circuits”, Wiley Eastern, 1974.(Unit -IV)

Reference Books:

  1. MathewM. Radmanesh, Radio Frequency & Microwave Electronics, Pearson Education Asia, Second Edition, 2002.
  2. Ulrich L. Rohde and David P. NewKirk, RF / Microwave Circuit Design, John Wiley & Sons USA 2000.
  3. RolandE. Best, Phase – Locked Loops: Design, simulation and applications, McGraw Hill Publishers 5TH edition 2003
  4. David Pozar ,Microwave Engineering, Addison Wesley 3rd Edition
  5. Ravender Goyal, “Monolithic MIC; Technology & Design”, Artech House, First Edition 1989.

For detailed syllabus of all the other subjects of Electronics & Telecommunication Engineering 5th Sem, visit ETE 5th Sem subject syllabuses for 2021 regulation.

For all Electronics & Telecommunication Engineering results, visit Anna University ETE all semester results direct link.

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