Electronics and Telecommunication Engineering - Vishwakarma ...

Electronics and Telecommunication Engineering - Vishwakarma ... Electronics and Telecommunication Engineering - Vishwakarma ...

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Bansilal Ramnath Agarwal Charitable Trust’s Vishwakarma Institute of Technology, Pune – 411 037 Department of Electronics and Telecommunication Engineering List of Elective 2 Subject Subject Code Subject Name Teaching Scheme (Hrs. per week) Credits No. Lecture Tutorial Practical S4 EC42104 Fibre Optic Communication 3 0 0 3 S4 EC42105 VLSI Design 3 0 0 3 S4 P2 EC42106 EC42301 Digital Image Processing Fibre Optic Communication 3 0 0 3 0 0 2 1 P2 EC42302 VLSI Design 0 0 2 P2 EC42303 Digital Image Processing 0 0 2 1 1 Structure & Syllabus of B.E (E&TC) Program – Pattern ‘C11’, Rev01, dt. 2/4/2011 40

Bansilal Ramnath Agarwal Charitable Trust’s Vishwakarma Institute of Technology, Pune – 411 037 Department of Electronics and Telecommunication Engineering FF No.: 654 EC40102 :: MICROWAVE ENGINEERING Credits: 03 Teaching Scheme: - Theory 3 Hrs/Week Prerequisites: Basic Communication Engineering concepts. Objectives : • To study Basics of Microwave communication system. • To study different Waveguide components and applications. • To study Microwave Tubes. • To study Microwave solid state devices • Mapping with PEOs:1,2,5,7 Unit I MICROWAVE TRANSMISSION LINES (6 Hrs) A. Overview of Microwave communication: Microwave communication system, Advantages and applications of Microwaves. Rectangular Waveguides – TE/TM mode analysis, Expressions for Fields, Characteristic Equation and Cut-off Frequencies, Dominant Modes. Mode Characteristics – Phase velocity and Group Velocity. Power Transmission and Power Losses in Rectangular Waveguide. B. Circular Waveguides: Introduction, Nature of fields, Characteristic Equation, Dominant mode, Impossibility of TEM mode. Unit II WAVEGUIDE COMPONENTS AND APPLICATIONS (8 Hrs) A. Cavity Resonators– Introduction, Rectangular and Cylindrical Cavities, Dominant Modes and Resonant Frequencies, Q factor and Coupling Coefficients. Waveguide Multiport Junctions – E plane Tee, Magic Tee. Ferrite Components – Gyrator, Isolator. Scattering Matrix– Significance, Formulation and Properties. S Matrix Calculations for E plane, Magic Tee, Gyrator& Isolator. B. Study H-plane, Directional Coupler, and Circulator & find out S Matrix Calculations for H-plane, Directional Coupler, and Circulator. Structure & Syllabus of B.E (E&TC) Program – Pattern ‘C11’, Rev01, dt. 2/4/2011 41

Bansilal Ramnath Agarwal Charitable Trust’s<br />

<strong>Vishwakarma</strong> Institute of Technology, Pune – 411 037<br />

Department of <strong>Electronics</strong> <strong>and</strong> <strong>Telecommunication</strong> <strong>Engineering</strong><br />

List of Elective 2<br />

Subject Subject Code Subject Name Teaching Scheme (Hrs. per week) Credits<br />

No.<br />

Lecture Tutorial Practical<br />

S4 EC42104<br />

Fibre Optic<br />

Communication<br />

3 0 0 3<br />

S4 EC42105 VLSI Design 3 0 0<br />

3<br />

S4<br />

P2<br />

EC42106<br />

EC42301<br />

Digital Image<br />

Processing<br />

Fibre Optic<br />

Communication<br />

3 0 0 3<br />

0 0 2 1<br />

P2 EC42302 VLSI Design 0 0 2<br />

P2<br />

EC42303<br />

Digital Image<br />

Processing<br />

0 0 2 1<br />

1<br />

Structure & Syllabus of B.E (E&TC) Program – Pattern ‘C11’, Rev01, dt. 2/4/2011<br />

40

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