

B-TECH in Electronics And Telecommunication Engineering at Symbiosis International University


Pune, Maharashtra
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About the Specialization
What is Electronics and Telecommunication Engineering at Symbiosis International University Pune?
This Electronics and Telecommunication Engineering program at Symbiosis International University (SIT) focuses on fundamental principles and advanced applications in communication systems, signal processing, embedded systems, and VLSI design. It addresses the growing demands of India''''s rapidly expanding telecom, electronics manufacturing, and IT sectors. The program emphasizes hands-on experience and prepares students for cutting-edge technological challenges.
Who Should Apply?
This program is ideal for fresh graduates with a strong aptitude in physics and mathematics seeking entry into core engineering domains like telecommunications, semiconductor design, and embedded systems. It also caters to students keen on research and development in next-generation communication technologies, aiming for roles in India''''s technology hubs.
Why Choose This Course?
Graduates can expect diverse career paths in India, including roles in telecom operators, electronics manufacturing units, R&D centers, and IT companies with hardware divisions. Entry-level salaries typically range from INR 4-7 LPA, with growth trajectories leading to senior engineering or management positions (INR 15+ LPA) within Indian companies. It aligns with global professional certifications in embedded systems and networking.

Student Success Practices
Foundation Stage
Master Core Concepts with Peer Learning- (Semester 1-2)
Focus on foundational subjects like Mathematics, Physics, and Basic Electrical/Electronics Engineering. Form study groups, utilize online platforms like NPTEL for supplemental learning, and engage in problem-solving sessions. This builds a strong academic base essential for advanced E&TC concepts.
Tools & Resources
NPTEL, Khan Academy, Study Groups
Career Connection
Develops strong analytical and problem-solving skills crucial for technical roles and higher studies.
Develop Foundational Programming Skills- (Semester 1-2)
Excel in ''''Programming for Problem Solving'''' and ''''Data Structures'''' by practicing coding daily on platforms like HackerRank and LeetCode. Participate in college coding competitions to enhance logical thinking and problem-solving, crucial for technical interviews in diverse industries.
Tools & Resources
HackerRank, LeetCode, GeeksforGeeks
Career Connection
Enhances employability in IT/product companies that seek engineers with strong coding abilities, even in core E&TC roles.
Explore Basic Electronics Hands-on- (Semester 1-2)
Actively participate in labs for Basic Electrical and Electronics Engineering. Experiment with simple circuits, understand component functionalities, and build small projects using Arduino/Raspberry Pi. This early practical exposure sparks interest and provides a tangible understanding of E&TC fundamentals.
Tools & Resources
Arduino Kits, Raspberry Pi, Breadboards, Multimeter
Career Connection
Fosters practical skills for hardware-related roles and provides a foundation for advanced embedded systems projects.
Intermediate Stage
Build Practical E&TC Prototypes- (Semester 3-5)
Apply theoretical knowledge from Analog/Digital Electronics, Microprocessors, and Signals & Systems to build functional prototypes. Use development boards like ESP32, FPGA kits, and simulation tools (Multisim, Proteus, MATLAB) to design and test circuits, showcasing tangible engineering skills.
Tools & Resources
ESP32/STM32 Boards, FPGA Kits, Multisim, MATLAB/Simulink
Career Connection
Creates a portfolio of functional projects, highly valued by companies hiring for embedded systems, VLSI, and IoT roles.
Seek Early Industry Exposure through Internships/Projects- (Semester 3-5)
Actively search for summer internships in core E&TC companies or research institutions during breaks. If internships are unavailable, undertake mini-projects guided by faculty, focusing on real-world problems. This provides critical industry context and networking opportunities in the Indian market.
Tools & Resources
LinkedIn, Internshala, College Career Cell
Career Connection
Gains practical experience, industry contacts, and often leads to pre-placement offers from reputable companies.
Specialize through Electives and Online Courses- (Semester 3-5)
Carefully choose electives like VLSI Design or Digital Image Processing based on career interests. Supplement with specialized online courses (Coursera, Udemy) in areas like IoT, AI/ML for E&TC, or advanced communication protocols, aligning with emerging Indian industry trends.
Tools & Resources
Coursera, Udemy, edX, NPTEL Advanced Courses
Career Connection
Develops niche expertise highly sought after in specialized roles within the electronics and telecommunication industries.
Advanced Stage
Undertake Capstone Projects with Industry Relevance- (Semester 6-8)
Focus on a significant final year project (Project Phase I, II, III) addressing a current industry challenge or a research gap. Collaborate with industry mentors or faculty to ensure the project has practical applicability and demonstrates advanced engineering and problem-solving capabilities.
Tools & Resources
Academic Labs, Industry Mentors, Advanced Simulation Software
Career Connection
Showcases advanced problem-solving, design, and implementation skills, making graduates highly attractive to employers.
Intensive Placement Preparation & Skill Refinement- (Semester 6-8)
Engage in rigorous aptitude test practice, technical interview preparation (covering core E&TC, data structures, and algorithms), and soft skills development workshops. Participate in mock interviews and group discussions to hone communication and presentation skills, critical for campus placements in India.
Tools & Resources
Aptitude Books/Apps, Online Interview Platforms, College Placement Cell
Career Connection
Maximizes chances of securing placements in top-tier companies, offering competitive salary packages and career growth.
Network and Explore Higher Education/Entrepreneurship- (Semester 6-8)
Attend technical seminars, workshops, and industry expos (e.g., India Mobile Congress) to expand professional networks. Explore opportunities for M.Tech/MS in specialized E&TC fields or consider entrepreneurial ventures, leveraging India''''s startup ecosystem.
Tools & Resources
Industry Conferences, Alumni Network, Startup Incubation Centers
Career Connection
Opens doors to advanced research, leadership roles, or successful entrepreneurship, contributing to the Indian tech ecosystem.
Program Structure and Curriculum
Eligibility:
- Passed 10+2 with Physics and Mathematics as compulsory subjects along with one of the Chemistry/Biotechnology/Biology/Technical Vocational subject. Obtained at least 45% marks (40% in case of candidates belonging to reserved category) in the above subjects taken together. Valid score in SITEEE/JEE (Main)/MHT-CET.
Duration: 4 years / 8 semesters
Credits: 182 Credits
Assessment: Internal: 50%, External: 50%
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202001 | Engineering Mathematics – I | Core | 4 | Differential Calculus, Integral Calculus, Ordinary Differential Equations, Laplace Transform, Series Solutions |
| T229202002 | Engineering Physics | Core | 3 | Wave Optics, Quantum Mechanics, Solid State Physics, Lasers and Fiber Optics, Semiconductor Physics |
| T229202003 | Basic Electrical Engineering | Core | 3 | DC Circuits, AC Circuits, Transformers, Electrical Machines, Power Systems Overview |
| T229202004 | Engineering Mechanics | Core | 3 | Statics, Dynamics, Kinematics, Kinetics, Work and Energy, Friction |
| T229202005 | Programming for Problem Solving | Core | 4 | C Programming Fundamentals, Control Structures, Functions, Arrays, Pointers, Structures |
| T229202006 | Professional Communication | Core | 2 | Oral Communication, Written Communication, Presentation Skills, Group Discussion, Technical Writing |
| T229202007 | Engineering Physics Lab | Lab | 1 | Optics Experiments, Semiconductor Devices, Magnetic Fields, Modern Physics, Material Characterization |
| T229202008 | Basic Electrical Engineering Lab | Lab | 1 | Circuit Laws Verification, AC Circuit Analysis, Transformer Characteristics, Motor Control, Power Measurement |
| T229202009 | Programming for Problem Solving Lab | Lab | 1 | C Program Implementation, Debugging Techniques, Algorithm Development, Data Handling, Function Usage |
| T229202010 | Professional Communication Lab | Lab | 1 | Public Speaking Practice, Presentation Design, Interview Skills, Report Writing, Email Etiquette |
| T229202011 | Engineering Graphics & Design | Core | 1 | Projections of Points, Orthographic Views, Isometric Views, Sectional Views, AutoCAD Basics |
| T229202012 | Environmental Studies | Mandatory Non-Credit | 0 | Ecosystems, Biodiversity, Environmental Pollution, Waste Management, Sustainable Development |
| T229202013 | Design Thinking | Core | 1 | Design Process, Empathize, Define, Ideate, Prototype, Test |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202014 | Engineering Mathematics – II | Core | 4 | Vector Calculus, Matrices, Complex Numbers, Numerical Methods, Partial Differential Equations |
| T229202015 | Engineering Chemistry | Core | 3 | Water Technology, Fuels and Combustion, Electrochemistry, Corrosion, Polymers |
| T229202016 | Data Structures | Core | 4 | Arrays and Pointers, Linked Lists, Stacks and Queues, Trees and Graphs, Sorting and Searching Algorithms |
| T229202017 | Object Oriented Programming | Core | 3 | OOP Concepts, Classes and Objects, Inheritance, Polymorphism, Exception Handling |
| T229202018 | Basic Electronics Engineering | Core | 3 | Diode Circuits, Transistor Biasing, Rectifiers and Filters, Amplifier Fundamentals, Operational Amplifiers |
| T229202019 | Data Structures Lab | Lab | 1 | Array Operations, Linked List Implementations, Stack and Queue Applications, Tree Traversals, Graph Algorithms |
| T229202020 | Object Oriented Programming Lab | Lab | 1 | Class and Object Creation, Inheritance Implementation, Polymorphism Concepts, File Handling, GUI Programming Basics |
| T229202021 | Engineering Chemistry Lab | Lab | 1 | Water Quality Testing, Fuel Analysis, Viscosity Measurement, Corrosion Rate Determination, Polymer Synthesis |
| T229202022 | Basic Electronics Engineering Lab | Lab | 1 | Diode Characteristics, Transistor Amplifiers, Rectifier Performance, Oscillator Design, Op-Amp Applications |
| T229202023 | Workshop Practice | Lab | 1 | Machining Operations, Welding Techniques, Carpentry Joints, Fitting Practices, Sheet Metal Work |
| T229202024 | Digital Manufacturing and Innovation | Core | 1 | Additive Manufacturing, CNC Machines, Industry 4.0 Concepts, Product Design, Innovation Processes |
| T229202025 | Essence of Indian Traditional Knowledge | Mandatory Non-Credit | 0 | Indian Philosophy, Traditional Sciences, Arts and Literature, Value Systems, Yoga and Ayurveda |
Semester 3
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202101 | Engineering Mathematics – III | Core | 3 | Probability Theory, Random Variables, Probability Distributions, Statistical Inference, Regression and Correlation |
| T229202102 | Analog Electronics | Core | 4 | BJT and FET Biasing, Amplifier Frequency Response, Feedback Amplifiers, Oscillator Circuits, Power Amplifiers |
| T229202103 | Digital Electronics | Core | 4 | Boolean Algebra and Logic Gates, Combinational Logic Design, Sequential Logic Design, Counters and Registers, Memory and Programmable Logic |
| T229202104 | Network Theory | Core | 3 | Circuit Analysis Techniques, Network Theorems, AC Circuit Analysis, Resonance in RLC Circuits, Two-Port Network Parameters |
| T229202105 | Signals and Systems | Core | 4 | Continuous and Discrete Signals, Linear Time-Invariant Systems, Fourier Series and Transform, Laplace Transform, Z-Transform |
| T229202106 | Analog Electronics Lab | Lab | 1 | Transistor Amplifier Characteristics, Op-Amp Applications, Oscillator Frequency Tuning, Feedback Amplifier Gain, Power Amplifier Efficiency |
| T229202107 | Digital Electronics Lab | Lab | 1 | Logic Gate Implementation, Combinational Circuit Design, Sequential Circuit Design, Counter Operation, Register Functions |
| T229202108 | Network Theory Lab | Lab | 1 | Network Theorem Verification, AC Circuit Analysis, Resonance Frequency Measurement, Two-Port Network Characterization, Filter Design |
| T229202109 | Open Source Software Lab | Lab | 1 | Linux Command Line, Git Version Control, Python Scripting Basics, Open Source Tools, Collaborative Development |
| T229202110 | Microprocessor and Microcontroller | Core | 3 | 8086 Microprocessor Architecture, Instruction Set and Programming, Memory Interfacing, I/O Interfacing, Microcontroller Basics |
Semester 4
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202111 | Electromagnetic Fields | Core | 4 | Vector Calculus for EM, Electrostatic Fields, Magnetostatic Fields, Maxwell''''s Equations, Electromagnetic Wave Propagation |
| T229202112 | Control Systems | Core | 4 | System Modeling, Block Diagram Reduction, Time Domain Analysis, Stability Analysis, Frequency Domain Analysis |
| T229202113 | Microprocessor and Microcontroller Lab | Lab | 1 | Assembly Language Programming, I/O Device Interfacing, Timer and Interrupts, ADC/DAC Interfacing, Microcontroller Projects |
| T229202114 | Electronic Measurement and Instrumentation | Core | 3 | Measurement Standards, Analog and Digital Meters, Oscilloscopes and Signal Generators, Transducers and Sensors, Bridges and Potentiometers |
| T229202115 | Digital Signal Processing | Core | 4 | Discrete Time Signals and Systems, Z-Transform, Discrete Fourier Transform (DFT), Fast Fourier Transform (FFT), Digital Filter Design (FIR and IIR) |
| T229202116 | Analog and Digital Communication | Core | 4 | Amplitude Modulation (AM), Frequency and Phase Modulation (FM/PM), Pulse Code Modulation (PCM), Delta Modulation, Digital Modulation Techniques (ASK, FSK, PSK) |
| T229202117 | Control Systems Lab | Lab | 1 | System Response Analysis, Stability using Root Locus, Bode Plot Design, PID Controller Tuning, Simulation using MATLAB/Simulink |
| T229202118 | Electronic Measurement and Instrumentation Lab | Lab | 1 | Measuring Instrument Calibration, Sensor Characterization, Bridge Circuit Measurements, Oscilloscope Usage, Data Acquisition Systems |
| T229202119 | Digital Signal Processing Lab | Lab | 1 | DFT and FFT Implementation, FIR Filter Design, IIR Filter Design, Signal Sampling, Audio Processing |
| T229202120 | Analog and Digital Communication Lab | Lab | 1 | AM/FM Modulation/Demodulation, PCM Implementation, Digital Modulation Schemes, Noise Analysis, Fiber Optic Link |
| T229202121 | Constitution of India | Mandatory Non-Credit | 0 | Preamble and Basic Structure, Fundamental Rights, Directive Principles, Union and State Government, Constitutional Amendments |
Semester 5
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202122 | VLSI Design | Core | 4 | CMOS Technology, VLSI Fabrication Process, Design Rules and Layout, CMOS Logic Circuits, Sequential Circuit Design, Memory Architectures |
| T229202123 | Computer Organization and Architecture | Core | 3 | CPU Design, Memory Hierarchy, Input/Output Organization, Pipelining, Instruction Set Architectures |
| T229202124 | Probability and Random Processes | Core | 3 | Probability Axioms, Random Variables and Distributions, Stochastic Processes, Autocorrelation and Cross-correlation, Power Spectral Density |
| T229202125 | Digital Image Processing | Program Elective 1 (Illustrative) | 3 | Image Fundamentals, Image Enhancement, Image Restoration, Image Compression, Image Segmentation |
| T229202126 | Computer Networks | Program Elective 2 (Illustrative) | 3 | OSI Model and TCP/IP, Physical Layer Concepts, Data Link Layer Protocols, Network Layer Protocols, Transport and Application Layers |
| T229202127 | VLSI Design Lab | Lab | 1 | HDL Programming (Verilog/VHDL), FPGA Implementation, CMOS Inverter Design, ASIC Design Flow, Simulation and Synthesis |
| T229202128 | Digital Image Processing Lab | Lab | 1 | Image Filtering, Edge Detection, Image Compression Techniques, Morphological Operations, Image Segmentation Algorithms |
| T229202129 | Computer Networks Lab | Lab | 1 | Network Configuration, Socket Programming, Routing Protocols, Network Security Tools, Packet Analysis |
| T229202130 | Industrial Training / Mini Project | Project | 2 | Industry Exposure, Problem Identification, Project Planning, Technical Implementation, Report Writing |
| T229202131 | Entrepreneurship and Start-up Management | Core | 1 | Entrepreneurial Mindset, Business Idea Generation, Business Plan Development, Startup Funding, Marketing and Operations |
Semester 6
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202132 | Embedded Systems | Core | 4 | Embedded Processors and Microcontrollers, RTOS Concepts, Peripheral Interfacing, Sensors and Actuators, Embedded C Programming |
| T229202133 | Wireless Communication | Core | 4 | Wireless Channel Characteristics, Cellular System Concepts, Multiple Access Techniques, MIMO Systems, OFDM and Spread Spectrum |
| T229202134 | Optical Fiber Communication | Program Elective 3 (Illustrative) | 3 | Optical Fiber Structure, Light Sources and Detectors, Optical Amplifiers, Link Design, Wavelength Division Multiplexing (WDM) |
| T229202135 | Data Communication Networks | Program Elective 4 (Illustrative) | 3 | Network Topologies, Data Link Control, Packet Switching, Routing Algorithms, Congestion Control |
| T229202136 | Embedded Systems Lab | Lab | 1 | Microcontroller Programming, Sensor Interfacing, Motor Control, RTOS Task Management, IoT Edge Device Development |
| T229202137 | Wireless Communication Lab | Lab | 1 | RF Circuit Design, Antenna Measurement, Wireless Transceiver Modules, Modulation/Demodulation, Wireless Network Simulation |
| T229202138 | Optical Fiber Communication Lab | Lab | 1 | Fiber Optic Link Loss Measurement, Numerical Aperture Measurement, Bit Error Rate Analysis, Optical Power Budgeting, Fiber Splicing |
| T229202139 | Data Communication Networks Lab | Lab | 1 | Network Simulation Tools, TCP/IP Protocol Analysis, Routing Protocol Implementation, Network Performance Evaluation, Network Security Concepts |
| T229202140 | Project Phase – I | Project | 3 | Problem Definition, Literature Survey, Requirement Analysis, System Design, Project Proposal |
| T229202141 | Universal Human Values | Mandatory Non-Credit | 0 | Self-Exploration, Harmony in Self, Harmony in Family, Harmony in Society, Harmony in Nature |
Semester 7
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202142 | Antenna and Wave Propagation | Core | 4 | Antenna Fundamentals, Radiation Patterns and Parameters, Antenna Types (Dipole, Yagi, Patch), Wave Propagation Modes, Link Budget Calculations |
| T229202143 | Microwave Engineering | Core | 4 | Microwave Devices (Klystron, Magnetron), Transmission Lines, Waveguides, S-Parameters, Microwave Measurements |
| T229202144 | Industrial Automation | Program Elective 5 (Illustrative) | 3 | PLCs and SCADA Systems, Distributed Control Systems (DCS), Industrial Sensors and Actuators, Robotics in Automation, Process Control Strategies |
| T229202145 | Machine Learning for Signal Processing | Program Elective 6 (Illustrative) | 3 | Introduction to Machine Learning, Supervised and Unsupervised Learning, Feature Extraction for Signals, Signal Classification and Recognition, Deep Learning Basics |
| T229202146 | Antenna and Wave Propagation Lab | Lab | 1 | Antenna Radiation Pattern Measurement, Gain and Directivity Calculation, VSWR Measurement, Antenna Impedance Matching, Wave Propagation Simulation |
| T229202147 | Microwave Engineering Lab | Lab | 1 | Klystron/Magnetron Characteristics, Microwave Component Characterization, S-Parameter Measurement, Directional Coupler Design, VSWR and Power Measurement |
| T229202148 | Project Phase – II | Project | 4 | System Implementation, Module Integration, Testing and Debugging, Performance Evaluation, Interim Report |
| T229202149 | Industrial Automation Lab | Elective Lab (Illustrative) | 1 | PLC Programming, SCADA System Configuration, Robotics Control, Sensor Interfacing for Automation, Process Control Simulation |
| T229202150 | Machine Learning for Signal Processing Lab | Elective Lab (Illustrative) | 1 | Signal Feature Extraction, Supervised Learning Models, Unsupervised Learning Algorithms, Deep Learning for Audio/Image, Model Evaluation |
Semester 8
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| T229202151 | Managerial Economics and Financial Analysis | Core | 3 | Demand and Supply Analysis, Market Structures, Cost and Production Analysis, Financial Statements, Capital Budgeting |
| T229202152 | Internet of Things | Program Elective 7 (Illustrative) | 3 | IoT Architecture, Sensors, Actuators, and Gateways, IoT Communication Protocols, Cloud Platforms for IoT, IoT Security and Privacy |
| T229202153 | Advanced Wireless Networks | Program Elective 8 (Illustrative) | 3 | 5G and Beyond Technologies, Cognitive Radio Networks, Software Defined Networking (SDN), Network Function Virtualization (NFV), IoT Networks and Security |
| T229202154 | Project Phase – III | Project | 6 | Final System Integration, Comprehensive Testing, Result Analysis, Project Documentation, Presentation and Viva |
| T229202155 | Seminar | Core | 1 | Technical Literature Review, Presentation Skills, Research Methodology, Topic Selection, Report Preparation |
| T229202156 | Industrial Internship / Capstone Project | Internship/Project | 3 | Real-world Industry Experience, Application of Engineering Principles, Problem Solving in Industry, Professional Networking, Career Development |




