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B-TECH in Electronics Communication Engineering at Amity University, Kolkata

Amity University, Kolkata stands as a premier private institution in Kolkata, West Bengal, established in 2015. Recognized by UGC and a member of AIU, it offers a wide array of programs across diverse disciplines. The university boasts a 10-acre campus and focuses on academic excellence and holistic development. It has notable placement records, with a highest package reaching INR 46.47 LPA.

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Kolkata, West Bengal

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About the Specialization

What is Electronics & Communication Engineering at Amity University, Kolkata Kolkata?

This Electronics & Communication Engineering program at Amity University, North 24 Parganas, focuses on a comprehensive understanding of electronic devices, circuits, communication systems, and embedded technologies. It prepares students for a dynamic Indian industry landscape driven by digital transformation, telecommunications advancements, and the burgeoning IoT sector. The program emphasizes both theoretical foundations and practical applications crucial for innovation in electronics.

Who Should Apply?

This program is ideal for fresh graduates with a strong aptitude in Physics, Chemistry, and Mathematics (PCM) from 12th standard, seeking entry into the core electronics, telecommunications, or IT sectors. It also suits individuals passionate about hardware design, communication technologies, and embedded systems, who aspire to contribute to India''''s technological growth and digital infrastructure.

Why Choose This Course?

Graduates of this program can expect diverse career paths in India as design engineers, R&D engineers, network engineers, embedded system developers, or telecom specialists. Entry-level salaries typically range from INR 3-6 LPA, growing significantly with experience. Opportunities abound in companies like TCS, Wipro, Capgemini, Infosys, and core electronics firms, with potential for leadership roles in rapidly evolving tech domains.

Student Success Practices

Foundation Stage

Master Engineering Fundamentals- (Semester 1-2)

Focus intensely on core subjects like Engineering Mathematics, Physics, and Basic Electrical Engineering. Utilize online platforms like NPTEL for conceptual clarity and practice problems regularly. This strong foundation is crucial for understanding advanced ECE concepts and excelling in competitive exams like GATE later on.

Tools & Resources

NPTEL, Khan Academy, Reference textbooks

Career Connection

Strong fundamentals aid in understanding core ECE subjects and performing well in technical interviews for all engineering roles.

Develop Programming & Problem-Solving Skills- (Semester 1-2)

Learn C/C++ thoroughly and practice coding on platforms like HackerRank or LeetCode. Engage in competitive programming to sharpen logical thinking. Early proficiency in programming is vital for embedded systems, digital signal processing, and software development roles often intertwined with ECE.

Tools & Resources

HackerRank, LeetCode, GeeksforGeeks, C/C++ compilers

Career Connection

Essential for roles in embedded software, DSP algorithms, and general software development within ECE companies.

Engage in Hands-on Lab Work- (Semester 1-2)

Pay close attention during physics, electrical, and computer labs. Actively participate, ask questions, and try to understand the practical implications of theoretical concepts. Building and troubleshooting circuits in labs lays the groundwork for practical engineering and strengthens problem-solving abilities essential for future projects and internships.

Tools & Resources

Lab manuals, Breadboards, Multimeters, CROs

Career Connection

Develops practical skills highly valued in hardware design, testing, and R&D engineering roles.

Intermediate Stage

Build a Strong ECE Core- (Semester 3-5)

Deep dive into Analog and Digital Electronics, Signals & Systems, and Microprocessors. Supplement classroom learning with MOOCs from Coursera/edX on specific topics. Actively participate in departmental workshops and technical events to apply theoretical knowledge and gain practical insights.

Tools & Resources

Coursera, edX, NPTEL ECE courses, Departmental workshops

Career Connection

Forms the backbone for specialized ECE roles in communication, embedded, and VLSI domains.

Seek Industry Exposure & Internships- (Semester 4-5 (during summer breaks))

Actively look for summer internships or part-time projects in relevant companies (telecom, embedded, electronics manufacturing). Leverage university career services, LinkedIn, and professional networks. Early industry exposure helps in understanding market demands and building a professional network for future placements.

Tools & Resources

LinkedIn, Internshala, University Career Services

Career Connection

Gains practical experience, helps identify career interests, and significantly boosts resume for placements.

Participate in Technical Competitions & Clubs- (Semester 3-5)

Join ECE student clubs and participate in hackathons, circuit design challenges, or robotics competitions. This fosters teamwork, innovation, and practical problem-solving skills beyond the curriculum. Showcase these experiences on your resume to demonstrate initiative and specialized skills to potential employers.

Tools & Resources

IEEE Student Chapter, Robotics Club, Local/National Hackathons

Career Connection

Develops project management, teamwork, and innovation skills, making you a more attractive candidate.

Advanced Stage

Specialize through Electives & Projects- (Semester 6-8)

Choose electives aligning with your career interests (e.g., VLSI, AI/ML, IoT, Wireless Comm). Focus on a challenging major project, applying advanced ECE concepts and using relevant industry tools. A strong project portfolio is a significant advantage for placements and higher studies.

Tools & Resources

MATLAB/Simulink, Cadence/Synopsis EDA tools, Embedded development kits, Research papers

Career Connection

Showcases expertise in a specific domain, crucial for specialized job roles and higher education applications.

Intensive Placement Preparation- (Semester 6-8)

Start preparing for placements early. This includes aptitude tests, technical interviews covering core ECE subjects, and soft skills training. Utilize platforms like GeeksforGeeks, InterviewBit, and attend mock interview sessions organized by the university''''s placement cell.

Tools & Resources

GeeksforGeeks, InterviewBit, Aptitude test books, University Placement Cell

Career Connection

Directly impacts success in campus placements and securing desired job roles in top companies.

Network and Professional Development- (Semester 7-8)

Attend industry seminars, conferences, and career fairs to network with professionals. Consider professional certifications in areas like IoT, AI/ML, or Embedded Systems. Building a strong professional network and continuously updating skills are critical for long-term career growth in the fast-evolving ECE sector.

Tools & Resources

Industry conferences, Online certification platforms (e.g., edX, Coursera), IEEE membership

Career Connection

Opens doors to advanced career opportunities, mentorship, and staying relevant in the rapidly changing tech landscape.

Program Structure and Curriculum

Eligibility:

  • Min. 60% in 10th & 12th; Min. 60% in Physics, Chemistry, and Mathematics (PCM) in 12th grade.

Duration: 4 years (8 semesters)

Credits: Credits not specified

Assessment: Assessment pattern not specified

Semester-wise Curriculum Table

Semester 1

Subject CodeSubject NameSubject TypeCreditsKey Topics
Engineering Mathematics - ICore4Differential Calculus, Integral Calculus, Matrices and Determinants, Vector Algebra, Sequences and Series
Engineering Physics - ICore4Oscillations and Waves, Physical Optics, Modern Physics Introduction, Quantum Mechanics Basics, Electromagnetism Fundamentals
Basic Electrical EngineeringCore3DC Circuit Analysis, AC Fundamentals, Network Theorems, Transformers, Electrical Machines
Computer Programming & Problem SolvingCore3C Programming Basics, Data Types and Operators, Control Flow Statements, Functions and Arrays, Pointers and Structures
Engineering GraphicsCore2Orthographic Projections, Isometric Projections, Sectional Views, AutoCAD Introduction, Machine Drawing Conventions
Communication SkillsCore2Grammar and Vocabulary, Reading Comprehension, Writing Skills, Presentation Techniques, Group Discussion Etiquette
Engineering Physics Lab - ILab1Optics Experiments, Electrical Measurements, Mechanics Labs, Wave Phenomena, Material Properties
Basic Electrical Engineering LabLab1Circuit Laws Verification, AC/DC Circuit Analysis, Motor Characteristics, Transformer Testing, Power Measurement
Computer Programming & Problem Solving LabLab1C Program Implementation, Debugging Techniques, Algorithm Development, Array and String Operations, Function Calls and Recursion
Communication Skills LabLab1Listening Comprehension, Fluency and Pronunciation, Mock Presentations, Interview Practice, Public Speaking
Environmental StudiesCore2Ecosystems and Biodiversity, Environmental Pollution, Renewable Energy Resources, Waste Management, Environmental Legislation

Semester 2

Subject CodeSubject NameSubject TypeCreditsKey Topics
Engineering Mathematics - IICore4Vector Calculus, Laplace Transforms, Fourier Series, Partial Differential Equations, Complex Analysis Introduction
Engineering Physics - IICore4Semiconductor Physics, Lasers and Fiber Optics, Superconductivity, Dielectric and Magnetic Materials, Nanomaterials
Engineering ChemistryCore3Water Technology, Electrochemistry, Corrosion and its Control, Polymer Chemistry, Spectroscopy Fundamentals
Data StructuresCore3Arrays and Linked Lists, Stacks and Queues, Trees and Graphs, Sorting Algorithms, Searching Algorithms
Digital ElectronicsCore3Boolean Algebra and Logic Gates, Combinational Logic Circuits, Sequential Logic Circuits, Flip-Flops and Registers, Counters and Memory Devices
Professional Ethics & Human ValuesCore2Ethical Theories, Professionalism in Engineering, Environmental Ethics, Cyber Ethics, Human Values and Morals
Engineering Physics Lab - IILab1Semiconductor Device Characteristics, Laser Applications, Fiber Optics Experiments, Magnetic Hysteresis, Dielectric Constant Measurement
Engineering Chemistry LabLab1Volumetric Analysis, Conductometry, pH Metry, Viscosity Measurement, Water Hardness Determination
Digital Electronics LabLab1Logic Gate Implementation, Combinational Circuit Design, Flip-Flop and Counter Circuits, Multiplexers and Demultiplexers, Sequential Circuit Experiments
Data Structures LabLab1Array and Linked List Operations, Stack and Queue Implementations, Tree Traversal Algorithms, Graph Algorithms, Sorting and Searching Practice
Engineering Workshop PracticeLab1Carpentry Skills, Fitting Operations, Welding Techniques, Sheet Metal Work, Machine Shop Tools

Semester 3

Subject CodeSubject NameSubject TypeCreditsKey Topics
Engineering Mathematics - IIICore4Probability and Statistics, Random Variables, Numerical Methods, Complex Integration, Special Functions
Analog ElectronicsCore4Diode Characteristics and Applications, BJT and FET Amplifiers, Operational Amplifiers, Feedback Amplifiers, Oscillators and Waveform Generators
Signals & SystemsCore3Continuous-time Signals and Systems, Discrete-time Signals and Systems, Fourier Series and Transform, Laplace Transform, Z-Transform
Network Analysis & SynthesisCore3Network Theorems, Transient and Steady-State Analysis, Two-Port Networks, Resonance and Coupled Circuits, Filter Design Basics
Electronic Measurement & InstrumentationCore3Measurement of Electrical Quantities, Cathode Ray Oscilloscope (CRO), Transducers and Sensors, Bridges and Potentiometers, Data Acquisition Systems
Electromagnetic Field TheoryCore3Vector Calculus for EM, Electrostatics, Magnetostatics, Maxwell''''s Equations, Uniform Plane Wave Propagation
Analog Electronics LabLab1Diode Rectifiers and Clippers, Transistor Amplifier Design, Op-Amp Applications, Feedback Amplifier Circuits, Oscillator Implementation
Signals & Systems LabLab1Signal Generation using MATLAB/Scilab, LTI System Response Analysis, Fourier Series and Transform Applications, Laplace Transform Implementations, Z-Transform Practical Exercises
Electronic Measurement & Instrumentation LabLab1CRO Usage and Measurements, Transducer Characteristics, Bridge Circuit Analysis, Digital Multimeter Applications, Sensor Interfacing

Semester 4

Subject CodeSubject NameSubject TypeCreditsKey Topics
Microprocessors & MicrocontrollersCore48085/8086 Architecture, Instruction Set and Programming, Memory Interfacing, I/O Devices and Interfacing, Microcontroller Basics (e.g., PIC/AVR)
Control SystemsCore4System Modeling, Time Domain Analysis, Stability Analysis, Root Locus Technique, Frequency Domain Analysis (Bode/Nyquist)
Analog & Digital CommunicationCore3Amplitude Modulation (AM), Frequency and Phase Modulation (FM/PM), Sampling and Quantization, Pulse Code Modulation (PCM), Digital Modulation Techniques (ASK, FSK, PSK)
Linear Integrated CircuitsCore3Operational Amplifier (Op-Amp) Characteristics, Op-Amp Applications (Filters, Amplifiers), 555 Timer IC, Phase-Locked Loop (PLL), Voltage Regulators
Elective I (e.g., Data Communication Networks)Elective3OSI and TCP/IP Models, Network Topologies, Error Detection and Correction, Switching and Routing, Wireless Network Basics
Microprocessors & Microcontrollers LabLab1Assembly Language Programming, Interfacing with LEDs/LCDs, Timer/Counter Applications, Interrupt Programming, ADC/DAC Interfacing
Control Systems LabLab1Open-Loop and Closed-Loop Control, PID Controller Tuning, Servo Motor Control, System Response Analysis, Stability using MATLAB/Simulink
Analog & Digital Communication LabLab1AM/FM Modulation/Demodulation, Sampling and Reconstruction, PCM Generation, Digital Modulation (ASK, FSK, PSK), Noise Effects on Signals
Linear Integrated Circuits LabLab1Op-Amp Basic Circuits, Active Filter Design, Waveform Generator Circuits, 555 Timer Applications, Voltage Regulator Implementations
Minor ProjectProject2Problem Identification, Literature Survey, Design and Simulation, Prototyping and Testing, Report Writing

Semester 5

Subject CodeSubject NameSubject TypeCreditsKey Topics
Digital Signal ProcessingCore4Discrete Fourier Transform (DFT), Fast Fourier Transform (FFT), FIR Filter Design, IIR Filter Design, Multirate Digital Signal Processing
VLSI DesignCore4CMOS Technology, MOSFET Characteristics, CMOS Logic Gates, HDL (Verilog/VHDL) Programming, ASIC Design Flow
Computer Architecture & OrganizationCore3CPU Organization, Instruction Set Architecture, Memory Hierarchy, Input/Output Organization, Pipelining and Parallel Processing
Antennas & Wave PropagationCore3Antenna Parameters, Dipole and Monopole Antennas, Antenna Arrays, Microstrip Antennas, Wave Propagation Modes
Elective II (e.g., Internet of Things)Elective3IoT Architecture, Sensors and Actuators, IoT Communication Protocols, Cloud Platforms for IoT, IoT Security and Privacy
Digital Signal Processing LabLab1DFT and FFT Implementation, FIR Filter Design in MATLAB, IIR Filter Design in MATLAB, Signal Analysis using DSP tools, Audio Processing Applications
VLSI Design LabLab1HDL Programming (Verilog/VHDL), RTL Simulation and Synthesis, CMOS Layout Design, FPGA Prototyping, Timing Analysis
Simulation LabLab1Circuit Simulation using SPICE, System Simulation using MATLAB/Simulink, Network Simulation Tools, Electromagnetic Simulation, Analog/Digital System Modeling
Industrial Training / InternshipPractical3Industry Work Experience, Project Implementation, Professional Skill Development, Problem Solving in Real-world, Technical Report Writing

Semester 6

Subject CodeSubject NameSubject TypeCreditsKey Topics
Microwave EngineeringCore4Transmission Lines, Waveguides and Resonators, Microwave Devices (Klystron, Gunn Diode), S-Parameters and Network Analyzers, Microwave Antennas
Optical Fiber CommunicationCore3Optical Fibers Characteristics, Light Sources (LEDs, Lasers), Photodetectors, Optical Transmitters and Receivers, Optical Link Design
Embedded SystemsCore3Microcontroller Architecture (ARM), Embedded C Programming, Real-Time Operating Systems (RTOS), Interfacing Techniques, Embedded System Applications
Elective III (e.g., Artificial Intelligence & Machine Learning)Elective3Introduction to AI, Machine Learning Algorithms, Supervised Learning, Unsupervised Learning, Neural Networks Basics
Elective IV (e.g., Biomedical Instrumentation)Elective3Bio-potential Electrodes, Biomedical Sensors, ECG, EEG, EMG Systems, Blood Pressure Measurement, Medical Imaging Principles
Microwave Engineering LabLab1VSWR and Impedance Measurement, Microwave Component Characteristics, S-Parameter Measurement, Waveguide Experiments, Antenna Radiation Patterns
Optical Fiber Communication LabLab1Fiber Optic Link Design, Numerical Aperture Measurement, Fiber Attenuation Measurement, LED and Laser Characteristics, Detector Response
Embedded Systems LabLab1Microcontroller Programming, Sensor and Actuator Interfacing, RTOS Implementation, Serial Communication Protocols, Embedded Project Development
Major Project - IProject4Project Proposal Development, Extensive Literature Review, System Design and Architecture, Initial Implementation Phases, Progress Reporting

Semester 7

Subject CodeSubject NameSubject TypeCreditsKey Topics
Wireless CommunicationCore4Cellular System Concepts, GSM and CDMA Technologies, LTE and 5G Fundamentals, MIMO and OFDM Principles, Wireless Channel Characteristics
Digital Image ProcessingCore3Image Transforms (DFT, DCT), Image Enhancement Techniques, Image Restoration Methods, Image Segmentation, Image Compression
Elective V (e.g., Data Analytics for ECE)Elective3Data Collection and Preprocessing, Statistical Data Analysis, Data Visualization, Predictive Modeling, Big Data Technologies Overview
Elective VI (e.g., Robotics & Automation)Elective3Robot Kinematics and Dynamics, Robot Sensors and Actuators, Robot Control Architectures, Industrial Robotics Applications, Autonomous Systems Introduction
Wireless Communication LabLab1Channel Characterization, Modulation/Demodulation Schemes, Link Performance Evaluation, OFDM Simulation, Wireless Network Simulation
Digital Image Processing LabLab1Image Filtering Techniques, Edge Detection Algorithms, Image Segmentation using MATLAB/Python, Image Compression Implementation, Feature Extraction
Project/DissertationProject6Advanced Research Methodology, System Design and Development, Experimental Validation, Data Analysis and Interpretation, Thesis Writing and Presentation

Semester 8

Subject CodeSubject NameSubject TypeCreditsKey Topics
Technical SeminarCore2Advanced ECE Topics Presentation, Literature Review and Analysis, Technical Communication Skills, Critical Evaluation of Research, Interactive Discussion
Major Project - II / DissertationProject10Comprehensive Project Implementation, Thorough Testing and Validation, Performance Analysis, Final Project Report, Viva Voce Examination
Open Elective (e.g., Entrepreneurship Development)Elective3Entrepreneurial Mindset, Business Plan Creation, Market Research and Analysis, Funding and Venture Capital, Legal Aspects of Startups
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