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Department of Electronics & Communication Engineering

BE

Electronics & Communication Engineering

GTU

Affiliation

4 Years

Duration

30

Total Intake

ME

Electronics & Communication Engineering

GTU

Affiliation

2 Years

Duration

18

Total Intake

Department of Electronics & Communication Engineering

(Bachelor of Engineering in Electronics & Communication Engineering)

BE

Electronics & Communication Engineering

GTU

Affiliation

4 Years

Duration

30

Total Intake

ME

Electronics & Communication Engineering

GTU

Affiliation

2 Years

Duration

18

Total Intake

Eligibility Criteria

About Department

Electronics and Communication Engineering (ECE) is a branch of engineering that focuses on the study of electronic devices, circuits, communication systems, signal processing, and related technologies. It combines elements of both electronics (hardware) and communication (software and systems), and is one of the most sought-after fields of study in the engineering domain. Here’s an overview of both undergraduate (UG) and postgraduate (PG) studies in this field.

Vision

To be a centre of excellence in Electronics and Communication Engineering by nurturing innovation, research, and ethical values to produce globally competent professionals who contribute to technological advancement and societal development.

Program Outcomes (POs)

Mission

Program Specific Outcomes(PSOs)

Course Outcomes(COs)

Semester

Course Code /
Name

Course Outcomes

3

Control Systems (3131101)

CO-1 Analyze and Evaluate system behavior in time and frequency domains based on the mathematical model of the system.
CO-2 Apply control theory to linear system for system modeling using differential equations and transfer function realizations.
CO-3 Analyze and apply all the stability techniques for closed loop system performance parameters.
CO-4 Comprehend the need of different types of controllers and compensators to obtain the required dynamic response of the system.
CO-5 Synthesis system equations for state space models of linear systems.

Digital System Design (3131102)

CO-1 apply the knowledge of digital number systems, Boolean algebra, and logic gates for logic function minimization.
CO-2 design and analysis combinational and sequential circuits
CO-3 design synchronous and asynchronous circuits FSM.
CO-4 comprehend the digital logic families and PLDs
CO-5 implement digital circuits using Verilog based VLSI design flow

NETWORK THEORY
(3131103)

CO-1 analyse passive circuits using various networks theorems
CO-2 analyze and evaluate the transfer functions using classical and transform methods
CO-3 evaluate two port parameters for the given two port network configurations .
CO-4 comprehend the basics of network topologies ,graph theory and network synthesis
CO-5 synthesis the knowledge of Circuit theory to electrical and electronic circuits

4

ANALOG CIRCUIT DESIGN(3141002)

CO-1 To analyse transistor circuits at high-frequency as well as various application circuits such as Oscillator, Differential Amplifier, etc.
CO-2 To analyse various feedback topologies.
CO-3 To analyse and design various application circuits using op-amp and 555 timers including active filters.
CO-4 To analyse various power amplifier circuits and power supply regulator.
CO-5 To analyse operation of PLL and other specialized application circuits.

SIGNAL AND SYSTEMS (3141005 )

CO-1 Understand about various types of signals, classify them, analyze them, and perform various operations on them.
CO-2 Understand about various types of systems, classify them, analyze them and understand their response behavior.
CO-3 Appreciate use of transforms in analysis of signals and system.
CO-4 Carry simulation on signals and systems for observing effects of applying various properties and operations.
CO-5 Create strong foundation of communication and signal processing to be studied in the subsequent semester

Microprocessor and Microcontroller (3141008)

CO-1 Explain the architecture of 8085 microprocessor and AVR 8-bit Microcontroller
CO-2 Differentiate microprocessor and microcontroller and Describe the importance and function of each pin of AVR ATmega32 Microcontroller
CO-3 Learn and analyze assembly language programs for AVR Microcontroller
CO-4 Develop embedded C language programs for AVR Microcontroller 25
CO-5 Interface I/O peripheral devices with AVR microcontroller to develop embedded system

Electronic Measurement Laboratory(3141010)

CO-1. Design and validate DC and AC bridges
CO-2. Analyze the dynamic response and the calibration of few instruments
CO-3. Learn about various measurement devices, their characteristics, their operation and their limitations
CO-4. understand statistical data analysis
CO-5. Understand computerized data acquisition

5

Analog and Digital Communication (3151104)

CO-1 Understand the Basics of Analog and Digital Communication Systems and Modulation as well as Transmission Techniques.
CO-2 Analyse the various Analog and Digital Modulation and Transmission Techniques
CO-3 Implement the Analog and Digital Communication Systems.

VLSI Design(3151105)

CO-1 Describe working of MOSFET and develop its mathematical model
CO-2 Analyze, design, and simulate various static CMOS circuits
CO-3 Analyze and simulate various dynamic CMOS circuits
CO-4 Prepare layout of MOSFET based circuits
CO-5 Understand CMOS latch-up, clocking strategy, and testing principles
CO-6 Write programs in VHDL/Verilog for digital circuits and realize them on FPGA/CPLD

Advance Microcontroller(3151107)

CO-1 Explain architecture and programming model of ARM 7TDMI
CO-2 Learn and analyse assembly language programs for ARM microcontroller
CO-3 Develop Embedded C language program for interfacing I/O devices with ARM microcontroller and use it
CO-4 Exemplify memory management system of ARM and different versions of ARM 15
CO-5 Design ARM based system to solve real life challenges

Python Programming (3151108)

CO-1 To test and debug code written in python
CO-2 To create applications using Python Programming
CO-3 To perform file operations to read and write data in files
CO-4 To write programs for general purpose I/O devices using MicroPython

6

Antennas and Propagation(3161003)

CO-1 Understand the radiation phenomenon and identify different types of antennas
CO-2 Create strong foundation of basic antenna parameters.
CO-3 Design and analyze different antennas, antenna arrays and matching / feeding networks for antennas
CO-4 Demonstrate the antenna measurement techniques.
CO-5 Understand the fundamentals of radio-wave propagation

Fiber Optic Communication (3161005)

CO-1 To understand the principles and operation of fibre optic communication system
CO-2 To be familiar with use of various optical components constituting optical fiber links and to calculate different kind of losses and signal distortion
CO-3 Design an optical fiber link with encapsulation of different system components.
CO-4 Understand the measurement techniques for performance parameters of optical fiber

Sensors and Transducers
(3161008)

CO-1 Understand the principles of various sensors and transducers for measurement and instrumentation.
CO-2 Evaluate various measurements techniques for industrial applications
CO-3 Apply signal conditioning for measurements
CO-4 Implement the principles and signal conditioning for measurement for real life applications.

Satellite Communication (3161010)

CO-1 Visualize the architecture of satellite systems as a means of high speed, high range communication system
CO-2 State various aspects related to satellite systems such as orbital equations, subsystems in a satellite, link budget, modulation and multiple access schemes
CO-3 Solve numerical problems related to orbital motion and design of link budget the given parameters and conditions

Web Technology(3161012)

CO-1 Implement interactive web page(s) using HTML, CSS and JavaScript
CO-2 Design a responsive web site using HTML5 and CSS3
CO-3 Demonstrate use of web technology
CO-4 Build Dynamic website using server-side PHP Programming
CO-5 Design web page to control devices for IoT application

7

Microwave Theory and Techniques(3171001)

CO-1. Understand various microwave system components and their properties.
CO-2. Appreciate that during analysis/ synthesis of microwave systems, the different mathematical treatment is required compared to general circuit analysis.
CO-3. Design microwave systems for different practical applications.

Digital Signal Processing(3171003)

CO-1 Formulate engineering problems in terms of DSP tasks
CO-2 Analyse digital and analog signals and systems
CO-3 Analyse discrete time signals in frequency domain
CO-4 Design digital filters

Wireless Communication(3171004)

CO-1 Understand the basic concepts of radio propagation and various aspects of cellular system design.
CO-2 Understand the emerging trends in Wireless communication like WiFi, WiMAX, Software Defined Radio (SDR) and related issues and challenges.
CO-3 Compare the mobile radio standards i.e. GSM, CDMA, GPRS etc. for wireless systems.
CO-4 Explore and select the mobile radio propagation model for system design
CO-5 Analyze various multiple access techniques i.e. TDMA, FDMA, CDMA towards effective radio resource management.

Introduction of Artificial Intelligence(3171105)

CO-1 Understand the basics of Artificial Intelligence
CO-2 Use various search methods and algorithms for finding optimal cost solutions
CO-3 Understand various algorithms for planning
CO-4 Understand various Game Playing techniques
CO-5 Write python programs for NLP, ML and DL

Internet of Things(3171108)

CO-1 Understand IoT architecture
CO-2 Program Embedded IoT devices
CO-3 Use IoT protocol to upload sensor data and to control devices
CO-4 Design IoT application

Radar and Navigational Aids(3171110)

CO-1 Gain familiarity with the basics of Radar,significance of Radar parameters and its applications
CO-2 Understand the working of pulsed and CW Radar transmitters and receivers
CO-3 Understand Radar signal detection techniques and different types of radars
CO-4 Understand principles of navigation and modern navigational techniques with their applications

8

Internship(3181101)

CO-1 Undertake problem identification, formulation and solution
CO-2 Design engineering solutions to complex problems utilising a systematic approach and team work
CO-3 Communicate with engineers and the community at large in written and oral forms
CO-4 Demonstrate the knowledge and understanding of engineering and management principle and apply it to assigned project

Laboratories Overview

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