
BE
Electronics & Communication Engineering
GTU
Affiliation
4 Years
Duration
30
Total Intake
ME
Electronics & Communication Engineering
GTU
Affiliation
2 Years
Duration
18
Total Intake
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
Semester |
Course Code / |
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. |
Digital System Design (3131102) |
CO-1 apply the knowledge of digital number systems, Boolean algebra, and logic gates for logic function minimization. |
|
NETWORK THEORY |
CO-1 analyse passive circuits using various networks theorems |
|
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. |
SIGNAL AND SYSTEMS (3141005 ) |
CO-1 Understand about various types of signals, classify them, analyze them, and perform various operations on them. |
|
Microprocessor and Microcontroller (3141008) |
CO-1 Explain the architecture of 8085 microprocessor and AVR 8-bit Microcontroller |
|
Electronic Measurement Laboratory(3141010) |
CO-1. Design and validate DC and AC bridges |
|
5 |
Analog and Digital Communication (3151104) |
CO-1 Understand the Basics of Analog and Digital Communication Systems and Modulation as well as Transmission Techniques. |
VLSI Design(3151105) |
CO-1 Describe working of MOSFET and develop its mathematical model |
|
Advance Microcontroller(3151107) |
CO-1 Explain architecture and programming model of ARM 7TDMI |
|
Python Programming (3151108) |
CO-1 To test and debug code written in python |
|
6 |
Antennas and Propagation(3161003) |
CO-1 Understand the radiation phenomenon and identify different types of antennas |
Fiber Optic Communication (3161005) |
CO-1 To understand the principles and operation of fibre optic communication system |
|
Sensors and Transducers |
CO-1 Understand the principles of various sensors and transducers for measurement and instrumentation. |
|
Satellite Communication (3161010) |
CO-1 Visualize the architecture of satellite systems as a means of high speed, high range communication system |
|
Web Technology(3161012) |
CO-1 Implement interactive web page(s) using HTML, CSS and JavaScript |
|
7 |
Microwave Theory and Techniques(3171001) |
CO-1. Understand various microwave system components and their properties. |
Digital Signal Processing(3171003) |
CO-1 Formulate engineering problems in terms of DSP tasks |
|
Wireless Communication(3171004) |
CO-1 Understand the basic concepts of radio propagation and various aspects of cellular system design. |
|
Introduction of Artificial Intelligence(3171105) |
CO-1 Understand the basics of Artificial Intelligence |
|
Internet of Things(3171108) |
CO-1 Understand IoT architecture |
|
Radar and Navigational Aids(3171110) |
CO-1 Gain familiarity with the basics of Radar,significance of Radar parameters and its applications |
|
8 |
Internship(3181101) |
CO-1 Undertake problem identification, formulation and solution |

The Electronic Devices and Circuits Lab offers hands-on experience with basic electronic components and circuits. It helps students understand the practical working of diodes, transistors, and amplifiers, supporting their theoretical learning in electronics.

The Digital Electronics Lab provides practical knowledge of logic gates, combinational and sequential circuits. It helps students design, implement, and test digital systems, reinforcing their understanding of digital logic and circuit behavior.

The Microprocessor and Microcontroller Lab offers hands-on experience in programming and interfacing microprocessors and microcontrollers. Students learn to develop basic applications, control hardware devices, and understand system architecture.

The Communication Systems Lab enables students to understand and analyze analog and digital communication techniques. It provides hands-on experience with modulators, demodulators, transmitters, and receivers, reinforcing core communication concepts.

The Digital Signal Processing (DSP) Lab provides practical experience in analyzing and processing signals using DSP algorithms. Students learn to implement filters, Fourier transforms, and real-time signal processing using software and hardware tools.

The VLSI Design Lab offers hands-on experience in designing and simulating integrated circuits using VHDL/Verilog. Students learn to develop digital systems and implement them using FPGA and EDA tools.

The Embedded Systems Lab provides practical training in designing and developing embedded applications using microcontrollers and real-time interfaces. Students learn programming, interfacing sensors, and controlling devices for real-world solutions.