Alard University

B. Tech Electronics & Telecommunication Engineering

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OVERVIEW

The Department of Electronics & Telecommunication Engineering is committed to provide quality education to students while focusing on research, with the ultimate goal of producing technologies that have significant impact on society.

Our faculties are highly qualified and regarded in their fields. Students of the department have access to state-of-art laboratories equipped with the latest computing and engineering technologies. The department gives ample industrial exposure and integrates practical and theoretical knowledge in the curriculum.

About Curriculum

The four-year academic program at Alard University lays emphasis on computer programming, digital and analogy electronics, networking and telecommunications, design and project works, etc. The curriculum provides a strong foundation in every area of computer science and engineering, integrating classroom-based teachings with practical training and internship programs. It equips students with vast knowledge related to Calculus, Algorithms, Computer Architecture, Database Learning, and more. The curriculum is designed to be continuously upgraded and revamped to prepare students with all necessary competencies to excel and become future-ready professionals.

HIGHLIGHTS OF THE PROGRAM

01

Industry-Relevant Curriculum

02

Hands on Experience

03

Collaborative Environment

04

Industry Connections

05

Guest Lectures and Workshop

06

Portfolio Development

07

Content Creative Expression

08

Career Opportunities

Lab Facilities

  1. Basic Electronics & Circuit Lab

The aim of this laboratory is to give practical exposure to students on various electronic components, semiconductor devices and electronics instruments which facilitate to design basic electronic circuits and analyze their characteristics. The laboratory caters to the courses on basic electronic devices and analog electronic circuits enabling the students to verify the theoretical concepts of electronic devices and circuits. This laboratory also includes the analysis of analog electronic circuits using hardware kits as well as on MULTISIM/ORCAD spice simulator.

  1. Communication Engineering Lab

This laboratory includes hardware kits as well software simulator to analyze different analog and digital communication systems in time and frequency domain. The main focus is to train the students to design the circuits for transmission and reception of analog and digital signals. Analysis of various analog/digital modulators and de-modulators circuits can be performed. The laboratory is also equipped with advanced trainer kits to learn the concepts of practical communication systems including optical communication, satellite communication etc

  1. Power Electronics Lab

The lab aims at imparting practical knowledge of power electronics to the students at various levels.It is accordingly well equipped with experiments and trainer kits to teach practical from fundamental to high level concepts to the students.Learn the different characterstics of power electronics devicesand understand the operation of controllers and choppers.

  1. Digital Signal Processing & VLSI Lab

This laboratory provides a modern introduction to logic design and the basic building blocks used in digital system. It deals with sequential circuits, random access memories, and modern logic devices such as field programmable logic gates. The laboratory integrates hands-on experience with modern computer-aided design software including logic simulation, minimization and an introduction of the use of hardware description language (VHDL/ Verilog HDL).

  1. Digital Electronics Lab

The laboratory houses the equipment for conducting digital system design lab course and integrated circuits lab course. The aim of this laboratory is to acquire the basic knowledge of digital logic levels and to design and verify basic digital electronics circuits. It includes designing and testing of combinational circuits, sequential circuits, digital logic families and programmable devices. The laboratory also introduces the basic building blocks of linear integrated circuits to understand fundamental characteristics of op-amps.

  1. Microprocessor & Microcontroller Lab

This laboratory familiarizes the students with basic architecture and operation of 8085, 8086 microprocessors. The laboratory is helpful in developing programming techniques and debugging skills. It also includes 8085 interfacing to various I/O devices and peripheral devices such as RS-232C, 8155/8255. The laboratory provides a platform to the students to design and develop real time projects.

  1. Research and Development Lab

1.To create awareness and opportunities in Research, Innovation and Development among the faculty and students.
2.To promote Interdisciplinary/Multidisciplinary research.
3.To identify the thrust area of research of each university department, and form related cluster groups/frontline, teams/consortia of research.
4.To generate of innovative ideas and solutions to the academic and societal problems.

  1. Robotics Lab

1. Conduct research to advance the field of robotics, exploring new technologies, algorithms, and methodologies that can enhance the capabilities of robots.
2. Foster innovation in robotics by developing new robotic systems, components, and solutions that can address real-world problems
3. Facilitate collaboration between researchers, engineers, and experts from various disciplines to encourage interdisciplinary approaches to solving complex problems in robotics.

ABOUT PROGRAM

Short Brief About the Program

The B. Tech program in Electronics and Telecommunication Engineering prepares its students for an illustrious career in Electronics, communication and IT industry the field of Electronics and Telecommunication Engineering is the utilization of complex apparatus and electronic mechanisms to produce state of the art telecommunication systems capable of processing information at incredible speeds. Specialist engineers of this field design the electronic equipment devised to revolutionize the industries of entertainment, IT, communication and defense. As developments in communication technologies continue to shape and increasingly improve our daily lives, electronic engineers gain a crucial catalytic role in evolving modern society. As globalization continues, modern engineers face the exciting challenge of providing the technological infrastructure that will accommodate instant international communication. The curriculum of Electronics and Telecommunication Engineering equips students with a rigorous understanding of basic science and engineering concepts so that learners may acquire a full knowledge of computer architecture and microprocessors, VLSI and embedded systems, electromagnetic field theory, analog and digital communication, digital signal processing, microwave and broadband communications. Welcome to “Department of Electronics & Telecommunication” to code your dreams to reality and program your way to success.

Semester-wise subjects

SEMESTER 1
Mathematics -I
Applied Physics/ Applied Chemistry
Basic Electronics/ Electrical Engineering
Engineering Graphics
Fundamentals of Programming Language
Professional Communication Skills
Mini Project – I
Co-Curricular – I
SEMESTER 2
Mathematics -II
Applied Physics/ Applied Chemistry
Basic Electronics/ Electrical Engineering
Engineering Mechanics
Programming and Problem Solving
Mathematics in India: From Vedic Period to Modern Times
Mini Project – II
Co-Curricular – II
SEMESTER 3
Analog Electronic Circuit
Digital System Design
Electromagnetic Field Theory
Object Oriented Programming
Quantitative Analysis and Logical Thinking
Environmental Science
Field Project
SEMESTER 4
Microcontrollers and Applications
Analog & Digital Communication
Signal and System
Modern Indian Language
Emotional Intelligence
Ethics in IT
Mini Project – III
SEMESTER 5
Digital Signal Processing
Digital Communication
Control System Engineering
Program Elective – I
Data Base Management System
Entrepreneurship – I
SEMESTER 6
Cellular Networks
Power Devices & Circuits
UHF & Microwave
Program Elective – II
System programming & Operating System
Entrepreneurship – II
Mini Project – IV
SEMESTER 7
Digital Image Processing
VLSI Design and Technology
Program Elective – III
Program Elective – IV
Data Science and Big data Analysis
SEMESTER 8
Program Elective – V
Program Elective – VI
Internship – II
Project
Research Methodology
  • Well-equipped state-of-the-art laboratories with a total investment of INR 1 crore.
  • Active Entrepreneur Development cell to develop employer skills among students. During vacations, students undergo industry training to enhance their knowledge in various fields.
  • Provision for a semester-long internship with 24 credits for final-year students, in addition to summer/winter vacation internships and project stages from semester 1.
  • Inclusion of Entrepreneurship as part of the program.
  • Availability of Majors and Minors courses in the curriculum.
  • Promotion of MOOCs with provision for credit transfer.
  • Membership in professional bodies such as IEEE, IETE, ISTE, The International Association of Online Engineering, The International Association of Engineers, etc.

Eligibility

  • The Candidate should be an Indian National.
  • Passed HSC or its equivalent examination.
  • OR
  • Passed Diploma in Engineering.
  • OR
  • Passed Diploma in Engineering and Technology and obtained at least 50% marks (45% marks for Backward Class categories and Persons with Disability candidates belonging to Maharashtra State only).
  • The Candidate should be an Indian National.
  • Passed HSC or its equivalent examination.
  • OR
  • Passed Diploma in Engineering.
  • OR
  • Passed Diploma in Engineering and Technology and obtained at least 50% marks (45% marks for Backward Class categories and Persons with Disability candidates belonging to Maharashtra State only).

Fee Structure

Indian Nationals/NRI
Electronics & Telecommunication Engineering
INR 2,00,000 per year

FACULTY

Prof. Minal Sutar

Educational Details : B.E,M.E (ENTC)

Educational Details: B.E,M.E  (ENTC) 

Work Experience: 1 Years

Research Area: Image Processing 

Events

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