Department of Electronics & Telecommunication Engineering

About the Department

The Department of Electronics & Telecommunication Engineering at Ballarpur Institute of Technology is committed to providing quality technical education in the fields of Electronics, Communication, Embedded Systems, and emerging technologies. The department aims to develop technically competent engineers equipped with practical knowledge, innovation skills, professional ethics, and leadership qualities to meet the demands of industry and society.

The department provides a dynamic academic environment supported by qualified faculty members, modern laboratories, industry-oriented teaching methodologies, and advanced technical facilities. Emphasis is given to project-based learning, research activities, skill development, and industry interaction to prepare students for rapidly evolving technological advancements.

Prof. Ashish Manusmare - Head of Department – Electronics & Telecommunication Engineering

Prof. Ashish Manusmare

Head of Department – Electronics & Telecommunication Engineering

etc.bitballarpur@gmail.com

Qualifications

  • Pursuing Ph.D. in Electronics & Telecommunication Engineering
  • M.E in Electronics & Communication Engineering (ECE)

Areas of Expertise

Communication SystemsSignal ProcessingEmbedded SystemsMicrowave EngineeringAntenna DesignVLSI Design

Message from HOD

Welcome to the Department of Electronics & Telecommunication Engineering at Ballarpur Institute of Technology.

The field of Electronics and Telecommunication Engineering is continuously evolving and plays a vital role in shaping modern technology and communication systems. Our department is committed to providing quality technical education, practical exposure, and skill-based learning that prepares students to meet the challenges of the rapidly changing technological world.

We focus on developing strong technical knowledge, problem-solving abilities, innovation, professional ethics, and leadership qualities among our students. Through modern laboratories, project-based learning, industry interaction, workshops, seminars, and research activities, we strive to create an environment that encourages creativity and lifelong learning.

Our dedicated faculty members work tirelessly to guide students towards academic excellence, employability, entrepreneurship, and higher education opportunities. We believe in nurturing not only competent engineers but also responsible citizens who can contribute effectively to society.

I invite all students to make the best use of the opportunities provided by the department and continuously strive for excellence in their academic and professional journey.

Prof. Ashish Manusmare

Head of Department – Electronics & Telecommunication Engineering

Department of Electronics & Telecommunication Engineering

Department Summary

ProgramIntakeFacultyLabs
B.Tech300608
M.Tech180302

Research Details

40+ research papers published in various journals

9 patents granted

Research Areas & Domains

Communication Systems

Analog and digital communication, wireless networks, and modern transmission techniques.

Signal Processing

Digital signal processing, filtering, and analysis of signals for real-world applications.

Image Processing & Computer Vision

Image enhancement, pattern recognition, and vision-based intelligent systems.

VLSI & Semiconductor Technology

Chip design, ASIC/FPGA development, and semiconductor device technology.

Embedded Systems & IoT

Microcontroller-based systems, firmware development, and connected IoT devices.

Antenna & Microwave Engineering

Antenna design, microwave circuits, and RF system development.

Robotics & Automation

Intelligent robotics, control systems, and industrial automation.

Our Vision

To empower students of Electronics and Telecommunication Engineering with technical excellence, innovation, ethical values, and lifelong learning skills to become successful professionals and responsible contributors to society and industry.

Our Mission

  • To provide strong technical knowledge through effective teaching, modern laboratories, and industry-oriented curriculum.
  • To develop competent, ethical, and employable graduates with leadership, communication, and teamwork skills.
  • To encourage innovation, research, entrepreneurship, and lifelong learning in emerging technologies.
  • To strengthen industry and academic collaboration for skill development and societal advancement.

Department Highlights

Highly Experienced Faculty Team with most members having 10+ years of teaching and industry experience.
Regular academic events, technical workshops, and student exhibitions.
Comprehensive internship support and practical academic projects.
Good placement record in electronics, communication, and IT industries.
Smart classrooms with projectors and digital learning facilities.
Well-equipped electronics laboratories with modern, industry-standard equipment.
Hands-on learning through regular workshops, seminars, and training programs.
Outcome-Based Education (OBE) approach ensuring measurable learning outcomes.

120+

Total Students

8+

Faculty Members

75%

Placement Rate

Facilities & Laboratories

Basic Electronics Laboratory
Electronics Devices and Circuits Laboratory
Digital Electronics Laboratory
Analog and Digital Communication Laboratory
Microprocessor and Microcontroller Laboratory
Signal and System Laboratory
Microwave Engineering Laboratory
Digital Signal Processing Laboratory
Modern laboratories with advanced equipment and software
Departmental library with textbooks and reference books
High-speed Internet and Wi-Fi connectivity
Seminar hall for workshops, guest lectures, and technical events
Industry interaction and internship support
Student professional bodies

Program Objectives

Program Educational Objectives (PEO's)

  • PEO1: Perform effectively in electronics, communication, and allied industries through technical competence and modern engineering practices.
  • PEO2: Apply innovation, emerging technologies, and entrepreneurial skills to solve industrial challenges.
  • PEO3: Demonstrate leadership, teamwork, communication, and professional ethics in multidisciplinary work environments.

Program Specific Outcomes (PSO's)

  • Apply the concepts of electronics, communication, signal processing, embedded systems, and related technologies to analyse and solve real-world engineering problems.
  • Design and develop electronic and communication systems using modern tools and emerging technologies for industrial, research, and societal applications.

Program Outcomes (PO's)

  • PO1 – Engineering Knowledge: Apply knowledge of mathematics, science, engineering fundamentals, and Electronics & Telecommunication Engineering to solve complex engineering problems.
  • PO2 – Problem Analysis: Identify, formulate, review research literature, and analyze complex engineering problems using first principles of mathematics, natural sciences, and engineering sciences.
  • PO3 – Design/Development of Solutions: Design solutions for complex engineering problems and develop systems, components, or processes considering public health, safety, cultural, societal, and environmental aspects.
  • PO4 – Conduct Investigations of Complex Problems: Use research-based knowledge and methods including design of experiments, analysis, interpretation of data, and synthesis of information.
  • PO5 – Modern Tool Usage: Create, select, and apply appropriate modern engineering and IT tools, including simulation and modeling techniques, for complex engineering activities.
  • PO6 – The Engineer and Society: Apply reasoning to assess societal, health, safety, legal, and cultural issues relevant to engineering practice.
  • PO7 – Environment and Sustainability: Understand the impact of engineering solutions and demonstrate knowledge of sustainable development.
  • PO8 – Ethics: Apply ethical principles and commit to professional ethics, responsibilities, and engineering practices.
  • PO9 – Individual and Team Work: Function effectively as an individual and as a member or leader in diverse and multidisciplinary teams.
  • PO10 – Communication: Communicate effectively on complex engineering activities through reports, presentations, and documentation.
  • PO11 – Project Management and Finance: Demonstrate knowledge of engineering management principles and apply them in multidisciplinary environments.
  • PO12 – Life-long Learning: Recognize the need for and engage in independent and lifelong learning in the context of technological advancements.

Career Opportunities

VLSI Design Engineer: chip design, ASIC/FPGA design, verification, and physical design with companies such as Intel, Qualcomm, and AMD; one of the highest-paying core ECE fields.
Embedded Systems Engineer: microcontrollers, firmware development, RTOS, and IoT devices across automotive, healthcare, and consumer electronics.
Telecommunication Engineer: 4G/5G networks, optical communication, and wireless systems with telecom operators and equipment manufacturers.
IoT Engineer: smart devices, automation, sensors, and connected systems driven by Industry 4.0 and smart-city projects.
AI/ML Engineer: signal processing, computer vision, and intelligent communication systems for students skilled in Python and AI.
Network Engineer: computer networks, cybersecurity, and cloud networking in IT and telecom sectors.
Software Engineer: software development, testing, and system engineering roles.
Government Sector Jobs: ISRO, DRDO, BEL, Railways, PSUs, and scientific organizations.
Research and Higher Studies: M.Tech, MS, or Ph.D. in VLSI, Communication Systems, Signal Processing, AI, or Robotics.

Department Gallery