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M.Tech (Digital Communication)

M.Tech (Digital Communication)

The M.Tech in Digital Communication program at Quantum University, recognized as one of the top engineering colleges in India, is tailored to equip students with advanced knowledge and skills in communication systems, signal processing, and network technologies. As the world transitions towards a more connected and data-driven society, the demand for professionals skilled in telecommunications, IoT systems, and digital networking has seen significant growth. This program bridges the gap between academic theory and industry applications, making it ideal for students aiming to specialize in cutting-edge communication technologies.

The curriculum offers an in-depth exploration of topics such as wireless communication, optical fiber technology, digital signal processing (DSP), and IoT-based communication systems, ensuring students are well-versed in both foundational principles and emerging technologies. Students also gain hands-on experience through state-of-the-art communication labs, real-world projects, and industry collaborations, enabling them to innovate and solve complex communication challenges.

With a focus on research and development, the program emphasizes sustainable communication technologies, 5G networks, satellite communication systems, and network security, preparing students to lead in India's telecommunication revolution. Whether aspiring to work in network infrastructure development, IoTimplementation, or signal processing design, graduates emerge with the expertise to drive innovation and excellence in this dynamic field. Quantum University's emphasis on practical learning and industry engagement ensures that students are ready to meet the demands of India's growing digital economy and contribute to the global technology landscape.

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Cutting-Edge Curriculum

Focus on 5G networks, IoT-based systems, digital signal processing, wireless communication, and optical fibertechnology.

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Hands-On Training

Access to advanced communication labs, simulation tools, and network analysis software for practical learning and innovation.

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Industry Collaboration

Collaborate with leaders in telecommunications and work on live projects that align with industry requirements.

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Career Opportunities

Graduates can pursue careers as communication engineers, IoT specialists, network administrators, signal processing analysts, and telecom consultants in India's telecom and IT sectors.

Program Overview

The M.Tech in Digital Communication program at Quantum University combines theoretical principles with practical exposure to advanced communication technologies. Students gain a strong foundation in signal processing, wireless communication systems, and optical networking, along with the technical expertise to design, develop, and optimize communication infrastructures.

The program emphasizes innovation in next-generation networks, IoT implementations, and 5G technologies, preparing students to tackle challenges in telecommunication advancements and network optimization. With access to communication labs, real-world projects, and industry internships, students acquire hands-on experience in cutting-edge communication systems and technologies.

Graduates from Quantum University are well-positioned to excel in telecommunication companies, IoT industries, network service providers, and academic research, contributing to India's Digital India initiative and the global communication technology ecosystem. Recognized for its focus on industry-aligned education, Quantum University ensures that students are fully prepared to thrive in this rapidly evolving and competitive field.

Program Structure

The M.Tech in Digital Communication at Quantum University is a specialized postgraduate program designed to equip students with in-depth knowledge and advanced skills in modern communication systems and networks. This program emphasizes both theoretical foundations and practical applications, preparing students to meet the demands of emerging technologies in wireless communication, signal processing, embedded systems, and network protocols. The curriculum is structured across key learning categories such as Discipline Specific Core (DSC), Discipline Specific Electives (DSE), Skill Enhancement Courses (SEC), Value Added Course (VAC), and Project. It fosters innovation, critical thinking, and technical expertise essential for addressing real-world communication challenges.

Teaching & Assessment

At Quantum University, the M.Tech in Digital Communication is delivered through a technology-driven, industry-aligned pedagogy. The teaching framework emphasizes application-oriented learning through: Classroom Lectures, Hands-on Lab Sessions, Expert Lectures from Industry and Academia, National/International Seminars, Technical Workshops, and Project-Based Learning.

Students gain proficiency in modern software tools and hardware platforms such as MATLAB, Simulink, Xilinx, LabVIEW, NS2/NS3, and other digital signal processing and communication simulation environments.

Assessment is carried out through a balanced blend of formative and summative evaluations including: Written Examinations and Quizzes, Technical Documentation and Simulations, Laboratory Experiments, Project Presentations and Viva Voce, and Comprehensive Dissertation Work.This comprehensive approach ensures that graduates of the M.Tech in Digital Communication program are well-prepared to contribute to cutting-edge developments in academia, research organizations, and high-tech industries.

Curriculum

  • Advanced Discrete Structure
  • Advanced Design and Analysis ofAlgorithm
  • Computer Network and DistributedSystems
  • Advanced Operating Systems
  • Advanced Computer Architecture
  • Advanced Operating Systems Lab
  • Seminar I
  • General Proficiency
  • Advanced Data Base ManagementSystem
  • Advanced Data Base ManagementSystem Lab
  • DSE-I
  • DSE-II
  • DSE-III
  • Seminar II
  • General Proficiency
  • DSE-IV
  • DSE-V
  • Final Project
  • Advanced Research Methodology
  • Research Methodology Lab
  • Seminar III
  • General Proficiency
  • Final Dissertation

Program Outcomes

Program Educational Objectives (PEO's)
PEO1
Analyze ans solve computer science and engineering problems using modem engineering tools in industry or in research establishments.
PEO2
Play key role in collaborative multidisciplinary scientific research with due onsideration to economical and financial factors for leading a successful career in industry or to pursue higher education or being an entrepreneure.
PEO3
Engage in life-long learning with professional code of conduct.
Program Specific Outcomes (PSO's)
PSO1
Apply Knowledge of engineering fundamentals to analyze and solve complex computer ecience and engineering problems.
PSO2
Provide engineering solutions to meet the specified needs with appropriate consideration for comfort, safety, social and environmental aspects.
Program Outcomes (PO's)
PO-01
Engineering Knowledge: Exhibit in-depth knowledge in computer engineering specialization.
PO-02
Problem Analysis: Think critically and analyze complex engineering problems to make creative advances in theory and practice..
PO-03
Design/Development of Solutions: An ability to design solutions for engineering problems and to design a component, system, or process that meet the specified needs with appropriate consideration for the public health and safety, along with the cultural, societal, and environmental considerations.
PO-04
Conduct Investigations of Complex Problems: Use research methodologies, techniques and tools, and will contribute to the development of technological knowledge.
PO-05
Modern tool usage: Apply appropriate techniques, modern engineering tools to perform modeling of complex engineering problems with knowing the limitations.
PO-06
The Engineer and Society: Achieve professional success with an understanding and appreciation of ethical behavior, social responsibility, and diversity, both as individuals and in team environments.
PO-07
Environment and Sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge for sustainable development to articulate a comprehensive world view that integrates diverse approaches to sustainability
PO-08
Communication: Communicate complex engineering problems with the engineering community and society, write and present technical reports effectively
PO-09
Ethics: Exhibit professional and intellectual integrity, ethics of research and scholarship and will realize the responsibility towards the community
PO-10
Individual and Team work: An ability to analyze the local and global impact of computing on individuals, organizations, and society.
PO-11
Project Management and Finance: Demonstrate knowledge and understanding of engineering and management principles and apply the same with due consideration to economical and financial factors.
PO-12
Life-long learning: Engage in life-long learning with a high level of enthusiasm and commitment to improve knowledge and competence continuously

Minor Degree Programs

At Quantum University, students have the freedom to expand their academic horizons beyond their core area of study. Through minor programs, they can choose courses from related or entirely different disciplines, encouraging interdisciplinary learning and personal growth. This flexible approach empowers students to design a well-rounded education, explore new interests, and develop diverse skill sets that prepare them for dynamic career opportunities.

Some of the MINOR Degrees being offered are:

  • Entrepreneurship & Startups
  • Foreign languages (French)
  • Media Management
  • Financial Literacy
  • Robotics & Automation
  • Microsoft Office
  • Culinary Arts
  • Data Analytics
  • Web Designing
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Experiential Learning

Experiential Learning in M.Tech Programs Quantum University's 2-year M.Tech programs offer an advanced and immersive educational experience, equipping students with cutting-edge technical expertise and research skills to excel in their specialized domains. Designed for engineering graduates seeking in-depth knowledge and career advancement, the programs focus on innovation, problem-solving, and industry-relevant skills. With specializations such as Artificial Intelligence & Machine Learning, Data Science, Cybersecurity, Robotics & Automation, VLSI Design, and Power Systems, the M.Tech programs prepare students to become experts and leaders in their respective fields.

Advanced Research Projects

Advanced Research Projects

M.Tech students engage in advanced research projects in collaboration with faculty and industry partners. These projects focus on solving real-world challenges in specialized fields such as AI, renewable energy systems, robotics, and semiconductor technologies. Research work often leads to publications in reputed journals and conferences, fostering innovation and contributing to the body of knowledge in emerging technologies.

Industry-Centric Internships

Industry Centric Internships

Quantum University's strong industry collaborations enable M.Tech students to undertake internships with leading organizations in their respective fields. These internships provide hands-on exposure to cutting-edge technologies, tools, and methodologies, allowing students to bridge the gap between theoretical knowledge and practical application. Special focus is placed on domains like IoT, cloud computing, advanced power systems, and cybersecurity, helping students gain valuable industry insights and build professional networks.

Specialized Workshops & Certifications

Specialized Workshops & Certifications

The M.Tech programs emphasize skill development through industry-driven workshops and certification programs. Conducted by experts from academia and industry, these workshops cover advanced topics such as deep learning, blockchain technology, advanced robotics, and smart grids. Certification courses in tools like MATLAB, TensorFlow, and CAD software provide students with the technical proficiency required to excel in their chosen specialization.

Thesis & Capstone Projects

Thesis & Capstone Projects

The culmination of the M.Tech program involves a thesis or capstone project, where students address a critical issue or explore an advanced research topic in their field of specialization. These projects, often guided by faculty mentors and industry experts, require students to apply their theoretical knowledge and technical skills to design innovative and impactful solutions.

Research Collaborations & Publications

Research Collaborations & Publications

M.Tech students at Quantum University have access to state-of-the-art research facilities and opportunities to collaborate on interdisciplinary research projects. Many students contribute to high-impact publications in areas like nanotechnology, artificial intelligence, power systems, and telecommunications, furthering their academic and professional credentials.

Outstanding Career Outcomes

Our graduates are in high demand across top engineering companies and innovative startups


  • LPAHIGHEST PACKAGE OFFERED
  •  NUMBER OF COMPANIES VISITED
  •  NUMBER OF STUDENTS PLACED
  • LPAAVERAGE PACKAGE OFFERED

Career Tracks

Telecommunication Engineer

Design and optimization of communication systems and networks.

Signal Processing Engineer

Digital signal analysis for wireless communication and radar systems.

Network Engineer

Configuring and maintaining telecom and broadband networks.

Research Associate (Communication)

R&D in 5G, IoT, and satellite communication systems.

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Entrepreneurship

Comprehensive Skill Development: At Quantum University, the teaching methodology includes extensive Skill Development Courses (SKCs) designed to equip students with the necessary skills to start their own ventures.

Entrepreneurial and Leadership Opportunities: Quantum University is providing ample opportunities to students to start their own ventures. More than 100 Start-ups are in progress.

Networking and Career Success: Quantum University fosters strong industry connections and real-world exposure, enabling students to build professional networks and unlock rewarding career opportunities.

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Higher Studies

Master’s Programs: Quantum University offers a range of industry-relevant master's programs designed to deepen academic knowledge, enhance professional skills, and prepare students for leadership roles in their chosen fields.

Ph.D. Opportunities: Quantum University offers rigorous Ph.D. programs that foster advanced research, innovation, and academic excellence. With expert mentorship, interdisciplinary collaboration, and access to cutting-edge resources, scholars are empowered to contribute meaningful insights to their fields.

Networking and Career Success: Students benefit from a strong ecosystem of industry partnerships, alumni networks, and career development support. Regular workshops, internships, expert talks, and placement drives help students build valuable connections and achieve long-term career success.

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Mentors Who Shape Futures

dr  himanshu tyagi
Dr. Himanshu Tyagi
Assistant Professor
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amrita kumari
Dr. Amrita Kumari
Assistant Professor
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iqbal sir
Dr. Md. Iqbal
Professor
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director qst
Dr. Brij Mohan Singh
Professor
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dean sir  final
Dr. Satender Kumar
Associate Professor
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dr  mridula
Dr. Mridula
Professor
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raj kumar
Dr. Raj Kumar
Assistant Professor
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dr  anuj kumar
Dr. Anuj Kumar
Assistant Professor
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ankur rana
Ankur Rana
Assistant Professor
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deepak bhatt
Deepak Bhatt
Assistant Professor
Profile

Labs

Internet Lab

Internet Lab

Internet Lab
Computer Applications Lab

Computer Applications Lab

Computer Applications Lab
Database Management System Lab

Database Management System Lab

Database Management System Lab
Data Structure Lab

Data Structure Lab

Data Structure Lab
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Design and Analysis of Algorithms Lab

Design and Analysis of Algorithms Lab
AK Khare Interdisciplinary Center of Excellence in AI

AK Khare Interdisciplinary Center of Excellence in AI

AK Khare Interdisciplinary Center of Excellence in AI
Object Oriented Programming Lab

Object Oriented Programming Lab

Object Oriented Programming Lab
Open Source Lab

Open Source Lab

Open Source Lab
Operating System Lab

Operating System Lab

Operating System Lab
Python Programming Lab

Python Programming Lab

Python Programming Lab

Research Highlights

Quantum University fully supports and encourages interdisciplinary research initiatives across different areas of study.

  • +Paper Publications
  • +Patents
  • +Startup Grants

Industry -Academic Collaborations

Quantum University has partnerships with over 150 industry leaders, providing students with valuable practical experience and exposure to current industry trends. Companies offer internships, real-world projects, and job opportunities to over 900 students annually at the best packages.

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Learning Experience

curriculum

CURRICULUM

interdisciplinary

INTERDISCIPLINARY

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PASSION PROGRAMS (PROPS)