Christ University, Bengaluru-image

PHD in Electronics And Communications Engineering at CHRIST (Deemed to be University)

Christ University, Bengaluru is a premier institution located in Bengaluru, Karnataka. Established in 1969, it is recognized as a Deemed to be University. Known for its academic strength across diverse disciplines, the university offers over 148 undergraduate, postgraduate, and doctoral programs. With a vibrant co-educational campus spread over 148.17 acres, it fosters a dynamic learning environment and boasts strong placements.

READ MORE
location

Bengaluru, Karnataka

Compare colleges

About the Specialization

What is Electronics and Communications Engineering at CHRIST (Deemed to be University) Bengaluru?

This Electronics and Communications Engineering PhD program at CHRIST (Deemed to be University) focuses on advanced research and innovation across diverse ECE domains. It aims to develop highly skilled researchers capable of contributing to cutting-edge technologies relevant to India''''s burgeoning electronics manufacturing and digital communication sectors. The program emphasizes a blend of theoretical depth and practical research, addressing critical national technological needs.

Who Should Apply?

This program is ideal for M.E./M.Tech graduates with a strong academic record and a passion for fundamental and applied research in ECE. It caters to aspiring academics, scientists in R&D organizations, and industry professionals seeking to drive innovation and lead advanced technology projects in India. Candidates should possess a solid foundation in core ECE subjects and a clear research interest.

Why Choose This Course?

Graduates of this program can expect to pursue impactful careers as research scientists, university professors, or senior R&D engineers in leading Indian companies and global MNCs operating in India. Entry-level salaries for PhDs in R&D roles in India typically range from INR 8-15 LPA, with significant growth potential. The program prepares scholars for leadership roles in technology development and innovation ecosystems.

Student Success Practices

Foundation Stage

Mastering Research Methodology and IPR- (Coursework phase (First 1-2 semesters))

Actively engage in the compulsory Research Methodology coursework, focusing on quantitative and qualitative research techniques, experimental design, and ethical considerations. Deeply understand Intellectual Property Rights (IPR) to secure innovations.

Tools & Resources

NPTEL courses on research methodology, IEEE Xplore, Scopus, Web of Science for literature review, Plagiarism detection software like Turnitin, University IPR cell

Career Connection

Essential for building a strong research foundation, ensuring originality, and protecting future intellectual contributions in academic and industrial R&D.

Formulating a Robust Research Problem- (Coursework phase and first year of research)

Work closely with your supervisor to identify a novel, relevant, and feasible research problem within Electronics and Communications Engineering. Conduct an extensive literature review to pinpoint research gaps and define clear objectives for your doctoral study.

Tools & Resources

Research databases (IEEE, ACM Digital Library), Reference management tools (Mendeley, Zotero), Regular supervisor meetings, Departmental seminars

Career Connection

A well-defined problem is the bedrock of successful research, crucial for publications and demonstrating independent research capability, highly valued in R&D roles.

Building Fundamental ECE Research Skills- (Throughout the first year)

Develop proficiency in specialized simulation tools (e.g., MATLAB, Simulink, ANSYS HFSS, Cadence Virtuoso) and experimental techniques relevant to your chosen ECE research area. Attend advanced workshops and seminars to deepen domain knowledge.

Tools & Resources

University labs, Specialized software licenses, Online tutorials (Coursera, edX), Departmental workshops, Senior PhD scholar mentorship

Career Connection

Hands-on expertise with cutting-edge tools and techniques makes you highly marketable for industry research and development positions immediately after graduation.

Intermediate Stage

Consistent Research Execution and Documentation- (Years 2-4)

Systematically execute your research plan, conduct experiments, collect and analyze data, and rigorously document all findings. Maintain a detailed research log and regularly prepare progress reports for your Doctoral Committee.

Tools & Resources

Lab notebooks (physical/digital), Data analysis software (Python/R, SPSS), Version control systems (Git for code), Regular meetings with supervisor and DC

Career Connection

Demonstrates professionalism, rigor, and project management skills essential for leading research projects in both academia and industry.

Aiming for High-Impact Publications- (From Year 2 onwards)

Actively strive to publish research findings in peer-reviewed, high-impact journals and reputed international conferences. Focus on preparing high-quality manuscripts, incorporating feedback, and understanding the publication process.

Tools & Resources

Journal submission platforms (Elsevier, Springer, IEEE), Academic writing workshops, English language editing services, Guidance from supervisor on target journals

Career Connection

Publications are critical for academic careers (professorship), enhance visibility for industry R&D roles, and contribute to your H-index and research profile.

Networking and Collaboration- (Years 2-5)

Attend national and international conferences, workshops, and seminars to present your work, gain feedback, and network with leading researchers and industry experts in your field. Explore collaborative research opportunities.

Tools & Resources

Conference registration grants, University travel funds, LinkedIn for professional networking, Research collaboration platforms

Career Connection

Expands your professional network, opens doors to postdoctoral positions, industry collaborations, and provides insights into diverse career paths and global research trends.

Advanced Stage

Structured Thesis Writing and Review- (Years 4-6)

Systematically write your doctoral thesis, ensuring comprehensive coverage of your research, methodological rigor, and clear articulation of contributions. Engage in multiple rounds of review with your supervisor for refinement.

Tools & Resources

LaTeX/Word templates, Reference management tools (Mendeley, Zotero), Grammar checkers (Grammarly), Supervisor''''s detailed feedback

Career Connection

A well-articulated thesis demonstrates critical thinking, synthesis, and high-level communication skills, crucial for academic positions and leadership roles in industry R&D.

Preparing for Thesis Defense and Viva-Voce- (Final 6-12 months before submission/defense)

Develop a compelling presentation summarizing your entire doctoral work, its key findings, and contributions. Conduct mock defense sessions with your Doctoral Committee and peers to refine your presentation and confidently address challenging questions.

Tools & Resources

Presentation software (PowerPoint, Keynote, LaTeX Beamer), Mock viva panels, Feedback sessions, Review of potential questions

Career Connection

Masterful presentation and defense skills are invaluable for showcasing expertise in job interviews, professional seminars, and leading technical discussions post-PhD.

Strategic Career Planning and Job Search- (Final year of PhD (Year 5-6))

Actively network with potential employers, prepare a strong academic CV or industry resume highlighting research achievements, and identify suitable postdoctoral, academic, or R&D industry positions. Tailor applications to specific roles.

Tools & Resources

University career services, LinkedIn, Academic job portals (jobs.ac.uk, higheredjobs.com), Industry job boards (Naukri, Monster), Mentor advice

Career Connection

Proactive planning ensures a smooth transition from academia to your desired career path, leveraging your specialized PhD expertise effectively.

Program Structure and Curriculum

Eligibility:

  • Master''''s degree (M.E./M.Tech/M.Sc.) in relevant discipline with a minimum of 55% aggregate marks or equivalent CGPA (50% for SC/ST/OBC (NCL)/Differently-abled). Valid scores in UGC-NET (including JRF)/UGC-CSIR NET (including JRF)/GATE/SLET/GPAT/Teacher Fellowship holders or CHRIST University PhD Entrance Test followed by Personal Interview.

Duration: Full-time: Minimum 3 years, Maximum 6 years. Part-time: Minimum 4 years, Maximum 7 years.

Credits: Coursework: Minimum 16 credits, Maximum 20 credits (excluding research/thesis credits) Credits

Assessment: Internal: 50% for coursework (assignments, seminars, mid-term tests), External: 50% for coursework (end-semester examinations)

Semester-wise Curriculum Table

Semester phase

Subject CodeSubject NameSubject TypeCreditsKey Topics
Research Methodology and IPRCore4Research Problem Formulation, Literature Review Techniques, Research Design and Methods, Data Analysis and Interpretation, Intellectual Property Rights, Research Ethics and Plagiarism
Advanced Topics in Electronics and Communications Engineering - Elective 1Elective4Selected advanced topics in ECE based on research area, Literature survey in specific domain, Problem identification and analysis, Advanced simulation and experimental techniques, Current research trends
Advanced Topics in Electronics and Communications Engineering - Elective 2Elective4Advanced concepts in signal processing or communication networks, Emerging wireless technologies, VLSI design for advanced applications, Embedded systems and IoT architectures, Optical communication systems
Advanced Topics in Electronics and Communications Engineering - Elective 3Elective4RF and Microwave Engineering innovations, Image and video processing algorithms, Machine learning in ECE applications, Power electronics and energy systems, Biomedical instrumentation
whatsapp

Chat with us