MMMUT Gorakhpur M.Tech Power Electronics FAQs
Ques. What is the eligibility for M.Tech Power Electronics at MMMUT?
Ans. Candidates must hold a B.Tech/B.E. in a relevant engineering discipline with a minimum of 60% marks (55% for reserved category candidates from UP). A valid GATE score in EE (Electrical Engineering) or a CUET PG score is required for admission to the Master of Technology in Power Electronics and Drives at MMMUT Gorakhpur.
Ques. What is the total fee for M.Tech Power Electronics at MMMUT?
Ans. The total fee for the 2-year Master of Technology in Power Electronics and Drives at MMMUT Gorakhpur is INR 84,000 for day scholars, payable per semester: INR 24,750 in Semester I and INR 19,750 per semester for Semesters II to IV. Hostel charges are payable separately. UP government scholarships are available for eligible SC, ST, and OBC students.
Ques. Which entrance exams are accepted for M.Tech at MMMUT?
Ans. MMMUT Gorakhpur accepts GATE and CUET PG scores for M.Tech admission. GATE score in EE (Electrical Engineering) is the preferred route. Selection is based on entrance score, and shortlisted candidates may be called for an interview. The university conducts its own counselling rounds.
Ques. What are career options after M.Tech Power Electronics from MMMUT?
Ans. Graduates of the Master of Technology in Power Electronics and Drives from MMMUT Gorakhpur can work as power electronics engineer, drive systems engineer, electric vehicle engineer, energy conversion specialist, R&D engineer, and design engineer in the electrical sector. Opportunities exist in semiconductor and electronics companies, research institutions, PSUs such as DRDO, ISRO, BEL, and ECIL, and in advanced manufacturing. Graduates may also pursue PhD research at IITs and central research institutions.
Ques. What subjects are covered in M.Tech Power Electronics at MMMUT?
Ans. The Master of Technology in Power Electronics and Drives at MMMUT Gorakhpur covers power converters, motor drives, inverters, pulse-width modulation, electric vehicle technology, HVDC systems, energy conversion, and renewable energy integration over four semesters. The curriculum includes advanced theory courses, laboratory work, a seminar, and a major research dissertation in the final semester aligned with industry and research needs.


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