Comprehensive undergraduate programmes building strong academic and professional foundations.
Postgraduate studies focused on advanced knowledge, research, and career specialization.
Doctoral programmes fostering original research, innovation, and academic excellence.
The Doctor of Philosophy (Ph.D.) degree in Mechanical Engineering is designed to meet the needs of a rapidly evolving scientific and technological environment in the 21st century. The Doctoral programme is designed to provide researcher with fundamental, traditional core courses coupled with specializations in a particular advanced field of interest. Research activity spans a broad spectrum of Mechanical Engineering subjects, which include (but are not limited to):
The M.Tech in Mechanical Engineering with a specialization in Machine Design-Digital Twin is an advanced program that blends core mechanical engineering principles with cutting-edge digital technologies to prepare students for the era of Industry 4.0. The program emphasizes the design, simulation, and optimization of mechanical systems using innovative tools such as digital twins, IoT, and artificial intelligence. Students gain expertise in advanced machine design, computational simulations, and real-time system integration to address complex engineering challenges.
Through interdisciplinary coursework and hands-on projects, the program equips graduates with the skills to innovate in industries such as automotive, aerospace, robotics, energy, and smart manufacturing, making them leaders in the transformation of engineering systems..
The Mechanical Engineering bachelors’ program is well designed to meet modern technological advances and industrial requirements, aligned with global standards. Students' experiences here are diverse and challenging, aimed at fostering a well-rounded personality and global competitiveness. Our impressive array of facilities comprises 3D Printers, KUKA Robots, CNC machines, Wind and Solar Emulators, and CAE tools, catering to the academic requirements of students as well as cater the basic and advanced needs of researchers.Professional clubs like ASME, Robotic Society of India, SAE, and Sustainable Engineering Club empower students to get connected and engage with the industry and societal issues.
We take great pride in our extensive network of training centres, developed through successful partnerships with esteemed industry leaders like BOSCH , FESTO , Daimler Truck Innovation, GTTC, Wipro3D to name few. Our program places a strong emphasis on experiential learning through building working models collaborating with other branches of Engineering as well as involving in research projects. The teaching learning process focus on students learning interests and pace providing opportunity to students to choose their courses of interest. We prepare the students to face the challenges confidently through holistic development and commitment to continuous learning.
B.Tech (Automobile Engineering) program is designed to develop a new breed of engineers required for the ever-expanding automotive industry. We strive to improve the technical and professional skills of the students through hands on and project based experiential learning. We encourage and support students to draw, design and build their dream vehicle models. In collaboration with, renowned automotive OEM's several facilities are created at campus for the students to get the skill training, which will help them to meet the requirements of the Automotive Industry. Automotive maintenance, service laboratory
has modules to demonstrate the working of all automotive parts, which are developed with the support of Trident Hyundai, Renault Nissan and Ashok Leyland.Department has MoU with Daimler Truck Innovation Center India Private Limited (DTICI), Government Tool Room & Training Centre (GTTC) and Wipro 3D. The purpose of MoU is to have mutual intentions to jointly work on projects required for industries and research needs, with learned faculty of good industrial experience and promising students, jointly agree to exchange their expertise for mutual benefit and growth.
This programme integrates Robotics and Mechatronics. Robotics emphasise on synergistic integration of mechanical structures, mechanisms, electrical and electronic components, electromechanical sensors and actuators, microcontrollers, and programming, whereas Mechatronics, covers synergistic integration of mechanical engineering, control theory, computer science, and electronics to manage complexity, uncertainty, and communication in engineered systems. Programme is offered in multi-disciplinary nature, which combines mechanical, electronics and computing engineering
and will add versatility to the graduates' capabilities. Graduates will be able to adapt flexibly to a wide range of industries, and make contributions in developing new technologies and pioneering new approaches in production. Graduates will also be able to upgrade their knowledge and skills by pursuing their studies in local or overseas universities. The programme prepares graduates to learn how to build robots and gadgets as required in specialized areas such as automation and robotics, wafer fabrication, aerospace or biomedical engineering.
B.Tech (Automobile Engineering) program is designed to develop a new breed of engineers required for the ever-expanding automotive industry. We strive to improve the technical and professional skills of the students through hands on and project based experiential learning. We encourage and support students to draw, design and build their dream vehicle models. In collaboration with, renowned automotive OEM's several facilities are created at campus for the students to get the skill training, which will help them to meet the requirements of the Automotive Industry. Automotive maintenance, service laboratory
has modules to demonstrate the working of all automotive parts, which are developed with the support of Trident Hyundai, Renault Nissan and Ashok Leyland.Department has MoU with Daimler Truck Innovation Center India Private Limited (DTICI), Government Tool Room & Training Centre (GTTC) and Wipro 3D. The purpose of MoU is to have mutual intentions to jointly work on projects required for industries and research needs, with learned faculty of good industrial experience and promising students, jointly agree to exchange their expertise for mutual benefit and growth.
The Mechanical Engineering bachelors’ program is well designed to meet modern technological advances and industrial requirements, aligned with global standards. Students' experiences here are diverse and challenging, aimed at fostering a well-rounded personality and global competitiveness. Our impressive array of facilities comprises 3D Printers, KUKA Robots, CNC machines, Wind and Solar Emulators, and CAE tools, catering to the academic requirements of students as well as cater the basic and advanced needs of researchers.Professional clubs like ASME, Robotic Society of India, SAE, and Sustainable Engineering Club empower students to get connected and engage with the industry and societal issues.
We take great pride in our extensive network of training centres, developed through successful partnerships with esteemed industry leaders like BOSCH , FESTO , Daimler Truck Innovation, GTTC, Wipro3D to name few. Our program places a strong emphasis on experiential learning through building working models collaborating with other branches of Engineering as well as involving in research projects. The teaching learning process focus on students learning interests and pace providing opportunity to students to choose their courses of interest. We prepare the students to face the challenges confidently through holistic development and commitment to continuous learning.
This programme integrates Robotics and Mechatronics. Robotics emphasise on synergistic integration of mechanical structures, mechanisms, electrical and electronic components, electromechanical sensors and actuators, microcontrollers, and programming, whereas Mechatronics, covers synergistic integration of mechanical engineering, control theory, computer science, and electronics to manage complexity, uncertainty, and communication in engineered systems. Programme is offered in multi-disciplinary nature, which combines mechanical, electronics and computing engineering
and will add versatility to the graduates' capabilities. Graduates will be able to adapt flexibly to a wide range of industries, and make contributions in developing new technologies and pioneering new approaches in production. Graduates will also be able to upgrade their knowledge and skills by pursuing their studies in local or overseas universities. The programme prepares graduates to learn how to build robots and gadgets as required in specialized areas such as automation and robotics, wafer fabrication, aerospace or biomedical engineering.
The Programme addresses the critical need for advanced energy storage solutions in today’s world. With the rapid rise of electric vehicles, renewable energy systems, and portable devices, expertise in battery technologies has become pivotal. This program uniquely combines material science with system-level insights, focusing on developing
high-performance, sustainable battery materials and efficient management systems. By integrating cutting-edge research and industry-oriented training, it equips students with interdisciplinary skills to meet global demands, fostering innovation and sustainability in academia and industries focused on energy transformation and green technologies.
The "Automotive Systems" course offers an in-depth exploration of the principles, methodologies, and tools essential for designing, analyzing, and developing modern automotive systems. It provides a strong foundation in understanding the intricate interplay between mechanical, electrical, and software components that define today’s vehicles. Students will gain insights into cutting-edge technologies such as autonomous driving systems, advanced driver-assistance systems (ADAS), and the integration of Internet of
Things (IoT) in vehicles. The course is designed to foster critical thinking and problem-solving skills, enabling students to address complex engineering challenges. Through hands-on projects, case studies, and exposure to industry practices, participants will be prepared to contribute meaningfully to innovations in the automotive sector, shaping the future of mobility.