Mechatronics

We develop creative, comprehensive, and sustainable engineering solutions for a future where society can thrive.

About department

Mechatronics Engineering is an interdisciplinary field that combines the principles of mechanical, electrical, and computer engineering to design and develop advanced automation and control systems. A diploma in Mechatronics Engineering is a comprehensive program that provides students with the knowledge and skills to work in a variety of industries, including manufacturing, robotics, automation, and aerospace.

 

The curriculum for a diploma in Mechatronics Engineering includes a blend of theoretical and practical training. Students learn about the principles of mechanics, electronics, and computing, as well as the integration of these disciplines to create complex mechatronic systems. The program also covers topics such as control theory, robotics, sensors and actuators, and programming languages.

 

The course is designed to provide students with hands-on experience, and modern laboratories equipped with state-of-the-art equipment ensure that they receive practical training in the latest technologies. In addition, industry visits and workshops expose students to real-world challenges, enabling them to apply their knowledge in practical scenarios.

 

Upon completion of the diploma in Mechatronics Engineering, graduates are well-equipped to work in a variety of industries as technicians, designers, or engineers. They are trained to work with complex automation and control systems, and their knowledge of programming languages, control theory, and robotics make them valuable assets to any organization.

 

Overall, a diploma in Mechatronics Engineering provides students with a broad range of skills that can be applied in a variety of industries. It is an excellent choice for individuals who are interested in the integration of mechanical, electrical, and computer engineering, and wish to work on cutting-edge technology.

Vision

To achieve Academic and Industrial excellence in Mechatronics Engineering by fostering an interdisciplinary approach to benefit Industry and Society.

Mission
  • To disseminate interdisciplinary knowledge focusing on developing the key skills and qualities expected of Mechatronics Engineers.
  • To create best-in-class laboratories to endorse knowledge of Mechatronics in order to address the needs of Industry.
  • To prepare robust and responsible Mechatronics engineers imbibing ethical Values.
Learning Outcomes
  • PEO 1: Provide socially responsible, environment-friendly solutions to Mechatronics broad-based problems by adapting professional ethics.
  • PEO 2: Adapt state-of-the-art of Mechatronics Technology broad-based technologies to work in multi-disciplinary work environments.
  • PEO 3: Solve broad-based problems individually and as a team member by communicating effectively in work.
  • PSO 1: Equipment and Instruments: Maintain equipment and instruments related to Mechatronics.
  • PSO 2: Mechatronics Processes: Manage Mechatronics processes by selecting and scheduling relevant equipment, substrates, quality control techniques, and operational parameters.
Infrastructure
Faculty
MoU

And

  • Realtech Precision Engineering
  • Technocraft Institute of Robotics Technologies
Student Desk
Students Association
  1. Dnyanesh Ganesh Kokane – TYMK – President
  2. Vivek Jayawant Nalawade – SYMK – Vice-President
  3. Siddesh Ramesh Ingole – TYMK – Secretary
  4. Vasundhara Chandrashekhar Janawade – SYMK – Treasurer
  5. Arpan Vishwas Jadhav – SYMK – Member
  6. Arya Anand Telkar – TYMK – Member
  7. Pratham Ajay Patil – TYMK – Member
  8. Gajanan Govind Raul – SYMK – Member
  9. Chetan Mahadev Sakhare – SYMK – Member
  10. Pradnya Pravin Ovhal – TYMK – Member
Activities

Mechatronics

Admission Enquiry

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Customer Services

888-4000-234

Free Consultation

888-4000-234