Programs

M.Tech Industrial Automation
and Robotics

M.Tech Industrial Automation and Robotics

This specialised postgraduate programme is designed to develop advanced expertise in automation systems, robotics, and industrial control technologies. Rooted in core engineering principles, the curriculum synthesises automation, robotics, control systems, and embedded technologies to address the dynamic needs of contemporary industry.

Students engage with advanced domains, including industrial robotics, programmable logic controllers (PLCs), control systems engineering, sensors and actuators, and real-time system integration. The programme emphasises precision engineering, process optimisation, and intelligent automation, enabling learners to design, analyse, and manage high-performance industrial systems.

With a strong focus on research, innovation, and hands-on learning, students undertake complex projects and real-world applications under the guidance of expert mentors. Through laboratory experiments, simulations, and interdisciplinary work, graduates develop the technical and analytical proficiency to excel in manufacturing, automotive, aerospace, energy, and intelligent industrial sectors.

S-VYASA offers postgraduate M.Tech programmes designed to build advanced technical expertise, research capabilities, and industry-relevant skills across emerging engineering and technology domains. With specialisations covering areas such as Computer Science and Engineering, Artificial Intelligence and Data Science, Industrial Automation and Robotics, Cyber Security, and Electronics and Communication Engineering, students can pursue advanced learning aligned with their professional and research interests.

At S-VYASA Global City Campus, students pursuing M.Tech Industrial Automation and Robotics gain exposure to a technology-focused learning environment that supports practical training, experimentation, and innovation. The programme enables students to strengthen their expertise in robotics, industrial automation, control systems, embedded technologies, and Industry 4.0 applications through hands-on learning and project-based work.

The School of Engineering and Technology provides an interdisciplinary academic environment where students develop advanced skills in automation, robotics, control engineering, and industrial systems. Through practical learning, research, and project-based applications, the programme prepares students to address complex engineering challenges across modern manufacturing and technology-driven industries.

Eligibility

  • Passed Bachelor’s Degree or equivalent.
  • Obtained at least 50% marks (45% marks in case of candidates belonging to reserved category) in the qualifying examination.

Program Highlights

Advanced Automation & Robotics Curriculum:

A tightly designed programme merging industrial automation, robotics, control systems, and embedded technologies.

Industrial Robotics Expertise:

Detailed study of robotic systems, kinematics, motion planning, and smart automation. Training in control engineering, PLCs, SCADA systems, and real-time control.

Sensors, Actuators & System Integration:

Emphasis on instrumentation, feedback systems, and integrated hardware-software solutions.

Embedded Systems & Real-Time Applications:

Hands-on experience in embedded programming, microcontrollers, and real-time system architecture for industrial settings.

Experiential Learning Ecosystem:

Hands-on training through advanced labs, simulations, industrial case studies, and project-based learning.

Industry-Aligned Pedagogy:

Curriculum aligned with Industry 4.0, smart manufacturing, and modern automation technologies.

Research & Innovation Focus:

Encourages interdisciplinary research, innovation, and development of intelligent industrial solutions.

High-Performance System Design:

Focus on efficiency, optimisation, and scalability in industrial automation systems.

Career-Ready & Leadership Skills:

Prepares graduates for roles such as Automation Engineer, Robotics Engineer, Control Systems Engineer, and Industrial Systems Specialist.

Career Outcome

Automation Engineering Roles:

Opportunities as an Automation Engineer and an Industrial Automation Specialist, focusing on process optimisation, smart manufacturing, and system efficiency.

Robotics Engineering Careers:

Roles such as Robotics Engineer and Robotics Systems Specialist, working on industrial robots, autonomous systems, and intelligent automation.

Control Systems Engineering

Positions as Control Systems Engineer, specialising in PLC programming, SCADA systems, and real-time industrial control.

Embedded Systems & Integration:

Careers as an Embedded Systems Engineer and a Systems Integration Specialist, developing and integrating hardware-software solutions.

Smart Manufacturing & Industry 4.0:

Opportunities in digital manufacturing, cyber-physical systems, and intelligent factory ecosystems.

Cross-Industry Demand:

Career prospects across manufacturing, automotive, aerospace, energy, oil & gas, and advanced industrial sectors.

Research & Development Careers:

Roles as R&D Engineer and Research Specialist in robotics, automation, and control engineering domains.

Academic & Higher Research Pathways:

Strong foundation to pursue a PhD and advanced research in robotics, automation, and industrial systems.

Global Career Opportunities:

Preparedness for roles in multinational corporations and industrial technology enterprises worldwide.

Entrepreneurial Pathways

Equips graduates to build automation solutions, robotics ventures, and Industry 4.0-driven enterprises.

S-VYASA University provides a multidisciplinary learning ecosystem that encourages technical development, research, innovation, and practical application. Through the M.Tech Industrial Automation and Robotics programme, students build advanced expertise in intelligent automation and robotics while preparing for opportunities across manufacturing, automotive, aerospace, energy, and other industrial sectors.

FAQ's

Yes, robotics has strong scope as industries increasingly adopt automation, intelligent systems, and Industry 4.0 technologies. Robotics is becoming important across manufacturing, automotive, aerospace, energy, and other technology-driven sectors. An M.Tech. in Industrial Automation and Robotics can help students develop advanced expertise in robotics, control systems, embedded technologies, and system integration, preparing them for technical, research, and innovation-oriented career opportunities.

Robotics is increasingly relevant as industries adopt automation, smart manufacturing, and intelligent industrial systems. Organisations across manufacturing, automotive, aerospace, energy, and other sectors require professionals who can design, integrate, operate, and optimise robotic and automated systems. An M.Tech. in Industrial Automation and Robotics develops expertise in industrial robotics, PLCs, SCADA, control systems, embedded technologies, and system integration, supporting careers in evolving technology-driven industries.

AI is more likely to transform the role of Robotics Engineers than replace them. Modern robotic systems increasingly combine artificial intelligence with automation, sensing, control, and embedded technologies. Robotics Engineers are needed to design, integrate, program, test, and optimise these systems. An M.Tech. in Industrial Automation and Robotics helps students build interdisciplinary expertise to work with intelligent automation and emerging Industry 4.0 applications.

The salary of a Robotics Engineer in India varies based on qualifications, technical expertise, experience, job role, organisation, and industry. Professionals with advanced skills in industrial robotics, automation, PLCs, control systems, embedded technologies, and system integration can pursue diverse career opportunities. An M.Tech. in Industrial Automation and Robotics can strengthen advanced technical and analytical capabilities, supporting progression towards specialised and higher-responsibility engineering roles.

There is no fixed answer, as salaries for AI Engineers and Robotics Engineers depend on factors such as experience, qualifications, technical specialisation, organisation, location, and job responsibilities. Both fields offer opportunities across technology-driven industries. Robotics professionals with expertise in industrial automation, intelligent systems, control engineering, and embedded technologies can pursue specialised roles, while AI Engineers may focus on areas such as machine learning and data-driven applications.

For the M.Tech. Industrial Automation and Robotics programme at S-VYASA, JEE is not specified as a compulsory eligibility requirement. Candidates must have passed a Bachelor’s Degree or equivalent and obtained at least 50% marks in the qualifying examination, with 45% marks applicable to candidates belonging to the reserved category. Students meeting these eligibility requirements can apply for the postgraduate programme and pursue advanced learning in robotics and industrial automation.

Candidates who have passed a Bachelor’s Degree or equivalent are eligible to apply for the M.Tech. Industrial Automation and Robotics programme at S-VYASA. Applicants must have obtained at least 50% marks in the qualifying examination, with a minimum of 45% marks applicable to candidates belonging to the reserved category. The programme is suited to graduates seeking advanced expertise in robotics, automation, control systems, embedded technologies, and industrial applications.

Graduates who have completed a Bachelor’s Degree or equivalent and meet the prescribed academic requirements can apply for the M.Tech. Industrial Automation and Robotics programme at S-VYASA. Candidates must have secured at least 50% marks in the qualifying examination, or 45% marks for those belonging to the reserved category.