

B-TECH in Mechanical Engineering Smart Manufacturing And Automation at Galgotias University


Gautam Buddh Nagar, Uttar Pradesh
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About the Specialization
What is Mechanical Engineering (Smart Manufacturing and Automation) at Galgotias University Gautam Buddh Nagar?
This B.Tech Mechanical Engineering (Smart Manufacturing and Automation) program at Galgotias University focuses on integrating advanced technologies like IoT, AI, Robotics, and Data Analytics with traditional manufacturing. It addresses the growing demand in Indian industries for professionals capable of designing, implementing, and managing intelligent production systems and automated factories, preparing graduates for Industry 4.0 challenges and opportunities.
Who Should Apply?
This program is ideal for fresh 10+2 graduates with a strong aptitude for mathematics and physics, seeking entry into the high-tech manufacturing sector. It also caters to engineering diploma holders aspiring for advanced B.Tech qualifications and working professionals in traditional manufacturing looking to upskill and transition into smart factory roles or industrial automation expertise.
Why Choose This Course?
Graduates of this program can expect promising career paths in smart factories, robotics, and automation companies across India. Roles range from Automation Engineer to Robotics Programmer, IIoT Solution Architect, or Production Manager, with entry-level salaries typically starting from INR 4-7 LPA, growing significantly with experience. The program aligns with industry certifications in robotics, PLC programming, and data analytics, enhancing employability.

Student Success Practices
Foundation Stage
Master Core Engineering Fundamentals- (undefined)
Focus intensely on building a strong foundation in Engineering Mathematics, Applied Physics, Chemistry, and Basic Electrical/Electronics. These subjects are crucial for understanding advanced concepts in smart manufacturing. Utilize online resources like NPTEL courses, Khan Academy, and practice problem-solving regularly.
Tools & Resources
NPTEL lectures, Khan Academy, Standard engineering textbooks, Peer study groups
Career Connection
A solid grasp of fundamentals is essential for cracking competitive exams, interviews, and understanding complex engineering problems encountered in specialized fields, paving the way for advanced studies or core engineering roles.
Develop Early Programming & Design Skills- (undefined)
Engage actively in Programming for Problem Solving (C/Python) and Engineering Graphics & Design. Participate in coding competitions and CAD modeling challenges. Understanding programming logic and design tools like AutoCAD/SolidWorks from early semesters provides a crucial edge for automation and smart manufacturing.
Tools & Resources
CodeChef, HackerRank, SolidWorks tutorials, YouTube CAD channels
Career Connection
Proficiency in programming and CAD is a prerequisite for roles involving robotic programming, automated system design, and digital manufacturing, making you highly valuable for industry internships and placements.
Join Technical Clubs and Societies- (undefined)
Become an active member of mechanical engineering or robotics clubs. Participate in workshops, build small projects (e.g., automated robots, smart devices), and attend expert talks. This fosters practical skills, teamwork, and provides exposure beyond the classroom.
Tools & Resources
University Robotics Club, SAE India Collegiate Club, Mini project kits (Arduino, Raspberry Pi)
Career Connection
Active club participation demonstrates initiative, practical application of knowledge, and leadership, which are highly regarded by recruiters during placements and for future entrepreneurial ventures.
Intermediate Stage
Acquire Hands-on Automation & Robotics Skills- (undefined)
Utilize lab sessions for Industrial Automation, Robotics, and Advanced Manufacturing to gain practical experience with PLCs, robotic manipulators, and CNC machines. Seek out opportunities for mini-projects related to sensors, actuators, and basic control systems. Pursue relevant certifications.
Tools & Resources
Siemens/Rockwell PLC simulators, Robot programming software (e.g., RoboDK), Certification courses in PLC/SCADA
Career Connection
Hands-on experience and industry-recognized certifications are critical for securing specialized roles in industrial automation, robotics engineering, and manufacturing process control. Companies value practical exposure over theoretical knowledge.
Engage in Specialization-Specific Projects- (undefined)
Undertake mini-projects focusing on smart manufacturing concepts, such as designing an automated inspection system, implementing IIoT for predictive maintenance, or developing a smart material application. Collaborate with faculty and senior students, and present your work at university tech fests or local conferences.
Tools & Resources
Project labs, faculty mentors, IoT platforms (e.g., AWS IoT, Azure IoT), Simulation software (e.g., Ansys, Abaqus)
Career Connection
Specialized projects demonstrate deep understanding and application of your chosen field, providing tangible proof of skills for internships and full-time positions. They also build a strong portfolio for future endeavors.
Seek Industry Internships & Exposure- (undefined)
Actively apply for internships in manufacturing units, automation companies, or R&D centers during summer breaks. Even short-term internships provide invaluable insights into industrial practices, expose you to real-world challenges, and help build a professional network.
Tools & Resources
University career services, LinkedIn, Internshala, Industry contacts and alumni network
Career Connection
Internships are often a direct path to pre-placement offers (PPOs) and significantly boost your resume, making you a preferred candidate for companies seeking industry-ready graduates.
Advanced Stage
Deep Dive into Emerging Technologies & Research- (undefined)
Focus on your chosen professional electives (e.g., IIoT, Advanced Robotics, Data Analytics for Manufacturing, Cyber Physical Systems). Conduct in-depth research for your major projects, potentially publishing papers in student journals or presenting at seminars. Stay updated with global and Indian trends in Industry 4.0.
Tools & Resources
Research journals (IEEE, Elsevier), Industry reports (McKinsey, Deloitte), Advanced simulation and modeling tools
Career Connection
Expertise in cutting-edge technologies and a research-oriented approach make you suitable for R&D roles, product development, and innovation-focused companies, offering significant growth opportunities in India and abroad.
Excel in Aptitude and Communication for Placements- (undefined)
Dedicate significant time to enhancing your quantitative aptitude, logical reasoning, and verbal ability. Practice group discussions and mock interviews. Work on improving professional communication and presentation skills, which are crucial for success in the selection process for top companies.
Tools & Resources
Online aptitude platforms (IndiaBix), University placement cell workshops, Mock interview sessions with peers/mentors
Career Connection
Strong aptitude and soft skills are paramount for clearing placement drives, especially for campus recruitment by major Indian and multinational corporations, leading to desirable job offers.
Build a Professional Network and Portfolio- (undefined)
Network with faculty, alumni, and industry professionals via LinkedIn and university events. Create a comprehensive portfolio showcasing your projects, internships, and certifications. Attend industry conferences and job fairs in major Indian cities like Pune, Bangalore, Chennai, and Delhi-NCR to explore opportunities.
Tools & Resources
LinkedIn, Professional networking events, Online portfolio platforms (GitHub for code, personal website for projects)
Career Connection
A strong professional network can open doors to unadvertised jobs, mentorship, and entrepreneurial opportunities. A well-curated portfolio effectively communicates your capabilities to potential employers, especially in a competitive job market like India.
Program Structure and Curriculum
Eligibility:
- Minimum 50% aggregate in 10+2 or equivalent with Physics, Mathematics and Chemistry/Computer Science/IP/Biology/Electronics as compulsory subjects. Admissions are based on merit in JEE/GU EE/CUET/Other State Entrance Examinations.
Duration: 8 semesters / 4 years
Credits: 161 Credits
Assessment: Internal: 30%, External: 70%
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| BP201 | Applied Physics | Core | 3 | Quantum Mechanics, Wave Optics, Fibre Optics, Lasers, Nanomaterials, Acoustics |
| BC201 | Applied Chemistry | Core | 3 | Atomic and Molecular Structure, Spectroscopy, Corrosion and its control, Water Treatment, Phase rule, Polymers |
| BM101 | Engineering Mathematics – I | Core | 4 | Matrices, Differential Calculus, Integral Calculus, Vector Calculus, First Order Differential Equations, Linear Differential Equations |
| BE101 | Basic Electrical Engineering | Core | 3 | DC Circuits, AC Circuits, Transformers, DC Machines, AC Machines, Power Systems |
| BL101 | Basic Electronics Engineering | Core | 3 | Semiconductor Devices, Diode Applications, Transistors, Operational Amplifiers, Digital Electronics, Communication Systems |
| BCS101 | Programming for Problem Solving | Core | 3 | Programming Fundamentals, Operators and Expressions, Control Structures, Functions, Arrays and Strings, Pointers and Structures |
| BA101 | English Language for Communication | Core | 2 | Grammar, Vocabulary, Writing Skills, Listening and Speaking, Presentation Skills, Report Writing |
| BP202 | Applied Physics Lab | Lab | 1 | Optical Experiments, Electrical Measurements, Semiconductor Properties, Magnetic Field Studies, Interference and Diffraction, Acoustic Measurements |
| BC202 | Applied Chemistry Lab | Lab | 1 | Volumetric Analysis, Spectrophotometry, pH Metry, Conductometry, Viscosity Measurement, Water Hardness Testing |
| BE102 | Basic Electrical Engineering Lab | Lab | 1 | Circuit Laws Verification, AC Circuit Analysis, Transformer Characteristics, DC Machine Performance, Single Phase Motors, Power Factor Improvement |
| BL102 | Basic Electronics Engineering Lab | Lab | 1 | Diode Characteristics, Transistor Characteristics, Rectifier Circuits, Amplifier Circuits, Oscillator Circuits, Digital Logic Gates |
| BCS102 | Programming for Problem Solving Lab | Lab | 1 | Conditional Statements, Looping Constructs, Function Implementation, Array Operations, String Manipulation, File Handling |
| BME101 | Engineering Graphics & Design | Core | 2 | Orthographic Projections, Isometric Views, Sectional Views, Dimensioning, Development of Surfaces, AutoCAD Basics |
| BME102 | Engineering Graphics & Design Lab | Lab | 1 | CAD Software Interface, 2D Drawing, 3D Modeling, Assembly Drawing, Solid Modeling, Parametric Design |
| BCS103 | Human Values | Ability Enhancement | 1 | Self-Exploration, Human Aspirations, Relationship Values, Societal Values, Environmental Ethics, Professional Ethics |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| BM201 | Engineering Mathematics – II | Core | 4 | Multiple Integrals, Vector Differentiation, Vector Integration, Laplace Transforms, Fourier Series, Partial Differential Equations |
| BCS201 | Environmental Science | Core | 2 | Ecosystems, Natural Resources, Environmental Pollution, Solid Waste Management, Climate Change, Environmental Legislation |
| BME201 | Computer Aided Design | Core | 3 | Geometric Modeling, CAD Systems, Transformations, Curves and Surfaces, Solid Modeling, Assembly Modeling |
| BME202 | Engineering Mechanics | Core | 3 | Force Systems, Equilibrium, Friction, Trusses and Frames, Kinematics of Particles, Kinetics of Particles |
| BME203 | Material Science & Engineering | Core | 3 | Crystal Structure, Mechanical Properties, Phase Diagrams, Heat Treatment, Ceramics and Polymers, Composites |
| BME204 | Manufacturing Processes | Core | 3 | Casting Processes, Forming Processes, Welding Processes, Machining Processes, Powder Metallurgy, Surface Finishing |
| BME205 | Thermal Engineering – I | Core | 3 | Thermodynamic Laws, Properties of Pure Substances, Air Standard Cycles, Vapour Power Cycles, Gas Turbines, Refrigeration Cycles |
| BME206 | Computer Aided Design Lab | Lab | 1 | Part Modeling, Assembly Modeling, Drawing Generation, Surface Modeling, Feature-Based Design, Rendering |
| BME207 | Engineering Mechanics Lab | Lab | 1 | Force Polygon, Friction Experiment, Simple Lifting Machines, Moment of Inertia, Springs Experiment, Beam Deflection |
| BME208 | Material Science & Engineering Lab | Lab | 1 | Hardness Testing, Tensile Testing, Impact Testing, Microstructure Analysis, Heat Treatment, Corrosion Testing |
| BME209 | Manufacturing Processes Lab | Lab | 1 | Foundry Practices, Welding Techniques, Machining Operations, Forming Operations, Sheet Metal Operations, Plastic Molding |
| BME210 | Thermal Engineering Lab – I | Lab | 1 | IC Engine Performance, Boiler Performance, Refrigeration Cycle Analysis, Heat Pump Performance, Air Compressor Testing, Heat Exchanger Analysis |
| BCS202 | Professional Communication | Ability Enhancement | 1 | Oral Communication, Written Communication, Business Correspondence, Interviews, Group Discussions, Technical Presentations |
| BCS203 | NCC/NSS/Sports/Club | Co-Curricular | 0 | Community Service, Team Building, Physical Fitness, Leadership Skills, Event Organization, Social Responsibility |




