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BTech Manufacturing Engineering Syllabus

Akangsha Das's profile picture

Updated on Jun 20, 2025

Akangsha Das

BTech in Manufacturing Engineering is an under-graduate course of four-year duration with focus on manufacturing process and system designing, developing, and its effective working. Manufacturing engineering as the pillar of industrial development helps to be an important contributor in processing raw material to finished products through the latest technology and efficient processes. With increased focus on Industry 4.0 and smart factories all over the world, the need for engineers with the ability to integrate the age-old engineering skill set with new technology like automation, robotics, and data analytics is higher. The course is best for students who want to seek innovation, defect detection in industries, and work for industries like automobile, aerospace, electronics, heavy machinery, and consumer goods.

 

The course curriculum is well designed with the intention of giving major emphasis on core subjects of engineering like mechanics, thermodynamics, and materials science, and specialization in subject areas like production technology, industrial automation, CAD/CAM, robotics, CNC programming, and quality control. It gives hands-on training by means of workshops, laboratory classes, internships, and industrial projects. Lean production, supply chain management, and use of software tool to maximize the manufacturing process productivity are also highlighted. The graduates are problem-solving, managerial, and analytical skillful and technically competent enough to compete in changing industrial environments or pursue graduate studies and research work in advanced manufacturing areas.

 

Table of Contents

  1. BTech Manufacturing Engineering Semester-Wise Syllabus 2025
  2. BTech Manufacturing Engineering Elective Subjects
  3. BTech Manufacturing Engineering Sem-wise Exam Pattern
  4. Frequently Asked Questions

 

BTech Manufacturing Engineering Semester-Wise Syllabus 2025

The BTech Manufacturing Engineering Semester‑Wise Syllabus 2025 at Indian Institute of Information Technology, Design and Manufacturing, Kancheepuram (IIITDM Kancheepuram) is crafted to provide a seamless progression through eight semesters. It blends core engineering fundamentals with advanced modules in smart manufacturing, automation, robotics, CAD/CAM, and quality control.

Semester 1

Semester 2

Technical English

Engineering Thermodynamics

Engineering Mathematics I

Fluid Mechanics & Fluid Machinery

Engineering Graphics

Material Science

Computer Programming

Metrology & Measurements

Machine Tools & Processes

Casting & Welding Technology

Basic Electrical Engineering

Electronics & Microprocessor

CNC Technology

Semester 3

Semester 4

Engineering Thermodynamics

Engineering Materials and Characterization

Fluid Mechanics & Fluid Machinery

Kinematics and Dynamics of Machines

Strength of Materials

Manufacturing Technology (Production Processes)

Metrology & Measurements

Fluid Mechanics & Fluid Machinery (advanced)

Casting & Welding Technology

Industrial Automation / CNC-related workshop

Electronics & Microprocessor

Solid Modeling & Manufacturing Workshop

CNC Technology

Semester 5

Semester 6

Design of Machine Elements

Computer-Aided Engineering (CAE)

Computer-Aided Design (CAD)

(IT Workshop IV – CAE focus)

Modern Concepts of Engineering Design

Engineering Materials & Metallurgy

Process Planning & Cost Estimation

Metal Forming & Powder Metallurgy

Computer Integrated Manufacturing

Semester 7

Semester 8

Finite Element Methods

(Elective Projects & Industry Internship)

Mechatronics

Operation Research

Lab Work (Advanced Manufacturing Labs)

 

BTech Manufacturing Engineering Elective Subjects

Elective subjects in BTech Manufacturing Engineering allow students to tailor their learning according to their interests and career goals. These courses cover advanced and specialized topics such as automation, robotics, advanced materials, sustainable manufacturing, and supply chain management. By choosing electives, students gain deeper expertise in cutting-edge technologies and industry trends, enhancing their skills and employability in the competitive manufacturing sector.

Semester

Elective Subjects

Semester 5

Automation in Manufacturing, Advanced Material Science

Semester 6

Industrial Robotics, Lean Manufacturing

Semester 7

Supply Chain Management, Additive Manufacturing (3D Printing)

Semester 8

Sustainable Manufacturing, Advanced Quality Control

 

BTech Manufacturing Engineering Sem-wise Exam Pattern

The semester-wise exam pattern for BTech Manufacturing Engineering is designed to evaluate students’ understanding of both theoretical concepts and practical applications throughout the course. Each semester typically includes a combination of written exams, lab assessments, assignments, and project work. This comprehensive evaluation system ensures that students not only grasp core engineering principles but also develop the hands-on skills required to excel in manufacturing industries.

Features

Details

Exam Types

Written exams, practical/lab assessments, assignments, projects

Frequency

Conducted at the end of each semester

Duration

Typically 3 hours for written exams; practical exams vary

Evaluation Weightage

Theory exams usually carry 80%, practicals and assignments 20%

Passing Criteria

Minimum passing marks required in both theory and practical components

Continuous Assessment

Includes quizzes, internal tests, and class participation in some colleges

Supplementary Exams

Offered for students who fail or miss semester exams

Project Evaluation

Final year projects often evaluated separately with presentations and reports

 

Frequently Asked Questions

How is BTech Manufacturing Engineering curriculum divided between theory and practice?

BTech Manufacturing Engineering curriculum is divided especially to obtain a good balance between practice and theory. From the initial semester, students are exposed to engineering fundamentals and lab sessions including machining, metrology, and workshop practices. With the progress of the student, practical exposure also increases with CAD/CAM labs, CNC programming, and robotics workshops. Apart from this, project work and industrial internships during later semesters are included in the course curriculum to accustom students to real-world surroundings. This constant injection of theory with practice assists students in achieving critical thinking and technical skills required for addressing complex manufacturing problems in efficient ways.

Has the syllabus incorporated newer technologies such as Industry 4.0 and smart manufacturing?

Yes. Advanced BTech Manufacturing Engineering programs touch on the use of emerging industrial advances like Industry 4.0, intelligent manufacturing, and automation. Topics like Computer Integrated Manufacturing (CIM), Industrial Automation, and Advanced Manufacturing Technology are introduced to get students conversant with the likes of IoT-based machines, cyber-physical systems, and data-driven decision-making. With the acquisition of these new technologies, the students will be well equipped not just to catch up with current industry practice but also to innovate and respond to a changing manufacturing environment. It is a pioneering initiative designed to improve employability and equip the graduates to lead smart factories and digital manufacturing projects globally.

What flexibility has the syllabus introduced for specialization through electives?

The curriculum is also highly flexible with a range of elective courses that accommodate the various interests and constantly changing industry requirements of the students. Electives in Additive Manufacturing (3D Printing), Robotics, Lean Manufacturing, Supply Chain Management, and Sustainable Manufacturing enable the students to specialize and gain more knowledge in a field of their interest. Elective-based system allows students to mold studies into career paths that best complement their aptitude and aspirations. Moreover, the practice of studying different electives fosters multidisciplinary study, and students are getting more liberal with increased freedom while carrying out different industrial functions.

How is sustainability and concern for the environment incorporated in the syllabus of manufacturing?

Sustainability has now become a part of modern-day manufacturing, and the courses are also changing their curriculum with special courses and modules for sustainable manufacturing processes. Energy-efficient production processes, reduction of wastes, recycling processes, and environmental legislations that include the production process are some of the subjects students are instructed to learn. Green production and lifecycle assessment are some of the areas where students are trained to design processes that minimize environmental footprints without compromising productivity. This is green awareness in piecing together the curriculum to produce engineers accountable for sustainable manufacturing programs that meet international sustainability objectives and corporate social responsibility.

How significant is software training in the curriculum?

Software training is a significant component of BTech Manufacturing Engineering curriculum with a view to acknowledging the leadership roles adopted by software tools in modern manufacturing. Practical training is given to students on software like CAD (Computer-Aided Design), CAM (Computer-Aided Manufacturing), CNC programming, and Finite Element Analysis (FEA). Students are taught how to use these packages effectively in designing, simulating, and optimizing the manufacturing components and processes. Students are taught manufacturing resource planning (MRP) and enterprise resource planning (ERP) software, hence they are able to plan production and inventory control in industry. Round-the-clock computer training ensures that graduates are ready for technical requirements of highly computerized new generation manufacturing industries.

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