Mechatronics Engineering Syllabus 2025: Check Semester-wise Subjects & Syllabus

Akansha BishtSenior Executive
Mechatronics Engineering is a kind of engineering that basically deals with both the electrical and the mechanical systems. It also includes robotics, electronics, computers and a variety of other academic disciplines also. This course is very beneficial as it allows the students to have a better understanding of robots and do the research on them. Today's market/consumers have high expectations, leading to the manufacturing of increasingly sophisticated things. Mechatronics engineering is used in this scenario to combine sophisticated electrical and software components. Let’s learn a little about the syllabus and scope of mechatronics engineering in India below.
List of subjects in Mechatronics Engineering
Typical core subjects and typical elective subjects in Mechatronics Engineering are list in the following tables:
Typical Core Subjects in Mechatronics Engineering
|
Subject Title |
Subject Details |
|---|---|
|
Applied Science |
Applied science is a field of science concerned with applying scientific knowledge in more practical ways, such as via technology or inventions. In natural science, basic science (or pure science) is used to produce knowledge in order to comprehend natural phenomena. The information is then applied through applied science in real-world situations. Although the phrases fundamental science and applied science are sometimes interchanged, applied science is essentially engineering that produces technology (research and development).
Microbiology in medicine is a great example of applied science. Biology is used in these domains to generate medical knowledge and discoveries, but not medical technology, which is developed via biomedicine or biomedical engineering. Epidemiology is the formal science of statistics and probability theory used to study health and disease patterns, causes, and consequences in specific populations. Genetic epidemiology is a branch of biology that combines biological and statistical methods. |
|
Engineering Drawing |
The phrases "technical drawing" and "drafting" refer to the process of making engineering drawings (draughting). Many perspectives of a component are usual in designs. However, for the explanation, more scratch views of components may be included. In most circumstances, just the necessary information is supplied. To avoid redundancy and the possibility of contradiction, dimensions, for example, are usually only supplied once on a design. Enough tolerances are specified for critical dimensions to allow the component to be built and operated. More detailed production drawings may be developed based on the information supplied in an engineering design. On a drawing, an information box, also known as a title block, carries details such as who created it, who approved it, the units of measurement, the meaning of views, the image title, and the drawing number. |
|
Analog Electronics |
Analog electronics is an area of electronics that deals with signals that change over time. It's used in radio and audio equipment as well as other applications where analogue sensors provide signals that are then transformed into digital signals for storage and processing. Even though digital circuits are a significant part of today's technological world, some of a digital system's most basic components are still analogue. The main distinction between analogue and digital electronics is that the former translates data into varying-amplitude electric pulses, whilst the latter converts data into a binary format of 0 and 1, with each bit representing two different amplitudes. |
|
Industrial Electronics |
In industries such as energy, transportation, petroleum, chemical, semiconductor, mining, agriculture, and others, industrial electronics are extensively used to increase efficiency and production. The focus in modernising industry technology is currently on power conditioning with power semiconductor devices, which is a branch of electronics that deals with power electronic switches, sensors, actuators, metres, intelligent electronic devices (IEDs), automation equipment, semiconductors, nanotechnology, and so on. |
|
Robotics |
In the field of robotics, the creation, design, construction, and use of robots are all addressed. As roboticists, we are attempting to build intelligent machines capable of helping people out in several ways.
|
|
Industrial Automation |
This course gives a solid foundation in cutting-edge automation technologies and hands-on experience to really understand current automation technologies, integration, and application in contemporary industrial industries. Displays automated problem-solving skills via circuit design and the ability to combine various sensors, controllers, and actuators according to application requirements. Introduces practical methods for automating complicated equipment, critical processes, and systems and new enabling technologies for revolutionising industrial operations. |
Typical Elective Subjects in Mechatronics Engineering
|
Subject title |
Subject details |
|---|---|
|
Technical English |
Technical English which is sometimes known as the "business English" or the "professional English," is a versatile language that may be used in a variety of situations. Many technical English courses are tailored to certain occupations. Each field has its own set of grammatical and linguistic rules. |
|
Process Automation |
Process automation improves the efficiency of a system by removing the human error and increasing the delivery speed, improving quality, cutting costs, and simplifying the business process. It integrates the software tools, people, and processes to create a completely automated workflow. |
|
Basics of Communication Engineering |
This course is intended to introduce students to communication system theory and practice. Analogue, digital communication systems, and modulation methods, such as AM, FM, PM, PCM, and digital modulation, are studied. |
Detailed Syllabus for Mechatronics Engineering
The syllabus of Mechatronics Engineering may difer from one university to the other but the subjects are more or less the same. Here is a general guideof the core or elective subjects that are taught during the four years in BTech Mechatronics Engineering.
|
Semester |
Core/Elective |
Subject title |
Subject Details |
|---|---|---|---|
|
5 |
Mechatronics |
Microprocessor and Microcontroller |
The ideas and applications of microprocessors and microcontrollers will be covered. The architecture and programming of the 8051 processor, the design and programming of the 16-bit 8085 microprocessor and its interaction with a variety of peripheral ICs, are examined. |
|
8 |
Mechatronics |
Industrial Automation |
This course will offer you a sufficient understanding of cutting-edge automation technologies and hands-on experience to fully comprehend current automation technologies, their integration, and their application in contemporary production.
Problem-solving talents in automation may be shown by using circuit design and the ability to combine several sensors, controllers, and actuators to meet application goals. The author discusses practical techniques for automating complicated machine control, critical processes, and systems and new enabling technologies for transforming industrial processes. |
|
8 |
Mechatronics |
MEMS |
The fundamentals of Micro Electro Mechanical Systems (MEMS), including the various materials used in MEMS, semiconductors and solid mechanics used to fabricate MEMS devices, various sensors and actuators, and MEMS applications in disciplines other than Electrical and Mechanical engineering, will be covered. |
|
7 |
Mechatronics |
Image Processing and Computer Vision |
Image enhancement methods and applications, image compression techniques and applications, computer vision fundamentals, geometrical characteristics of pictures, object identification, and real-time image processing applications will all be covered. |
|
7 |
Mechatronics |
Artificial Intelligence |
To investigate how fundamental information representation, problem-solving, machine learning, knowledge acquisition, and learning methodologies, and their benefits and drawbacks, may be used to solve specific engineering problems. |
|
8 |
Mechatronics |
Virtual Instrumentation |
The purpose of this course is to introduce you to virtual reality. Only a few of the applications include instrumentation and the building of simple VI programmes using loops, case structures, and other methods, such as image, signal processing, and motion control. |
Specialisations offered in Mechatronics Engineering
As Mechatronics Engineering is itself a specialisation in Mechanical and Electrical Engineering, there aren't any specialisations in the field of Mechatronics Engineering.
Books and Authors Related to Mechatronics Engineering
Following is a list of publications that provide an introduction to databases for mechatronics, an interdisciplinary topic that includes mechanical, computer, electrical, and systems engineering. They are also useful in robotics, control systems, intelligent control, and other related fields.
|
Subject |
Book title |
Author |
|---|---|---|
|
MEMS |
Mechatronic systems design and solid materials: methods and practices |
Satya Bir Singh, Prabhat Ranjan |
|
Industrial Electronics |
Mechatronics and Industrial Machines |
Prof. Thanh Nam Nguyen |
|
Virtual Instrumentation |
Control of mechatronic systems |
Patrick O.J. Kaltjob |
Mechatronics Engineering FAQs
Q. What is the scope of Mechatronics Engineering?
A. Mechatronics Engineering is both fascinating and exhilarating in terms of work opportunities. Because of the industry experts' significant knowledge, the course's scope has been broadened. Experts in Mechatronics Engineering work with robots, nanotechnology, electrical systems, and other industrial components. The reach of this instruction is not limited to India; it is fast spreading over the world. The field of Mechatronics Engineering is expanding at a breakneck pace. Studying Mechatronics Engineering is beneficial since the field has a bright future ahead of it, with several career opportunities for graduates. As a consequence, Mechatronics Engineering and its study are gaining in importance as a means of increasing industrial efficiency. As new opportunities in the area emerge, the scope of the work extends with each passing day.
Q. What are the subjects in Mechatronics Engineering?
A. Some subjects covered in Mechatronics Engineering Courses are:
- Applied Science
- Virtual Instrumentation
- Analog Electronics
- Industrial Electronics
Q. Is Mechatronics Engineering a good course?
A. Today's fast-evolving organisations place a high value on professionals with mechatronics engineering technology abilities, and the demand for these individuals reflects this.
Q. Which is better: B.tech Mechatronics Engineering or Diploma in Mechatronics Engineering?
A. Both B.tech Mechatronics Engineering and Diploma Mechatronics Engineering courses have their merits. If you wish to learn in detail about practical management, B.tech Mechatronics Engineering offers better practical knowledge. On the contrary, students who wish to perform Research and Development in Mechatronics Engineering can opt for Diploma.
Q. Does Mechatronics Engineering Require NEET?
A. In Mechatronics Engineering Programmes, students learn how to build various instrumentations, define scientific principles on Mechatronic systems, and take step-by-step action to attain those goals. As it is not a medical subject, it does not require NEET.
Q. Is there any entrance exam for Project Management?
A. Yes. You can appear for one of the many entrance exams conducted for Mechatronics Engineering Courses. This includes JEE, MU OET, GATA or UPSEAT. All these exams require a Class 12th certificate in a Maths specialisation.
Q. Is JEE required for Mechatronics Engineering?
A. For getting admission into IITs, NITs, and other nationally reputed institutions for providing an excellent education, Joint Entrance Examination (JEE) Mains and Advanced are compulsory. Even you can get admission into many local colleges with the help of JEE Mains scores. Since Mechatronics Engineering is an engineering subject, it requires a candidate to clear JEE.
Q. Is Mechatronics Engineering hard to study?
A. Mechatronics is more difficult than other engineering courses since it combines many disciplines, such as mechanics, electrical and electronic engineering, robotics, etc.
Q. Do you need math for Project Management?
A. Math is an essential subject for any Mechatronics Engineering Course. Engineering mathematics is a branch of mathematics that deals with scientific problems. The bulk of it is made up of physical values and their determination. Maths is the foundation of all engineering.
Q. Are writing skills compulsory for Mechatronic Engineering?
A. Writing is important talent for effective communication in today's society particularly in Engineering. Excellent writing abilities may help Engineers save time during project training and provide constructive criticism in performance assessments as well as create clear and concise project plans.
Q. Can PCB students do Mechatronics Engineering Courses?
A. Yes, students who have studied Science after Class 12 are eligible for admission in Mechatronics Engineering courses in India. Any student must have a background in PCB to take admission in Mechatronics Engineering.
Q. Does Mechatronics have a future?
A. Engineering with mechatronics brings up a world of possibilities. You will find maximum opportunities in the electronics industry. Automobiles, manufacturing, gas and oil, mining, transportation, defence, robotics, aerospace, and aviation are a few possibilities.
Q. Is Mechatronics a BTech or MTech?
A. It is a specialisation in both B.tech and M.tech. B.tech in Mechatronics Engineering is an undergraduate course which focuses on several aspects of Mechatronics without a specialisation in a single field. M.tech in Mechatronics Engineering will focus on specialised processes and applications of Mechatronics.
Q. Do IITs have Mechatronics Engineering?
A. The Mechatronics programme at IIT focuses at providing students with the necessary knowledge and hands-on as well as up-to-date technical skills needed by employers in the industries of breweries, food and beverage, petrochemicals, oil and gas, engineering services and also manufacturing.
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