M.Tech. in Computer Integrated Manufacturing (CIM) is a postgraduate program that focuses on the integration of computer technology in the manufacturing process. The program combines the principles of mechanical, electrical, and computer engineering to optimize the manufacturing process.
Stream | Engineering |
Course | M.Tech. Computer Integrated Manufacturing |
Full Name | Master Of Technology In Computer Integrated Manufacturing |
Eligibility | Graduation |
Duration | 2 Years |
Fees | 10000 |
Type | Degree |
Mode | Year |
The duration of the program is typically 2 years.
To be eligible for admission to the program, a candidate must have a Bachelor's degree in Mechanical Engineering, Electrical Engineering, Electronics Engineering, or a related field. Additionally, candidates must have a valid GATE score.
The eligibility criteria for MTech Computer Integrated Manufacturing Engineering aspirants is not complicated and is as follows. It must be noted that the eligibility criteria will differ from various institutes.
Candidates must have cleared their Graduation in Computers from any recognized University or Institution.
The qualifying aggregate score required at Intermediate level is at least 50% and above.
Candidates who have completed the 5-years course in Science or Applied science/ who have cleared M.Sc degree in Science/ Mathematics/ Statistics/ Computer Applications or equivalent can also apply for a MTech course.
5% moderation for the reserved category like SC/ST/OBC students.
The most common entrance exam for admission to M.Tech. programs is the Graduate Aptitude Test in Engineering (GATE).
Selection for the program is typically based on the candidate's GATE score, academic performance, and performance in a personal interview.
Candidates are generally required to have completed a Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, or a related field from a recognized university or institution. Some institutions may specify certain prerequisite courses or minimum academic qualifications.
Many institutions have a minimum percentage or Grade Point Average (GPA) requirement for admission consideration. The specific minimum percentage or GPA may vary depending on the institution, but candidates are usually expected to have a strong academic record in their undergraduate studies.
Some institutions require candidates to have qualified in national-level entrance exams such as the Graduate Aptitude Test in Engineering (GATE) for admission to their M.Tech. programs. GATE scores, particularly in disciplines related to Mechanical Engineering or Manufacturing Engineering, are often preferred for admission to CIM programs.
Candidates can apply for the program by filling out an application form and submitting it along with relevant documents and application fee. Application forms can typically be found on the official website of the institution offering the program.
Start by researching universities or institutions that offer M.Tech. programs in Computer Integrated Manufacturing. Look for institutions with a strong reputation in engineering education and relevant specializations within CIM.
Obtain Application Form: Obtain the application form for the M.Tech. program in Computer Integrated Manufacturing from the institution's website or admissions office. Some institutions may offer online application forms, while others may require you to download and print the form.
Fill Out Application Form: Carefully fill out the application form with accurate information. Provide all the required details, such as personal information, educational background, contact details, and any other information requested by the institution.
The application process typically involves filling out the application form, uploading relevant documents, and paying the application fee. The application fee may vary from institution to institution.
The fee for the program may vary from institution to institution. The average fee for the program is between Rs. 1.5 lakhs to Rs. 5 lakhs.
The syllabus for the program typically includes courses such as CAD/CAM, Computer Integrated Manufacturing, Robotics, Automation, and Control Systems.
Semester I
Computer Aided Design
CNC Technology & Programming
Applied Materials Engineering
Communication Skills For Engineering
Semester II
Automation and Robotics
Flexible Manufacturing Cells & Systems
Advances in Manufacturing Processes
Finite Element Analysis
Semester III
Applied Computational Methods
Computer Aided Production Management
Theory of Plasticity
Project Phase I
Semester IV
Mechatronics
Project
Project Phase II
Seminar
Graduates of the program can expect to find employment in industries such as manufacturing, automotive, aerospace, and defense. The average salary for a graduate of the program is between Rs. 4 lakhs to Rs. 10 lakhs per annum.
Graduates of the program can pursue careers as Manufacturing Engineers, Quality Engineers, Design Engineers, Process Engineers, and Project Engineers. Additionally, graduates can also pursue research and development careers in academia or industry.
M.TECH. COMPUTER INTEGRATED MANUFACTURING or Master of Technology in Computer Integrated Manufacturing is a postgraduate Computer Engineering course. PC incorporated assembling (CIM) is the assembling approach of utilizing PCs to control the whole creation process. PC Integrated Manufacturing, known as CIM, is the expression used to depict the total robotization of an assembling plant, with all procedures working under PC control and computerized data integrating them. This is the finished mechanization of an assembling office, for example, a plant. All capacities are under PC control. This begins with PC helped configuration, trailed by PC supported production, trailed via mechanized capacity and dispersion. One coordinated PC framework controls all that occurs. Course incorporates CAD/CAM, PC supported structure/PC helped fabricating, CAPP, PC supported procedure arranging, CNC, PC numerical control machine devices, DNC, direct numerical control machine devices, FMS, adaptable machining frameworks, ASRS, robotized capacity and recovery frameworks, AGV, mechanized guided vehicles, utilization of mechanical autonomy and robotized movement, modernized planning and generation control, and a business framework coordinated by a typical database.
Occupation Types