Participants gain comprehensive understanding of basic manufacturing of subtraction & additive manufacturing concepts and various technologies developed over three centuries. Develop proficiency in 3D modelling and slicing of the parts. Experience hands-on printing using FDM technology 3D printers, along with demonstrations and orientations on other 3D printing technologies. The program emphasizes practical application with minimal theoretical instruction.
The program emphasizes experiential learning, with 80% hands-on training and 20% theoretical instruction.
The course aims students to build objects layer by layer from digital models.
Increase the creativity of thinking and building.
Choose Your Slot (Registration closes 2 days before the start of each slot):
• Slot 1 : 20th Apr 26 to 25th Apr 26 (9.00 am - 12.00 noon)
• Slot 2: 12th May 26 to 14th May 26 (9.00 am - 4.30 pm)
• Slot 3: 21st May 26 to 23rd May 26 (9.00 am - 4.30 pm)
Eligibility:Class 12 appeared (students who have appeared for Class 12 board examinations this year) .
Batch size : Max. 30 students.
Course Fees : Rs.2000/- + 18% GST with Certification.
Venue : Digital Manufacturing Lab CSTF / CWS - IIT Madras.
Note: Accommodation will not be provided by IIT Madras.
Dr. V. Sankaran received his Ph.D. Degree from Anna University in 1986 in the areas of Computer Networks. He worked as Professor from 1986 to 1995 in the Department of Computer Science and Engineering in a few colleges like Sri Venkateswara, SRM and Sathyabama, Chennai. Also, he worked as Dean at VIT for an year in the year 2014. He is a guest faculty for IIIT Design and Development, Chennai.
He moved to IT industry in 1995 and worked as Project Manager, Delivery Manager, Program Manager and Director in companies like L-Cube Innovative Solutions, HCL Technologies, Packet Island and BroadSoft.
His IT industry experience is over 30+ years and his strength are in the areas of Computer Networks, Security, UI Technology, Linux Kernel Programming, Device Drivers and Data Engineering.
Manual is framed as self-practice by students with necessary wiring diagrams.
Manual starts with a Quick Overview of the Trainer System, describing the various functional blocks, and their locations.
Sufficient background Theory is given for better understanding.
Measurement tables are given with theoretical values to verify practical results.
Plots are given for quick analysis as well as the conclusion.
Wherever required, experiments are provided with numerical problems to understand the theory well.
Specifications, Characteristics, and functions of each component are discussed in detail.
Self-Assessment questions are given to gain confidence.
Appendix is given to recollect basics and apply in relevant experiments.
The range of topics covered, start from electricity basics, electrical circuits, test and measuring instruments, electronic components, semiconductor devices, transistor circuits, Analog Circuits, digital electronics, Solar photovoltaic as a renewable energy source, Input-Output devices, sensors and actuators till the embedded controller using Arduino UNO. Last two topics are devoted to the application-based exercises as relevant for use in our day-to-day life.
List of Dos and Don’ts and Safety Practice are given.
Needs only minimum guidance and provides great confidence.
Manual is prepared with the motive of imparting the required Knowledge and Skill competencies so as to nurture the students to build and develop their own electronic circuitry and systems in the future.
Electronics and Embedded controller experiments with Universal Trainer kit.
Advanced Embedded and Remote controlled IoT projects.
Proto type project design with schematic and PCB Design.
Link will be posted soon
  Mr. R. Pahanivel, Mr. P. Hariharan & Dr. G. Balaganesan
  Mail Id: pazhani@iitm.ac.in
  Mr. R. Pahanivel
  Mail Id: pazhani@iitm.ac.in