Program Description

The course delves into Automotive Mechatronics, covering ECUs, automotive networking, sensor integration, and embedded systems in functions like ABS and power steering. It explores healthcare devices such as stethoscopes, thermometers, and ultrasound machines, with a demonstration of remote health monitoring. Additionally, it covers EV technologies, motor control, and a practical demonstration of Bluetooth-controlled mini electric cars. Finally, it includes a segment on designing a 5DOF Robotic Arm for industrial automation, with hands-on activities using Arduino Nano and Simulink simulations.

Course Objectives

  • Explore Automotive Mechatronics, focusing on ECUs, networking, and sensor integration.
  • Analyze medical devices in Healthcare Applications, covering signal processing and remote health monitoring.
  • Understand EV technologies, motor control, and design practical applications.
  • Design a 5DOF Robotic Arm for industrial automation, covering control systems and simulations with Arduino Nano and Simulink.

Key Highlights

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Automotive Mechatronics

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Healthcare Applications

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EV Technologies

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Robotics

Course enrollment data

Learning Format

Online

Duration

4 units

Certified by

IITM Pravartak Technologies Foundation
Technology Innovation Hub (TIH) of IIT Madras and
L&T EduTech

Program Fee

Rs. 1900/- Inclusive of Tax

Downloads

Program Description

Education Qualification

Students pursuing diploma/UG/PG Programs in Electrical/Electronics Engineering Department, Mechanical Engineering, robotics, healthcare technology, or related fields interested in advanced applications of CPS in diverse domains.

Suggested Prerequisites

Basic understanding of automotive systems and electronics, Familiarity with electronics and sensor technology.

Teaching Hours

12

Lead Faculty

Dr. P. Rangarajan

Subject Matter Expert, L&T EduTech.

Dr. P. Rangarajan is a Subject Matter Expert in Electrical Engineering. He obtained his doctorate from Anna University in 2004, specializing in VLSI & Signal Processing. He earned his M.E. degree in Power Electronics from Guindy College of Engineering in 1996 and his B.E. degree in Electrical and Electronics Engineering from Coimbatore Institute of Technology in 1990. He has a total of 33 years of work experience. He has published 80 papers in international journals and holds four patents. He is also a recognized supervisor at Anna University, where he has guided nineteen Ph.D. scholars to completion. Additionally, he has executed projects funded by AICTE and DST. He received the CTS Best Faculty Award in 2014.

Learning Schedule

Basics of Mechatronics and Vehicle System Architecture, Embedded Electronics Control Unit, Automotive Networking and Bus System, Automotive Sensors and Measuring Principles, Embedded Electronic Transmission Control, Embedded Applications in Antilock Braking System, Embedded Electronic Fuel Injection Control System, Electric Power Steering and Drive adjustment Systems, Embedded System for Electronic Heating , Ventilation and air conditioning Control, Embedded applications in Air Bag and Seatbelts, Embedded Applications in Automotive Radar for Advanced Driver Assistance Systems, Demo of CAN interface with STM32F407 Microcontroller.

Electronic Stethoscope and Heart Rate Monitor using Embedded System, Digital Thermometer using Embedded Microcontroller, Blood Pressure Measurement using Embedded Systems, Blood Glucose meters (BGM) using Embedded Systems, Ultrasound Imaging using Embedded System, Magnetic Resonance Imaging (MRI) using Embedded Systems, X-Ray and Computed Tomography (CT) Medical Imaging Technology using Embedded System, Dialysis Machine Design using Embedded System, Endomicroscopy Machine Design using Embedded Systems, ECG Machine Design using Embedded System, EEG using Embedded Systems, Demonstration of Heart Health Monitoring using Arduino Nano.

Embedded System Applications 48-V Electrification Belt-Driven Starter Generator Systems in Vehicles, Embedded System Control Multi-kW DC-DC converters for Electric Vehicles, EV Traction Motor Power Inverter Control using Embedded System, Hybrid Electric Vehicles (HEV)/EV On-Board Charger (OBC) using Embedded System, HEV/EV Wireless Charging using Embedded System, Permanent Magnet Synchronous Motor (PMSM)/ Brushless DC (BLDC) industrial Motor Control using Embedded system, 3-Phase Induction Industrial Motor Control using Embedded System, Switched Reluctance Motor Control using Embedded system, Demo of Interfacing Four DC Motors of Mini Electric Car with Arduino Nano, Universal Motor Control using Embedded System, Single Phase AC Motor Control using Embedded System.

Introduction to Pneumatics and Hydraulics Systems for Robotic Applications, Controlling Solenoid Valves Using Microcontroller for Pneumatics and Hydraulics, 5D Robotic Description and Mechanical Design Using Hardenberg Principle, 5D Robotic Arm simulation using Simulink, Introduction to Arduino Nano, Introduction to Arduino IDE with LED On-board Blinking, Interfacing Servo Motor Using Arduino Nano, Controlling Servo Motor with Potentiometer Using Arduino Nano, Controlling 5 Servo Motors With PCA9685 Using Arduino Nano, 5DOF Robotics Arm Assembly And Testing



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