Why Learn
Robotics & IoT?
Hardware & Embedded C
Program microcontrollers (ESP32, ARM) and interface sensors, actuators, and motors with real-time firmware.
Hardware & Embedded C
Program microcontrollers (ESP32, ARM) and interface sensors, actuators, and motors with real-time firmware.
ROS2 & Autonomous Bots
Master the Robot Operating System (ROS2) for navigation, path planning, and autonomous mobile robot (AMR) control.
Connected Cloud IoT
Connect physical devices to AWS IoT Core and MQTT brokers for real-time telemetry, dashboards, and remote actuation.
Industry Hardware Capstone
Build production-ready hardware prototypes, PCB schematics, and autonomous robot systems under expert guidance.
Future Skills
Who Can Participate?
Engineering & Science Students Passionate About Hardware & Robotics


4 Months Course Roadmap
Module 01
Foundations of Embedded Systems & C/C++
Embedded C/C++ Fundamentals, Microcontroller Architecture & Registers, GPIO, Timers, Interrupts & PWM, UART, SPI, and I2C Communication.
Module 02
IoT Architecture & Communication Protocols
IoT System Architecture, MQTT, HTTP, CoAP & WebSockets, WiFi & Bluetooth BLE Interfacing, Cloud Telemetry Ingestion.
Module 03
Linux for Robotics & ROS2 Basics
Linux OS for Embedded & Robotics, ROS2 Architecture: Nodes, Topics & Services, Publish-Subscribe Communication, URDF Robot Modeling & Simulation.
Module 04
Computer Vision & OpenCV for Robotics
Image Processing with OpenCV, Object Detection & Color Tracking, Depth Cameras & Point Clouds (LiDAR), Visual Odometry & Camera Calibration.
Module 05
Autonomous Mobile Robots (AMR) & Navigation
SLAM (Simultaneous Localization & Mapping), Nav2 Navigation Stack in ROS2, Costmaps & Path Planning (A*, Dijkstra), Sensor Fusion with Kalman Filters.
Module 06
Edge AI, Hardware Capstone & Career Readiness
Edge AI & TinyML on Microcontrollers, PCB Prototyping Basics in KiCAD, Hardware Testing & Debugging, Robotics Portfolio & Interview Prep.

Module
Module 1 — Foundations of Embedded Systems & C/C++
Topics
- Embedded C/C++ Fundamentals
- Microcontroller Architecture & Registers
- GPIO, Timers, Interrupts & PWM
- UART, SPI, and I2C Communication
- Circuit Design & Power Management
Practical
- Firmware Programming on ESP32
- Multi-Sensor Interfacing (Temp, Ultrasonic, IMU)
- PWM Motor Speed & Direction Control
Tools you'll master












Student benefits



Learning Methodology
1-Month
Industry
Internship

Build real hardware, firmware, and connected IoT solutions with industry mentors.
- Hardware mentor
- Embedded firmware labs
- Internship certificate
- Live robotics project
- PCB design reviews
- Experience letter*
*experience letter subject to partner company policies.
“Gain real-world experience building intelligent robots, smart embedded prototypes, and IoT cloud systems with top industry hardware teams.”




Where Can This
Program Take
You?

Admission Process
Apply online
Submit your application via our web portal.
Eligibility interaction
Attend a short interaction or aptitude screening.
Confirmation
Receive your admission confirmation package.
Onboarding
Get LMS access and complete your setup.
Start learning
Attend orientation and begin live classes.

Frequently Asked Questions

Ready to Build Next-Gen Robotics &
Smart IoT Systems?
Design intelligent machines. Program autonomous bots. Build connected IoT devices from scratch.

