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Mastering IoT: From Sensor to Cloud
Become an IoT expert in 12 weeks! This comprehensive 24-class course takes you on a deep dive into the Internet of Things, from fundamental electronics to advanced cloud integration.
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This 12-week, 24-class course is a thorough and practical curriculum designed to take you from a basic understanding of electronics to the professional-level skills required for building robust IoT solutions. The journey begins with the foundation of IoT, exploring key concepts and the powerful ESP32 microcontroller.
Throughout the course, you'll engage in a project-based learning approach. We will systematically cover the four main pillars of IoT:
- Things: Integrating various sensors to gather data and actuators to interact with the physical world.
- Connectivity: Mastering Wi-Fi, Bluetooth, and MQTT to enable your devices to communicate.
- Data Processing: Learning to send data to the cloud, use APIs, and store information.
- Cloud Application: Visualizing your data on platforms like Adafruit IO and building web-based dashboards for control.
With a minimum of six hands-on projects—including a Smart Home Light Controller, an Environmental Monitor, and a Smart Security System—you will build a portfolio of impressive IoT devices. By the end, you will not only understand the theory behind IoT but also possess the practical skills to design, develop, and deploy your own innovative solutions.
Lecture 1: Introduction to IoT: Concepts, components, and applications.
Lecture 2: The ESP32: Architecture, board variants, and Arduino IDE setup. Project 1 Start.
Lecture 3: Digital I/O: Controlling LEDs and reading button inputs.
Lecture 4: Analog I/O and PWM: Reading a potentiometer and controlling LED brightness.
Lecture 5: Environmental Sensing: Using a DHT sensor for temperature and humidity. Project 1, Part 1.
Lecture 6: Motion and Proximity: Working with PIR motion and ultrasonic sensors.
Lecture 7: Light and Sound: Using photoresistors and sound sensors.
Lecture 8: Controlling Actuators: Interfacing with servo motors and relays. Project 2 Start.
Lecture 9: Wi-Fi Basics: Connecting the ESP32 to a network.
Lecture 10: ESP32 as a Web Server: Hosting a basic web page for local control.
Lecture 11: Introduction to MQTT: The publish/subscribe protocol.
Lecture 12: Bluetooth Communication: Controlling a device from a smartphone. Project 2, Part 1.
Lecture 13: Cloud Platforms: Introduction to Adafruit IO and ThingSpeak.
Lecture 14: Sending Data to the Cloud: Publishing sensor data via MQTT. Project 3 Start.
Lecture 15: Receiving Commands from the Cloud: Subscribing to topics to control an actuator remotely. Project 3, Part 1.
Lecture 16: Building Dashboards: Visualizing data and creating interactive controls.
Lecture 17: Power Management: Using ESP32's Deep Sleep for battery-powered devices.
Lecture 18: Security Basics: Securing Wi-Fi connections and data. Project 4 Start.
Lecture 19: Using APIs: Fetching weather data from an external API.
Lecture 20: Over-the-Air (OTA) Updates: Updating your device's firmware remotely. Project 4, Part 1.
Lecture 21: Project 5: Smart Irrigation System: Build a system that reads soil moisture and controls a pump.
Lecture 22: Project 6: Smart Security System: Use a PIR sensor to detect motion and send a notification to your phone.
Lecture 23: Final Project Planning: Ideation, design, and component selection for a custom IoT device.
Lecture 24: Final Project Showcase: Build and demonstrate your unique IoT project, integrating all learned skills.
Anushri Mishra

- 4.5 Instructor Rating
- 100+ Reviews
- 200+ Students
- 10 Courses
I am an educator with 3 year of experience teaching Artificial Intelligence, Coding and Robotics. I specialise in simplifying complex technical concepts, making them engaging and accessible for learners of all backgrounds. My classes blend theory with hands-on projects, helping students understand how AI and robotics shape the world around us.
Passionate about fostering curiosity and innovation, I am committed to inspiring the next generation of creators and problem-solvers through practical learning and interactive teaching methods.
Educational Qualification - B.Tech - Computer Science Engineering (CSE)
Experience - 3+ Year in Education-Technology Sector.
Saumya Yadav

- 4.2 Instructor Rating
- 100+ Reviews
- 200+ Students
- 10+ Courses
Saumya Yadav is a Robotics Mentor who simplifies technology concepts into engaging, hands-on lessons for young learners. She has taught 100+ students in Lucknow, using tools like TinkerCad and Arduino IDE to make learning interactive and practical.
She holds a B.Sc. (PCM) from the University of Lucknow and focuses on building creativity, problem-solving, and critical thinking through robotics education.
Qualification - B.Sc (Maths) and M.Sc (PCM)
Experience - 3+ Year in Education Technology (Edtech)
Adarsh Bind

- 4.5 Instructor Rating
- 500+ Reviews
- 1000+ Students
- 20+ Courses
I am an educator with 3+ years of experience teaching Robotics, IoT, and Arduino Coding. I specialize in simplifying complex technical concepts into engaging, hands-on lessons that are easy to understand. My classes focus on creativity, critical thinking, and real-world problem solving, and I have successfully taught 1000+ students across Lucknow using platforms such as Arduino, Micro:bit, and Scratch.
Passionate about making technology learning exciting and inclusive, I am committed to preparing students for the future through interactive teaching methods and practical projects. My student-centric approach ensures every learner feels supported and inspired.
Educational Qualification – Pursuing B.Tech in Computer Science and Engineering from Dr. APJ Abdul Kalam Technical University, Lucknow
Experience – 3+ years in the EdTech sector with NaivoTech Innovations
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What you need/Requirement

Internet
You need a working internet connection to watch videos, join online classes, and get help when needed.

Laptop/PC
A personal computer is essential for hands-on practice and project work.

Robotics and STEM Kit
Complete STEM kit with all the components needed for building real-world projects.
Learning Path




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