Best Seller Icon Bestseller

Excellence In WIFI ENABLED ROBOTS(S-EWER-5781)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

  • Duration2 Months
  • Enrolled0
  • Lectures50
  • Videos0
  • Notes0
  • CertificateYes

What you'll learn

The WiFi Enabled Robots course is a practical robotics and IoT program designed to teach learners how to build and control robotic systems using WiFi and network communication. The course combines electronics, microcontrollers, programming, motor control, sensors, web-based interfaces, and IoT concepts.

Students learn how WiFi-enabled controllers such as ESP8266 and ESP32 can connect a robot to a wireless network and receive commands from a smartphone or computer. The course also introduces sensor data transmission, remote monitoring, web-based control, and basic IoT integration through hands-on robotics projects.

What You Will Learn

  • Fundamentals of WiFi-enabled robotics
  • Electronics and circuit connections
  • ESP8266 and ESP32 basics
  • Arduino IDE and microcontroller programming
  • WiFi network connectivity
  • Access Point and Station concepts
  • IP address and network communication basics
  • Web-based robot control
  • Smartphone and computer control
  • DC motor and motor driver control
  • Ultrasonic and IR sensor integration
  • Wireless sensor data monitoring
  • IoT and cloud communication concepts
  • Remote monitoring and control
  • Development of complete WiFi-enabled robot projects

Who Can Join?

  • School students
  • Robotics beginners
  • STEM learners
  • Engineering and diploma students
  • ITI and technical students
  • Electronics students
  • Arduino beginners
  • IoT learners
  • Robotics enthusiasts
  • Students interested in wireless technology and automation

Prerequisite

Basic computer knowledge and logical thinking are helpful. Basic electronics or programming knowledge is an advantage but not mandatory. No previous experience in WiFi robotics or IoT is required.

Course Outcome

After completing this course, learners will be able to:

  • Understand the fundamentals of WiFi-enabled robotic systems.
  • Identify and connect the major components of a WiFi robot.
  • Program ESP8266/ESP32-based robotic systems.
  • Connect a robot to a wireless network.
  • Control a robot using a smartphone or computer.
  • Develop basic web-based robot control interfaces.
  • Control motors through a motor driver.
  • Integrate sensors with WiFi-enabled robots.
  • Transmit sensor data over a wireless network.
  • Understand basic IoT and remote-monitoring concepts.
  • Troubleshoot common network, hardware and programming issues.
  • Build and demonstrate a functional WiFi Enabled Robot.

Career & Learning Opportunities

  • IoT Project Trainee
  • Robotics Project Assistant
  • IoT & Robotics Trainee
  • Embedded Systems Trainee
  • Robotics Technician – Entry Level
  • Automation Trainee
  • Wireless Technology Project Assistant
  • Electronics Project Trainee
  • IoT Support Trainee
  • Robotics Programming Assistant
  • Robotics Lab Assistant
  • STEM/Robotics Trainer – Entry Level
  • Smart Automation Project Assistant


Show More

Course Syllabus

Module 1: Introduction to WiFi Enabled Robots

  • Introduction to robotics and wireless communication
  • What is a WiFi-enabled robot?
  • Working principle of WiFi-controlled robots
  • Applications of WiFi robotics
  • Advantages of WiFi-based control
  • Autonomous and remote-controlled WiFi robots
  • Basic components required

Module 2: Electronics Fundamentals

  • Basic electronic components
  • Voltage, current and resistance
  • Resistors, capacitors and LEDs
  • Switches and connectors
  • Breadboard fundamentals
  • Basic circuit connections
  • Power supply concepts

Module 3: WiFi Robot Components

  • Microcontrollers with WiFi capability
  • ESP8266 and ESP32 overview
  • DC geared motors
  • Motor driver
  • Wheels and chassis
  • Sensors and electronic modules
  • Battery and power supply

Module 4: Microcontroller & WiFi Fundamentals

  • Introduction to WiFi-enabled microcontrollers
  • ESP8266 and ESP32 architecture
  • Digital and analog pins
  • GPIO concepts
  • Input and output devices
  • WiFi connectivity basics
  • Connecting a microcontroller to a wireless network

Module 5: Programming Fundamentals

  • Introduction to Arduino IDE
  • Program structure
  • Variables and data types
  • Operators
  • Conditional statements
  • Loops and functions
  • Serial communication
  • Uploading and testing programs

Module 6: WiFi Communication

  • Introduction to wireless networking
  • WiFi communication principles
  • Access Point and Station modes
  • Connecting a robot to WiFi
  • IP address fundamentals
  • Network communication concepts
  • WiFi connection testing

Module 7: Web-Based Robot Control

  • Introduction to web-based control
  • Creating a basic robot control interface
  • Web server concepts
  • Direction control buttons
  • Sending commands through a browser
  • Receiving commands on the robot
  • Testing web-based movement control

Module 8: DC Motors & Motor Control

  • Working of DC geared motors
  • Motor direction control
  • Forward and reverse movement
  • Left and right movement
  • Motor speed control
  • PWM fundamentals
  • Motor testing and troubleshooting

Module 9: Motor Driver Module

  • Need for a motor driver
  • Introduction to L298N/L293D
  • Motor driver connections
  • Controlling multiple motors
  • Direction control
  • Speed control
  • Motor driver troubleshooting

Module 10: WiFi Robot Chassis & Assembly

  • Chassis design
  • Wheel installation
  • Motor mounting
  • Controller placement
  • WiFi module placement
  • Battery placement
  • Circuit wiring
  • Complete robot assembly

Module 11: WiFi-Based Robot Movement

  • Forward movement
  • Reverse movement
  • Left and right movement
  • Stop command
  • Command-based motor control
  • Speed control
  • Real-time movement testing

Module 12: Mobile & Computer Control

  • Controlling robots using smartphones
  • Browser-based control
  • Computer-based control
  • Local network communication
  • Designing a simple control interface
  • Sending commands over WiFi
  • Testing remote operation

Module 13: Sensor Integration

  • Introduction to robotic sensors
  • Ultrasonic sensor
  • IR sensor concepts
  • Temperature and environmental sensors
  • Sensor data collection
  • Reading sensor values
  • Sending sensor data through WiFi
  • Sensor-based robot control

Module 14: IoT & Cloud Integration

  • Introduction to IoT
  • WiFi and IoT relationship
  • Cloud communication concepts
  • Sending robot data to online platforms
  • Remote monitoring concepts
  • IoT dashboard concepts
  • Basic smart robot applications

Module 15: Advanced WiFi Robot Features

  • Variable speed control
  • Multiple operating modes
  • Sensor-assisted movement
  • Remote monitoring
  • Emergency stop
  • Automatic and manual control
  • Real-time status monitoring

Module 16: Power Supply & Troubleshooting

  • Battery types
  • Selecting suitable batteries
  • Voltage requirements
  • Power distribution
  • WiFi connectivity problems
  • Motor and sensor problems
  • Wiring errors
  • Software debugging
  • Network troubleshooting

Module 17: Applications of WiFi Enabled Robots

  • Smart home robotics
  • Remote inspection
  • Educational robotics
  • IoT-based robotic vehicles
  • Remote monitoring systems
  • Warehouse and material-handling concepts
  • Smart agriculture applications
  • Industrial automation concepts

Module 18: WiFi Robot Project Design

  • Project planning
  • Component selection
  • Circuit design
  • WiFi network configuration
  • Motor and sensor integration
  • Control interface development
  • Testing and optimization
  • Project documentation

Module 19: Practical WiFi Robot Projects

  • WiFi-controlled robotic car
  • Browser-controlled robot
  • Smartphone-controlled WiFi robot
  • WiFi robot with ultrasonic sensor
  • WiFi robot with live sensor monitoring
  • IoT-enabled robotic vehicle
  • Remote monitoring robot prototype

Module 20: Final WiFi Enabled Robot Project

  • Complete robot assembly
  • WiFi microcontroller integration
  • Motor driver and motor connections
  • Web/mobile control setup
  • Arduino programming
  • Sensor integration
  • Network configuration
  • Movement and communication testing
  • Troubleshooting
  • Final project demonstration
  • Practical assessment


Review

0.0
Course Rating (0 reviews)
0%
0%
0%
0%
0%



Call
Text Message
Review
Email
CHAT