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Excellence In BLUETOOTH ROBOT(S-EBR-8899)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

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

What you'll learn

The Bluetooth Robot course is a practical robotics program designed to teach learners how to build, program, and wirelessly control a robotic vehicle using Bluetooth technology. The course combines electronics, Arduino programming, DC motors, motor drivers, Bluetooth communication, sensors, and mechanical assembly.

Students learn how a mobile phone can communicate with a Bluetooth module connected to a microcontroller and send commands to control the robot's movement. Through hands-on projects, learners develop practical skills in wireless communication, circuit building, programming, robot assembly, motor control, and troubleshooting.

What You Will Learn

  • Fundamentals of robotics and wireless control
  • Electronics and basic circuit connections
  • Arduino microcontroller programming
  • Bluetooth communication concepts
  • HC-05/HC-06 Bluetooth module
  • Bluetooth pairing and serial communication
  • DC motor and motor driver control
  • Forward, reverse, left and right movement
  • Mobile-based robot control
  • Speed control using PWM
  • Ultrasonic and IR sensor integration
  • Battery and power management
  • Robot assembly and wiring
  • Hardware and software troubleshooting
  • Development of a complete Bluetooth-controlled robot

Who Can Join?

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

Prerequisite

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

Course Outcome

After completing this course, learners will be able to:

  • Understand the fundamentals of Bluetooth-controlled robotics.
  • Identify and connect the major components of a Bluetooth robot.
  • Program an Arduino-based robotic vehicle.
  • Configure and use a Bluetooth module for wireless communication.
  • Connect a mobile device with the robot.
  • Control DC motors through a motor driver.
  • Program forward, reverse, left, right and stop movements.
  • Implement basic speed-control functions.
  • Integrate sensors and indicators with the robot.
  • Troubleshoot Bluetooth, motor, wiring and programming problems.
  • Build and demonstrate a complete Bluetooth Robot project.

Career & Learning Opportunities

  • Robotics Project Assistant
  • Robotics Technician – Entry Level
  • Arduino Project Trainee
  • Embedded Systems Trainee
  • Bluetooth/IoT Project Trainee
  • Electronics Project Trainee
  • Automation Trainee
  • Robotics Programming Assistant
  • Robotics Lab Assistant
  • IoT & Robotics Project Assistant
  • STEM/Robotics Trainer – Entry Level


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Course Syllabus

Module 1: Introduction to Bluetooth Robot

  • Introduction to robotics
  • What is a Bluetooth-controlled robot?
  • Working principle of Bluetooth robotics
  • Applications of Bluetooth robots
  • Types of wireless robotic systems
  • Advantages of Bluetooth control
  • Basic components required

Module 2: Electronics Fundamentals

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

Module 3: Bluetooth Robot Components

  • Microcontroller
  • DC geared motors
  • Motor driver
  • Bluetooth module
  • Wheels and chassis
  • Battery and power supply
  • Connecting wires and electronic components

Module 4: Microcontroller Fundamentals

  • Introduction to microcontrollers
  • Arduino overview
  • Arduino board components
  • Digital and analog pins
  • Input and output devices
  • Microcontroller connections
  • Basic control applications

Module 5: Arduino Programming Basics

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

Module 6: Bluetooth Communication Fundamentals

  • Introduction to Bluetooth technology
  • Bluetooth communication principles
  • Bluetooth transmitter and receiver concepts
  • Bluetooth modules used in robotics
  • Wireless data transmission
  • Bluetooth communication range
  • Basic Bluetooth communication testing

Module 7: HC-05/HC-06 Bluetooth Module

  • Introduction to HC-05 and HC-06
  • Bluetooth module pins
  • Power and signal connections
  • Pairing Bluetooth devices
  • Serial communication with Arduino
  • Receiving commands through Bluetooth
  • Bluetooth module troubleshooting

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: Bluetooth Robot Chassis & Assembly

  • Chassis design
  • Wheel installation
  • Motor mounting
  • Battery placement
  • Bluetooth module placement
  • Circuit wiring
  • Mechanical alignment
  • Complete robot assembly

Module 11: Bluetooth-Based Robot Movement

  • Forward movement command
  • Reverse movement command
  • Left turn command
  • Right turn command
  • Stop command
  • Command-based movement
  • Testing robot movement
  • Developing movement sequences

Module 12: Mobile-Controlled Robot

  • Connecting mobile phone with Bluetooth
  • Bluetooth control applications
  • Creating a simple control interface
  • Direction buttons
  • Sending movement commands
  • Receiving commands through Arduino
  • Mobile-controlled robot testing

Module 13: Sensors & Robot Indicators

  • Introduction to robotic sensors
  • Ultrasonic sensor
  • IR sensor concepts
  • LED indicators
  • Buzzer integration
  • Sensor-based feedback
  • Reading sensor values
  • Integrating sensors with Bluetooth control

Module 14: Advanced Bluetooth Robot Control

  • Variable speed control
  • Multiple control modes
  • Sensor-assisted movement
  • Emergency stop function
  • Automatic and manual control
  • Advanced movement logic
  • Improving command response

Module 15: Power Supply & Battery Management

  • Battery types
  • Selecting suitable batteries
  • Voltage requirements
  • Power distribution
  • Battery connections
  • Safe battery handling
  • Power consumption
  • Battery efficiency

Module 16: Programming & Troubleshooting

  • Arduino program debugging
  • Bluetooth pairing problems
  • Serial communication issues
  • Motor control problems
  • Sensor troubleshooting
  • Wiring errors
  • Power supply issues
  • Hardware and software testing

Module 17: Applications of Bluetooth Robots

  • Educational robotics
  • Remote robotic vehicles
  • Mobile-controlled robots
  • Smart transportation concepts
  • Remote inspection applications
  • Sensor-based robotic systems
  • Automation learning applications

Module 18: Bluetooth Robot Project Design

  • Project planning
  • Component selection
  • Circuit design
  • Bluetooth communication setup
  • Motor and driver integration
  • Programming workflow
  • Testing and improvement
  • Project documentation

Module 19: Practical Bluetooth Robot Projects

  • Basic Bluetooth-controlled car
  • Mobile-controlled Robo Car
  • Bluetooth robot with LED indicators
  • Bluetooth robot with buzzer
  • Bluetooth obstacle detection robot
  • Sensor-assisted Bluetooth robot
  • Multi-speed Bluetooth robotic vehicle

Module 20: Final Bluetooth Robot Project

  • Complete robot assembly
  • Bluetooth module integration
  • Motor driver and motor connections
  • Arduino programming
  • Mobile control setup
  • Movement and speed testing
  • Sensor integration
  • Troubleshooting
  • Final project demonstration
  • Practical assessment


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