Seed Programming

Physical
10,000 /- PKR

About Program

This course is designed to introduce children to the exciting world of robotics through hands-on activities and projects. Over the span of a few weeks, students will learn fundamental concepts of electronics, programming, and robotics using the Wokwi platform and Arduino. They will progressively advance from basic circuit control to building and programming their own automation projects and launching simple science-based experiments.

In Collaboration with University of Central Punjab (UCP)

Course Outline

Lecture 1: Introduction to Arduino & Basic Electronics
  • Introduction to Arduino UNO and circuit components.
  • Understanding voltage, current, LEDs, and resistors.
  • Introduction to breadboards and jumper wires.
  • Hands-on activity: Blink an LED using Arduino.
  • Understanding digital output and basic coding.
  • Assignment: Create a blinking LED circuit with different delay timings.
Lecture 2: Traffic Light System
  • Understanding sequential LED control.
  • Introduction to timing logic using delay().
  • Building a traffic light using Red, Yellow, and Green LEDs.
  • Learning traffic signal automation concepts.
  • Assignment: Modify the traffic light timing and create your own sequence.
Lecture 3: Water Tank Full Level Alarm
  • Introduction to ultrasonic sensors (HC-SR04).
  • Measuring distance using sound waves.
  • Hands-on project: Water tank overflow alarm.
  • Using buzzers and LEDs for alerts.
  • Assignment: Adjust the water level threshold and test the alarm system.
Lecture 4: IR Sensor Automatic Hand Washing System
  • Introduction to IR proximity sensors.
  • Understanding relay modules and pumps.
  • Building a touchless sanitizer/water dispenser.
  • Learning automation through sensor detection.
  • Assignment: Modify pump timing and sensor range.
Lecture 5: Water Pump Automation with Relay
  • Introduction to water level sensors.
  • Using relays to control high-power devices.
  • Hands-on project: Automatic water pump controller.
  • Understanding low-level and high-level automation.
  • Assignment: Create a mini water level simulation system.
Lecture 6: Ultrasonic Automatic Dustbin
  • Introduction to servo motors.
  • Detecting objects using ultrasonic sensors.
  • Hands-on project: Smart automatic dustbin.
  • Programming automatic lid opening and closing.
  • Assignment: Adjust the servo angle and lid timing.
Lecture 7: Rain Detection System
  • Introduction to rain sensor modules.
  • Understanding weather-based automation.
  • Hands-on project: Automatic rain protection system.
  • Using servo motors for automated covering.
  • Assignment: Simulate rain and test the automatic response.
Lecture 8: RFID Security Gate System
  • Introduction to RFID technology.
  • Understanding UID-based security systems.
  • Hands-on project: RFID gate access system.
  • Using servo motors for gate movement.
  • Assignment: Register multiple RFID cards for access control.
Lecture 9: Car Chassis & Motor Control
  • Introduction to robotic car chassis.
  • Understanding DC motors and L298N motor driver.
  • Programming Forward, Backward, Left, and Right movement.
  • Learning motor speed and direction control.
  • Assignment: Build and test a robotic car movement system.
Lecture 10: Bluetooth Smartphone Robot
  • Introduction to Bluetooth communication.
  • Using HC-05/HC-06 Bluetooth modules.
  • Connecting Arduino with smartphone apps.
  • Hands-on project: Wireless robot control.
  • Assignment: Create custom movement controls using Bluetooth commands.
Project 1 : Line Following Autonomous Robot
  • Introduction to IR line tracking sensors.
  • Understanding autonomous robot navigation.
  • Hands-on project: Line-following robot.
  • Learning automatic path correction.
  • Assignment: Create a custom race track using black tape.
Project 2 : Water & Air Pressure Rocket
  • Project: Water Bottle Rocket using air pressure.
  • Understanding Newton’s Third Law of Motion.
  • Experimenting with water levels and pressure.
  • Testing launch height and distance.
  • Assignment: Compare different bottle sizes and record launch results.