Small in size, mighty in power
A microcontroller is the silent brain that turns imagination into intelligent action.
Where circuits meet logic — the microcontroller becomes the heart of every innovation.
A microcontroller is the bridge between human vision and machine precision.
Er. Faisal Nadeem
Where circuits meet logic
Microcontrollers transform electrical circuits into intelligent systems.
A Microcontroller is the brain behind every smart device. It controls machines, processes, and systems with precise logic and programming. In our ATL Lab, students learn how microcontrollers bring automation to life—turning simple circuits into intelligent innovations. With hands-on coding and creativity, they explore how this tiny chip powers robots, sensors, and the technology of tomorrow.
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Founder & Head of School
Day care Options
Age-specific support for every stage
Infant
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Toddlers
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Preschool
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Day care
Schedule and tuition
Half Days
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- 8:30 - 12:00
- $1,800/mo
02
Full Days
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- 8:30 - 3:30
- $2,300/mo
03
Extended Day
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- 8:30 - 5:30
- $2,600/mo
We welcome kids into our 2-4’s program based on their birth year.
Why us
The best early learning experience
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- Holistic approach
- Passionate teachers
- Supervision to keep children
Kindness
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Creativity
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Emotional
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Innovation
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Daily activities
Designed to help children realize their potential
Morning Huddles
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The Basics
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Play Stations
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Learning Lab
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Superfoods
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Outdoor Play
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Meet the teachers
Experts in giving your children best start

Lead teacher and 1-2 year olds

Teacher: 2-3 year olds

Teacher: 3-4 year olds
What parent say
More than just a joyful place
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"It’s not magic, it’s logic— A microcontroller weaves wonders in code and circuit."
Function of a Microcontroller
A microcontroller is a compact, integrated circuit designed to execute specific tasks in embedded systems. Often referred to as the "brain" of electronic devices, a microcontroller combines a processor, memory, and input/output (I/O) peripherals on a single chip, allowing it to process data, control hardware, and make intelligent decisions based on programmed instructions.
In Atal Tinkering Labs (ATL), microcontrollers such as Arduino, ESP32, or Raspberry Pi Pico are widely used for hands-on learning. They empower students to innovate, build prototypes, and bring their ideas to life through logical programming and creative circuitry.
"At the core of every smart system, a microcontroller commands the flow."
Function of a Microcontroller: Powering Intelligence in Electronics
A microcontroller is the silent commander of modern electronic devices. Its function is simple yet profound — to control the operations of a device automatically, based on inputs it receives and instructions it's programmed with. Let us explore its functions in detail:
1. Input Handling – Listening to the Environment The microcontroller reads data from various input devices such as sensors, switches, or buttons. This could be temperature from a sensor, movement from an IR detector, or a touch from a keypad. Example: In a fire alarm system, it reads data from the smoke sensor.
2. Processing – Making Smart Decisions Once the data is received, the microcontroller processes it using pre-written code (firmware). It compares the input against given conditions and decides what action to take. Example: If temperature exceeds a threshold, it decides to turn on a fan or sound an alarm.
3. Output Control – Acting on Commands Based on the decision, it sends commands to output devices like LEDs, motors, displays, buzzers, etc. This is where the device comes to life! Example: In an automatic water pump, it turns the pump ON when soil moisture is low.4. Memory Management – Storing & Recalling Data Microcontrollers come with built-in ROM, RAM, and EEPROM to store code, temporary data, and permanent values. It remembers what to do, even after power is off! Example: It stores calibration data for sensors or previous input states.
5. Timing & Communication – Synchronizing and Sharing Data Microcontrollers manage real-time timing and communicate with other devices using protocols like UART, SPI, or I2C. This allows coordination with displays, Wi-Fi modules, or other microcontrollers. Example: A microcontroller in a drone sends signals to GPS and motor controller modules simultaneously.
What is Arduino UNO?
The Arduino UNO is a powerful open-source microcontroller board, designed to bridge the world of electronics with the language of creativity. education.
Powered by the AT mega 328P microcontroller, it is a beginner-friendly yet professional-grade platform used widely in electronics, robotics, and STEM education.
Application of Arduino:-
Arduino, the heartbeat of innovation in modern education, plays a pivotal role in nurturing creativity within the Atal Tinkering Lab (ATL)—a flagship initiative under Atal Innovation Mission (AIM) by NITI Aayog.
Arduino boards empower students to build interactive projects—from automatic street lights to smart irrigation systems, line-following robots to home automation models. These projects are not merely academic exercises but mirrors of 21st-century innovation, teaching logic, programming, electronics, and design thinking.
Arduino’s open-source ecosystem, affordability, and vast online resources make it ideal for school-level innovation. It allows students to experiment with sensors, motors, LEDs, and IoT components, transforming simple ideas into tangible prototypes.
