

Basic Microbit Kit
12.640 د.ك (The price does not include Vat)
The Basic Microbit Kit is a great entry point into physical computing and creative electronics using the BBC micro:bit. Designed for simplicity and hands-on engagement, this kit provides a compact set of components ideal for experimenting with logic, sensors, and outputs like lights and sound.
3 in stock (can be backordered)
🧰 Basic Microbit Kit
The Basic Microbit Kit is a great entry point into physical computing and creative electronics using the BBC micro:bit. Designed for simplicity and hands-on engagement, this kit provides a compact set of components ideal for experimenting with logic, sensors, and outputs like lights and sound.
It’s perfect for students and beginners who want to explore how software and hardware work together. No need for complicated wiring or soldering—just plug, clip, and create!
🧠 What Makes This Kit Special?
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Uses the BBC Micro:bit board, known for its user-friendly interface.
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Perfect for block-based coding with MakeCode or Python programming.
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Enables wireless experiments and interactive projects with ease.
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All components connect easily using crocodile clips—no breadboard needed.
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Encourages real-time feedback through LEDs, sounds, and sensors.
🔍 What Can You Learn with This Kit?
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Programming logic using Microbit’s MakeCode or Python.
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Controlling LEDs and creating patterns.
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Using sound and light outputs in response to code.
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Powering projects with batteries or USB.
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Interfacing with inputs like traffic light modules and sensors.
🔩 Kit Components:
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BBC Microbit board
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USB power cable
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2x AA batteries
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Battery holder (for Microbit)
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Multiple colored LEDs
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Crocodile clip wires (red/black/yellow/green)
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Alligator clips with wires
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Traffic light module
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Passive buzzer/speaker
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Learn to Code, Connect, and Create Smart Systems — In 3 Practical Levels
A full educational experience designed for building real-life projects and developing programming logic.
🧠 The Arduino Lab helps learners understand the core of smart system development through hands-on experiments using sensors, actuators, and logic-based control systems — all powered by the Arduino environment.
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