Little Bird
Crack The Code Classroom Kit (add a student)
Need to add more students to your Crack the Code classroom? This single-student Arduino kit includes everything one student needs to build light and sound pr...
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Crack the Code · Interactive learning path
See it in 3D.
Build it step by step.
Bring your kit to life with 20 guided projects. Start with your first blinking LED, then explore sensors, sound and a working pedestrian crossing.
Explore the parts. Follow the steps. Make something happen.
Electronics you can explore
Rotate the models, reveal their insides and watch components respond. Follow current through a knob, press a button or shine light on a sensor.
A clear next step, every time
Work through wiring, explained code and checks in order. Start with a working example, change something, then test your idea on the real kit.
Code in English. Upload in Chrome.
Use the English IDE to turn plain-English instructions into Arduino C++. Inspect the code, then Verify and Upload to your Uno from desktop Chrome.
Need to add more students to your Crack the Code classroom? This single-student Arduino kit includes everything one student needs to build light and sound projects using the Little Bird Uno R3 and ThinkerShield.
Package Contents
- 1× Little Bird Uno R3
- 1× ThinkerShield
- 1× Mini breadboard (modular)
- 5× 5mm LEDs (multicolour pack)
- 1× Momentary pushbutton switch (12mm square)
- 1× Mini photocell
- 1× Active buzzer
- 1× Trimpot 10K with knob
- 5× 220ohm resistors
- 2× 10K resistors
- 1× 9V to barrel jack adapter
- 10× Jumper wires (female/male)
- 10× Jumper wires (male/male)
- 10× Jumper wires (female/female)
Ideal For
- Expanding existing Crack the Code classroom kits
- Individual student Arduino learning sets
- Introductory light and sound electronics projects
Jargon buster
Plain-language definitions for the technical terms used above.
- photocell
- A light-sensitive component whose electrical resistance changes with the amount of light falling on it. It matters when choosing or using light sensors, automatic lights, or brightness-detecting circuits because its response speed, resistance range, and sensitivity affect how reliably it detects light levels.
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STEM & Education
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