How to Play?

Step 1: Prepare
Simply install the included button batteries to get started, and note that Robot may become insensitive or rotate in place when the battery is low.Do not use the Robot in direct sunlight, near fluorescent lamps, or on glossy paper.

Step 2:Assemble Puzzle
Play Method 1:
Build the 30 puzzle track board pieces together. Create a fun path for the Robot to follow—add twists, loops, or repeating patterns! Then, race to see who can get to the finish line first.

Step 3:DIY Trail
Play Method 2:
The Robot has a special sensor that lets it follow any line you draw! If you’re drawing the line, make sure it’s at least a quarter-inch thick but no more than 10mm. Use a nice, solid black color and fill it in completely. If the line is too thin, Robot might wander off the path. Easy peasy!

Step 4:Guide Drawbot
The Robot can walk along the line. You can use the paper card to guide your Robot in the direction you want it to go.


How Can You Spark Your Child's Creativity with the Robot TracerBot Adventure STEM Set?
Help the mini Robot explore a whole new world! 🌈Let your kids design their own city by drawing maps, planning layouts, and creating routes on paper. Watch as the Robot roams through their imaginative world and brings their ideas to life!🤖

How can the Robot TracerBot Adventure STEM Set make more fun and interactive for kids?
Bring the excitement of TracerBot to playdates and birthday parties! 🎉Kids can team up to design fun race tracks and compete in TracerBot challenges, making the party even more interactive and entertaining. Plus, they can capture their creative track designs and TracerBot adventures on video to share with friends and family, giving them a sense of pride and accomplishment.Unlock Endless Fun with TracerBot!🎊


How can the Robot TracerBot Adventure STEM Set help kids develop essential skills while having fun?
With the Robot TracerBot Adventure STEM Set, your little explorer can dive into hands-on learning that feels like play! Kids will love designing their own paths and guiding TracerBot’s movements, all while building essential skills in programming, logic, and problem-solving. 🧠They can experiment with different route complexities to see how it affects TracerBot’s journey, discovering the best ways to optimize its path. Plus, using TracerBot’s sensors, they can conduct simple physics experiments, observing how speed and trajectory change on various tracks. It’s a perfect blend of creativity and education that brings STEM learning to life!🤖
good!
my kid love it