Get hold of real tools
Not toy versions. Students use the drivers, the printers, the sensors and the software that adults use, with the supervision that requires.
Cedar Rapids, Iowa · Est. 2012
Design Your World is a hands-on engineering studio for young students who want to make something real. Robots that drive. Pets that move when you tell them to. Inventions that solve a problem somebody actually has.
Why families drive across town for this
That is not what happens here. A kit with instructions produces a finished object and very little else. The child follows steps, the thing works, and nobody learns what to do when it does not.
Design Your World runs the other way around. Students are handed a problem, a bench full of real components and a deadline. The first version usually fails. The second one fails better. Somewhere around the fourth attempt they stop asking whether they are doing it right and start reasoning about why the motor stalls on the incline.
That moment is the entire point of the studio. Everything else, the robots and the printed pets and the trophies, is downstream of it.
Through camps, cohorts and competition teams since the studio opened.
Long enough that early students are now studying engineering themselves.
Robotics, invention, science fair and a build-it-yourself robotics course.
Every session is run by a practising engineer, not a rotating instructor.
The four pathways
They are not levels and there is no order to work through. Each one suits a different kind of child, and the honest answer to which is right usually takes about five minutes of conversation.

Students design, build and program a robot to run missions autonomously in two and a half minute matches, then present an innovation project of their own to judges. It is the closest thing to real engineering under real deadline pressure that an elementary student can get.
Read the programme
Every student designs a robotic pet, prints the body, wires the electronics, programs the behaviour and carries the finished thing out of the door. Along the way they learn what a servo does, why a loose ground wire kills everything, and how to read their own code.
Read the programme
Students find a problem that genuinely annoys them, then work it all the way through: research, sketches, a prototype that usually breaks, a better prototype, and a pitch they deliver themselves. Some go on to regional, state and national competition.
Read the programme
A real investigation, not a poster about volcanoes. Students choose a question worth asking, design a test that could actually disprove them, collect their own data and then defend it in a judging interview at the Junior State Science and Technology Fair of Iowa.
Read the programmeHow a session actually runs
The order shifts and the projects change, but this loop is the method. It is also, more or less, how engineering works in an actual workplace.
Not toy versions. Students use the drivers, the printers, the sensors and the software that adults use, with the supervision that requires.
Even when the coach can already see it will not work. A failure the child discovers is worth more than a correction the child is handed.
Break it down, change one variable, test again. This is the single hardest habit to teach and the one that transfers to everything else.
Out loud, to somebody else, without notes. If a student cannot explain their build, they do not yet understand their build.
A showcase, a fair, a tournament table. Presenting to strangers is where the confidence actually gets made.
The constraint we will not relax
Put twelve children around one robot and you get one driver, one talker and ten spectators. Everybody goes home saying they did robotics. One of them did.
The practical consequence: places are genuinely limited, and cohorts usually fill from the waiting list before they are advertised.

The person at the bench
Letia Blanco founded Design Your World in 2012. Students call her Coach Tia. She is not a franchise instructor working from a binder, and the difference shows up in the questions she asks students when something breaks.
For a nanoparticulate delivery system, a smart bandage. She has presented at multiple technical symposia.
International winner of the Society of Women Engineers Distinguished New Engineer Award in 2018.
Named by the Corridor Business Journal in 2023 for her work in the region.
A Value Stream Leader at one of the largest aerospace companies in the world, and a mother of two.

Where our students end up standing
Competition is optional in every programme. What it offers is a deadline that is not negotiable and an audience that is not family, and for a lot of children that combination changes something.
The elementary fair, open to grades 3 to 5, with regional events held around the state each autumn. Students are interviewed at their board by judges who ask real questions about method.
Teams take their robot to the competition table for two and a half minute matches, and separately defend their innovation project, robot design and teamwork in front of judging panels.
Student inventors present a problem, a prototype and a case for why it matters. The pathway runs from local events through state competition and on to the United States nationals.
From the families
She came home and explained to her father, unprompted, why the gear ratio she picked was wrong and what she was going to change. She is nine.
He has never finished anything. He finished this, and then he stood up in front of a room of strangers and talked about it for four minutes.
We tried a big chain programme first. It was fine. This is not the same thing. Coach Tia knows exactly where my daughter is stuck before she says a word.
Before you ask
The studio is built around elementary and middle school students, roughly kindergarten through eighth grade depending on the programme. Junior science fair is a grades 3 to 5 event. FIRST LEGO League runs from grade 2 upward. Invention Convention adapts to the child rather than the grade.
No. Most students arrive having never written a line of code or wired a circuit. What matters far more is whether they enjoy figuring things out and are willing to have a first attempt fail.
Deliberately small. The whole model depends on every child having their own hands on the build rather than watching somebody else drive. That caps the numbers and it is the main reason cohorts fill before they are advertised widely.
Competition is available in every programme and required in none. Plenty of families come for the build experience alone. Others discover halfway through the season that their child badly wants a judging table, and we make that happen.
Next cohort
Tell us your child's grade and what they love doing, and Coach Tia will tell you honestly which programme fits, when the next cohort opens, and what a term actually looks like. If nothing is a good fit right now, we will say so.