Real Skills. Real Achievements.
Playto students applying robotics skills on school, national and global platforms.
Live 1:1 robotics classes with personal kits delivered across Finland, including Helsinki and Espoo. Children follow a structured learning path, build real projects, and develop coding, electronics, engineering, and problem-solving skills from beginner to advanced levels.
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Accredited by STEM.org
Playto students applying robotics skills on school, national and global platforms.
Global
Luxembourg, Europe
Silver Medal, Mobisciences Tunisia. Jonk Fuerscher (Young Researcher) Award in Luxembourg.
Represented Luxembourg at the Global Level
State
Virginia, USA
Virginia State Champion and Excellence Award Winner, VEX V5 Robotics Competition.
Recognized for excellence in robotics and coding.
Global
Delhi NCR, India
3rd Place Globally, Robotics for Good Youth Challenge Grand Finale in Geneva, Switzerland. (by ITU, UN)
Representing India after winning Gold in India Finals.
School Level
Austin, Texas, USA
Won his school's Shark Tank competition for presenting his innovation, Nikola.
Built a fully functioning prototype at a young age.
Global
Sharjah, UAE
Won the Outstanding Innovation Award at the Code for Future Summit, Sharjah
Recognized at a leading AI & tech summit
National
HCMC, Vietnam
Won 2nd Medal in World Robot Olympiad Competition in South Vietnam.
Awarded at global robotics competition.
District
Seattle, Washington, USA
Won Inter-School Science Fair for building an autonomous mapping robot.
Recognized for his skills in science and innovation.
Entrepreneurship
IIT Delhi, India
Founded a drone startup Vecros and raised funding on Shark Tank India and other investors.
Applied robotics expertise to real venture creation.
District
Plano, Texas, USA
Selected for her district's ISS Build Team after presenting her Robotic Arm project.
Chosen for her strong thinking and skills.
School Level
Frisco, Texas
Won a Best Presentation Award for a robot designed to detect debris on roads.
Built a functioning project blending robotics and AI.
School
Celina, Texas
Received What If and Innovator of the Year recognition.
Recognized for creativity, curiosity, and classroom leadership.
These are selected highlights from a much larger community of students consistently building and applying their skills.
Students across Finland who join our programmes learn through the same structured curriculum, hands-on projects, and mentorship that have helped these students achieve at national and global levels.
Your child joins a live 1:1 trial session from home, meets the mentor, and tries a simple hands-on robotics activity.
Based on your child’s age, interests, and current experience, we recommend a comfortable starting point and a path for progressing over time.
A personal robotics kit is delivered to your home so your child can build real projects during class and keep experimenting between sessions.
Delivery is available across Finland, including Helsinki, Espoo, Vantaa, Kauniainen, Kerava, Järvenpää, Tampere, Turku, Oulu, Jyväskylä, Kuopio, Lahti, Pori, Vaasa, Joensuu and Rovaniemi.
Your child learns with an expert mentor in regular live 1:1 sessions. Scheduling is flexible and arranged in Finnish local time around school, hobbies and family activities.
As students progress, they take on increasingly challenging projects while strengthening their coding, engineering, and problem-solving skills.
Motivated students can continue to advanced projects, build a portfolio, and prepare for science fairs, robotics competitions, or innovation challenges.
Playto Labs has developed a structured robotics curriculum through years of working with hundreds of thousands of students, helping children build real skills step by step. Parents typically begin with a simple trial class, and based on their child's interest and confidence, they can continue learning further and explore deeper levels at a comfortable pace. Students begin with an introductory programme and simple projects and gradually develop a stronger interest in robotics. Over time, they go on to build advanced projects and participate in national and international competitions. Many of our students perform exceptionally well in these competitions because of the structured learning programme and the depth of the curriculum.
Your child learns through a structured, hands-on coding and robotics programme that builds real skills step by step. They stay engaged, gain confidence, and develop a genuine interest in technology, while you have the flexibility to continue learning at a pace that works best for your child.
Robotics at Playto Labs provides a steady path toward valuable skills, not a one-time workshop. Children advance through levels while wiring circuits, writing code, and debugging hardware they keep at home, so their learning can continue around school holidays and family schedules across Finland.
Children start with simple concepts and gradually move to more advanced robotics and coding projects. Each level is designed to match their pace, ensuring they build confidence while developing real technical skills over time.
Ages 8-10
A fun introduction to robotics in which children explore building and basic coding concepts, developing curiosity and confidence through hands-on learning.
STEM.org-accredited, age-appropriate kits
Ages 11-13
Students work on more complex robotics and coding projects, strengthening logical thinking, problem-solving, and understanding of real-world applications.
STEM.org-accredited, age-appropriate kits
Ages 14-16
Advanced robotics projects that help students build strong technical skills, develop meaningful projects, and explore deeper applications in engineering and innovation.
STEM.org-accredited, age-appropriate kits
Students can begin at the right level based on their experience and continue progressing over time. Students can continue into advanced levels based on their interests, goals, and pace.
Finland’s national core curriculum gives schools a common foundation while municipalities and schools develop local curricula. It emphasises transversal competences such as thinking and learning to learn, ICT competence, working-life competence and participation. Robotics can complement this learning by giving children a practical setting in which to plan, build, programme, test and improve a working system. Finnish National Agency for Education
The curriculum also includes mathematics, environmental studies, physics, chemistry and crafts, and requires at least one multidisciplinary learning module each school year. A robotics project naturally connects several of these areas: a child can apply measurement and logic, design a physical structure, wire sensors and motors, write code, observe results and refine the design.
Finland’s national framework for digital competence is intended to support equal opportunities for children and young people to gain capabilities needed for study, working life and participation in society. Repeated robotics projects provide additional practice in using digital tools purposefully, breaking problems into steps and learning from unsuccessful tests. Finnish Framework for Digital Competence
Longer projects can also help students document how an idea developed, explain technical choices and demonstrate persistence. Finland has visible pathways into automation and robotics, including Aalto University’s teaching and research in control, robotics, autonomous systems and embedded software. Such projects can help a young person explore these interests, without implying an admissions advantage. Aalto University
Finland’s Digital Compass identifies competence, infrastructure, businesses and public services as central parts of the country’s digital transformation. Its research and development policy also aims to strengthen cooperation among businesses, universities and research organisations. These priorities give students many real-world reasons to understand how software, electronics and physical systems work together. Finnish Government Digital Compass Finnish Government R&D plan
Finland’s technology environment spans software, artificial intelligence, telecommunications, automation, advanced machinery, clean technology and research. Statistics Finland reported that 38 per cent of enterprises used AI technologies in 2025, while Aalto University maintains teaching and research in robotics and autonomous systems. Robotics projects let children encounter related ideas at an age-appropriate level through real builds rather than abstract descriptions alone. Statistics Finland
Students can also find a local culture of invention and competition. The nationwide Innokas programming and robotics tournament gives comprehensive-school pupils opportunities to practise inventive skills. A sustained learning path can help children develop the design, programming, testing and presentation habits used in such challenges, although participation and results depend on each event and student. University of Helsinki
For families from the Helsinki metropolitan area to communities across western, eastern and northern Finland, live online lessons avoid an additional weekly journey and keep the kit available for practice at home. Traficom reported that fibre networks covered 80 per cent of Finnish households in September 2025, while also noting meaningful urban-rural differences. Families should use a reliable connection suitable for live video; available sessions are arranged in Finnish local time around school and holiday routines. Traficom
Families across Finland can access the same structured programme, live 1:1 mentoring and personal robotics kit without being limited to a nearby group class.
| Factor | Playto Labs Online Robotics Classes | Finland Offline Robotics Classes |
|---|---|---|
| Instructor Quality | Expert mentors with 10+ years experience, trained across 500,000+ students globally | Quality can vary significantly, as experienced robotics instructors are relatively rare |
| Robotics Kit Quality | Up-to-date robotics kits that are continuously improved. Every student receives a personal kit to practise, innovate, and prepare for competitions at home. | Kits are often reused over long periods and shared among students, limiting hands-on time and independent practice. |
| Hands-On Practice Time with Kits | Children can practise at any time with their own kit and continue exploring ideas between classes. | Practice limited to classroom hours |
| Curriculum Depth | A structured, progressive, personalised, and industry-relevant robotics curriculum developed by experienced education experts. It is continuously refreshed and designed to work closely with the kits. | Often lacks structured progression and regular updates, making it harder for students to build depth over time. |
| Personalisation, Especially Important in Robotics Classes | 1:1 sessions, mentor feedback, and progress tracking. Every child learns at a pace that matches their interests and ability. Additional depth and advanced levels are available for highly motivated students. | Not every student in a robotics class is learning the same topic (unlike maths, where children in the same year group often cover similar topics). As a result, group-based offline robotics classes can be harder to personalise, and some children may lose interest. |
| Learning Continuity | Learning continues across levels, and students build real skills over time, helping them prepare for competitions and develop strong portfolios for future academic opportunities. | A fixed syllabus may end with the batch and may offer limited options for students who want to progress further. |
| Learning Flexibility | Reschedulable classes, personalised pace and journey. | Fixed schedules, curriculum and kits with minimal flexibility |
| Competitions and Wider Exposure | Access to robotics competitions and real-world project showcases. Expert mentors with experience of helping students win awards at international level. | Competition exposure may vary depending on the centre and the experience of its instructors. |
| Certification Value | Skill-based certification that reflects the student's progress | Certificate recognition varies by provider |
| Convenience for Parents | No travel, no traffic, no time loss | Requires travel and additional scheduling coordination |
| Parent Visibility | Transparent progress updates and performance tracking | Limited insight into student learning |
| Cost vs Value | Playto Labs Robotics Classes are affordable even with take-home kits and 1:1 classes because everything is integrated into one programme that works efficiently and also because of the larger scale they operate in. | Costs and inclusions vary, and some programmes may not provide take-home kits. Some centres source kits and instructors separately, which can add to the cost and make delivery less consistent. |
The key difference is how consistently your child can learn, practise, and progress over time.
Playto Labs' coding and robotics programme is designed to help children start comfortably, build confidence through hands-on learning, and continue progressing at their own pace. With personalised guidance, take-home kits, and a structured curriculum, kids can develop real skills without being limited by batches, schedules, or shared resources.
Explore live online robotics classes available across Finnish municipalities and book a free trial.
Playto Labs provides live online robotics classes beyond the directory cities, including Vantaa, Kauniainen, Kerava, Järvenpää, Tampere, Turku and Oulu.
Families can also join from Jyväskylä, Kuopio, Lahti, Pori, Vaasa, Joensuu, Rovaniemi and other Finnish municipalities. Every location remains part of the same live 1:1 learning programme, subject to kit-delivery confirmation for the postal address.
Every student receives a personal robotics kit designed for their age and level, enabling them to build and practise beyond class hours.
Kit delivery is available across Finland. Delivery timing is confirmed after the learning plan and complete postal address are finalised.
Having a personal kit at home allows children to experiment, revisit concepts and develop deeper understanding through hands-on learning.
Explore robotics classes for kids in other regions:
Europe
Asia
You can also explore our robotics summer camps for kids to understand how to get started.
Book a free trial class and see how your child learns robotics through hands-on projects and live 1:1 sessions.