Robotics Lab Setup in Schools: students build, code and ship real robots.

Robotics lab setup in schools made simple. School Tech Solution builds a complete robotics lab for schools: robot kits, coding and AI software, a grade-wise curriculum, teacher training and yearlong support. It suits Classes 1 to 12 and follows NEP 2020, CBSE and ICSE.

Turnkey Atal Tinkering Lab packages are also available through GeM.

Classes 1–2
Explore

Play-based circuits, sensors and simple robot moves.

Classes 3–5
Code

Block coding: animations, games and first robot programs.

Classes 6–8
Build with AI

Train ML models, add vision and voice, build DIY robots.

Classes 9–12
Engineer

Python, machine learning and automation projects.

0Technologies in focus
0Month warranty on equipment
0+Age to start building
0Boards covered: CBSE, ICSE, IB

Everything a robotics lab setup in schools needs, from one partner

A robotics lab setup in schools is a dedicated innovation space where students learn robotics, AI, coding and STEM through hands-on projects. We supply the hardware, the curriculum and the training, so your robotics lab for schools runs from the first week.

International Quality Robotics & STEM kits

DIY kits for ages 7 and above. Students build real robots and connect them to AI projects, from simple rovers to advanced builds.

Coding and AI platform

Block-based coding with built-in ML tools, plus a Python editor so students move from blocks to syntax without changing tools.

Structured curriculum

Grade-wise syllabus mapped to CBSE, ICSE, IB Curriculum with an AI syllabus from Class 3 to Class 12.

Teacher training

Five days of in-school training by master trainers for computer science teachers, STEM faculty and IT staff, then weekly online mentoring.

Atal Tinkering Lab

We handle the Atal Innovation Mission ATL application, kits, setup, training and support, and packages can be bought through GeM.

Take a tour of the RoboTech Innovation Lab

One lab layout, six learning zones. Hover or tap a zone to explore.

Robotics lab setup in schools: 3D isometric layout of the RoboTech Innovation Lab with AI, coding, DIY tinkering, 3D printing and drones, robotics and IoT, and competition zones

Why coding, AI and robotics for students?

Empowering young minds for a future-ready world. Students grow into innovators, problem-solvers and future leaders.

21st Century Skills

Develops high-order thinking, problem-solving, creativity and innovation among kids.

Coding

AI and robotics give kids early exposure to coding in a fun and engaging way.

Career Opportunities

A large number of career opportunities in tech, engineering and mathematics.

Employability

According to the World Economic Forum, AI will create up to 58 million jobs in the next few years.

Skills students build, as per NEP 2020
Experiential LearningInterdisciplinary EducationHolistic Societal LearningCommunication and CollaborationComputational ThinkingEntrepreneurship

Robotics lab for schools: technologies in focus to build 21st century skills

From explore to experiment: learning through real-world experiences in STEM, tinkering, robotics and AI.

Coding: block-based and Python
Artificial Intelligence and Machine Learning
Robotics
3D Designing and Printing
STEM and Tinkering
Internet of Things
Drone Technology
Electronics

Robotics lab for schools: coding, AI and robotics curriculum for Class 3 to 12

A structured year-long curriculum in progressive stages, aligned with NEP 2020. Mapped to CBSE subject codes 417 and 843 and ICSE subject code 66.

Classes 3–5
Preparatory Stage

Play-based and exploratory learning

  • Game design and story building
  • Introduction to AI and ML activities
  • Basics of robotics
  • Creative thinking and innovation
  • Interactive, activity-based classroom learning
Classes 6–8
Intermediate Stage

Conceptual and experiential learning

  • Coding and ICT fundamentals
  • AI in self-driving technology
  • Robotics and automation
  • Computational thinking
  • Cognitive computing and classifiers
Classes 9–12
Advanced Stage

Industry-aligned skill development (Python-based)

  • Advanced coding and computational thinking
  • Artificial Intelligence, Machine Learning and robotics
  • Computer vision and Natural Language Processing (NLP)
  • Neural networks and design thinking
  • Capstone projects and tinkering labs
Activity booksHands-on learningAssignments and quizzesTeaching resources

Empowering creativity beyond coding

One platform for coding, AI, extended reality (XR) and robotics that builds creativity, logical thinking and problem-solving in a fun way.

For ages 4+
Block Coding
  • Colorful puzzle blocks to play
  • AI extensions for project making
  • Blocks for hardware coding
For ages 12+
Python Coding
  • Python editor and notebook
  • Compatible with AI and hardware
  • Code visualizer and debugger
No code needed
Machine Learning
  • Create ML models without code
  • Image, object, hand-body pose and speech models
  • Export to real-life projects
Beyond coding
3D and XR Studio
  • Design 3D models and games
  • Physics simulation and animation
  • AR/VR filters and trackers
  • Integration with VR headset
Robot interactionObject and face detectionText recognitionSpeech recognitionAugmented and virtual reality

From learning technology to creating technology

Real-world, application-based projects. Hands-on DIY ideas exploring AI and AR that students can bring to life.

Self-driving carEmotion-mimicking robotsSmart waste collectorsAdvanced AI roboticsWeather reportingSmart home automationSelf-driving POV carAR-based autonomous robo-soccerSmart robo dogChatGPT-enabled desk companionAutonomous sumo robotsImmersive AR vision car

Explore the possibilities of making with DIY construction parts

The Howdy Desk CompanionThe Gripper Delivery RobotThe Rover CarThe Lane FollowerHumanoidIoT HouseMars RoverRobotics ArmArduino starter kitsmicro:bitThe Howdy Desk CompanionThe Gripper Delivery RobotThe Rover CarThe Lane FollowerHumanoidIoT HouseMars RoverRobotics ArmArduino starter kitsmicro:bit

From classroom to innovation lab: robotics lab setup in schools

Curriculum, technology and training, seamlessly integrated into one robotics lab for schools.

1
STEM, AI and Robotics Lab Setup
  • Robotics kits: IoT kits, DIY AI and STEM kits, consumables and lab decoration
  • Demo projects for showcase
  • Lab layout planning and setup
  • Lab inauguration to create awareness among students and parents
2
Teacher Training and Resources
  • Onsite capacity building on equipment, content and operations, with year-long hand-holding
  • All teaching material, lesson plans, activity sheets and assessment guides
  • Certificate for participating teachers, affiliated with STEM.Org and reputed technical institutes of India
3
Year-long Support and Service Plan
  • Annual maintenance and 12-month warranty on equipment
  • Monthly teacher upskilling and doubt-solving sessions
  • Software licensing for all students, online and offline
  • Support for all types of queries
4
Events and Competitions
  • Annual Innovation Festival: an in-school event showcasing all projects and inventions by students
  • Participation in international AI, robotics and coding competitions

Aligned to the boards you follow

BoardClassesWhat students study
CBSE1–8Computer basics, coding, AI, physical computing and robotics
CBSE Skill Subjects9–12Artificial Intelligence (417 and 843): machine learning, Python, data science
ICSE / ISC1–10Coding, AI and robotics; Robotics and AI (Subject Code 66) in Classes 9–10
IB, IGCSE, CambridgeAllActivity-based coding, AI and robotics mapped to skills frameworks

Robotics lab setup in schools: choose the lab that fits your school

Every robotics lab setup in schools package includes kits, software, curriculum, teacher training and support. Tell us your student strength and budget and we quote within a day.

Classroom PackRobotics LabInnovation Makerspace
Best forSchools trying the curriculum, or adding to an existing labSchools starting a full-year robotics programmeLarge schools wanting a flagship lab
SpaceExisting computer labComputer lab or a dedicated roomDedicated room with custom furniture
Teacher trainingInduction5-day in-school training plus weekly mentoringInduction, refreshers and weekly mentoring
Add-onsUpgrade any timeRobotic arm, humanoid, IoT kits3D printing, VR, drones, IT and furniture

How robotics lab setup in schools works, in four steps

  1. Free demoWe show the kits, software and curriculum with your teachers.
  2. Lab planWe size the lab to your classes, space and budget.
  3. Install and trainSetup at your school, then five days of teacher training.
  4. Run and supportWeekly mentoring so classes never stall.

Learn by building: code on screen, robots in hand

Students write code, watch it run, then build and program a real robot in the same lesson.

Robotics lab for schools: students coding a humanoid robot in a school robotics lab
1. Code with blocks
2. Build the robot
3. Wire real circuits

Everyday Activities at RoboTech Innovation Lab !!

Build like an
Engineer
Create like an
Artist
Design like a
Technologist
Question like a
Scientist
2 + 3= 5
Deduce like a
Mathematician
Most important, play like a
Child

Robotics Lab Setup in Schools: FAQs

Quick answers about setting up a robotics lab for schools, from curriculum and training to what is included.

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What is a Robotics Lab Setup in Schools?
A Robotics Lab Setup in Schools is a dedicated innovation space where students learn Robotics, Artificial Intelligence (AI), Coding, STEM, IoT, and emerging technologies through hands-on projects, experiments, and real-world applications. It helps schools create future-ready learning environments aligned with modern education standards and NEP 2020.
Why is a Robotics Lab important for schools?
A Robotics Lab helps students develop critical thinking, problem-solving, creativity, computational thinking, collaboration, and innovation skills. It prepares learners for future careers in technology, engineering, AI, automation, and robotics.
What are the benefits of Robotics Lab Setup in Schools?
A Robotics Lab enhances student engagement, improves STEM learning outcomes, develops future-ready skills, encourages innovation, and provides practical exposure to Artificial Intelligence, Coding, and Robotics through experiential learning.
Which classes can use a Robotics Lab?
Our Robotics Lab curriculum is designed for students from Grades 3 to 12 and follows a structured learning pathway that progresses from basic coding and robotics to advanced AI, Machine Learning, and innovation projects.
Is Robotics Lab aligned with NEP 2020?
Yes. Robotics Lab for Schools supports NEP 2020 by promoting experiential learning, interdisciplinary education, computational thinking, innovation, creativity, and skill-based learning for students.
What technologies are included in a Robotics Lab for Schools?
A complete Robotics Lab includes Robotics, Coding, Artificial Intelligence, Machine Learning, Internet of Things (IoT), STEM Education, Electronics, 3D Design & Printing, and Drone Technology, enabling students to explore multiple future technologies.
What is included in a Robotics Lab Setup package?
A Robotics Lab Setup package typically includes robotics kits, AI and STEM kits, coding software, structured curriculum, activity books, teacher training, assessments, annual support, and innovation programs for students.
Do teachers receive training for Robotics and AI education?
Yes. School Tech Solution provides 2–5 days of onsite teacher training, lesson plans, activity resources, curriculum support, and continuous professional development to ensure successful implementation of Robotics and AI education.
What projects can students build in a Robotics Lab?
Students can create exciting projects such as self-driving cars, smart home automation systems, weather monitoring solutions, AI assistants, robotics arms, autonomous robots, and computer vision applications that solve real-world problems.
Why choose School Tech Solution for Robotics Lab Setup in Schools?
School Tech Solution offers a complete Robotics Lab ecosystem that includes hardware, software, curriculum, teacher training, implementation support, innovation competitions, and annual maintenance. Schools benefit from a single technology partner focused on delivering future-ready education.