Hands-on AI, robotics & physical computing for Classes 3–8 — built for every Indian classroom.
We start every learner in low-spec, offline-capable simulation tools — no special hardware, no expensive labs. When students have the algorithmic intuition, they graduate to real embedded hardware. This is how SIL delivers identical learning outcomes in rural and urban classrooms, at near-zero marginal cost.
Begin with visual, block-based environments that run on any device. Build algorithmic thinking before touching a single wire.
Graduate to real Arduino boards, ESP32 modules, and sensors when you're ready. Every component is reusable, portable, and built to last.
Works identically in metro cities and remote talukas. No internet dependency, no lab setup required. Just curiosity and a charged laptop.
A carefully sequenced progression from visual thinking to embedded systems engineering — every class builds on the last.
Real capstone projects — not worksheets. Every student ships a working prototype.
Train a visual ML model to sort wet waste, dry waste, and recyclables — using just a webcam and PictoBlox.
Explore →A digital storybook that reads facial expressions and changes the narrative in real-time based on mood.
Explore →A virtual Tinkercad circuit combining ultrasonic distance sensors, buzzer sirens, and automated ambient lighting.
Explore →A soil-moisture sensing Arduino system that waters your plants exactly when they need it — no guesswork.
Explore →A PIR + edge-AI system that recognizes faces, logs entries, and sends alerts — real embedded IoT security.
Explore →A multi-sensor robot that navigates environments independently using ultrasonic ranging and motor control.
Explore →Everything your school needs to launch an AI & robotics programme — mentors, curriculum, hardware, and ongoing support.
Every SIL classroom is led by a trained Marketech Labs mentor. No need to find, vet, or hire specialised staff — we handle it end to end.
Lesson plans, project briefs, and assessment rubrics designed by engineers and educators — aligned to NEP 2020 computational thinking goals.
Our portable SIL Hardware Box travels classroom to classroom. Arduino boards, ESP32 modules, sensors, and robot chassis — all included.
Every component a student needs — in one rugged, classroom-portable case.
Arduino Uno R3 — the universal microcontroller for physical computing fundamentals.
WiFi + Bluetooth SoC for IoT projects, edge ML inference, and cloud connectivity.
L293D dual H-bridge motor drivers for DC motors, stepper motors, and robotics chassis control.
PIR motion, soil moisture, LDR light, and ultrasonic distance — four sensors for real-world data.
Two-wheel differential drive platform with caster wheel — the foundation for autonomous robotics.
Breadboards, jumper wires, USB cables, resistors, LEDs, and a printed quick-start reference card.
Every student project follows a structured exhibition pathway — visibility, feedback, and real-world impact.
Students present working prototypes to peers and mentors for iterative feedback.
Top projects are exhibited school-wide — parents, faculty, and community leaders attend.
District and state-level showcases with industry judges and media coverage.
Smart irrigation, crop monitoring, and soil analytics for small-holder farmers — technology that feeds communities.
Flood detection, early warning systems, and emergency response tools for climate-vulnerable regions.
Smart waste management, traffic flow optimisation, and air quality monitoring for liveable cities.
Assistive tech and localised interfaces that make AI and computing accessible in every Indian language.
Whether you're a curious student or a forward-thinking school — there's a seat at the bench.