Institutional Hardware & STEM Catalog

Hardware Built For
Next-Gen Tinkering

Turn-Key Hardware, Robotics & AI Systems

R&D tested, highly durable, and child-safe educational DIY hardware. Designed specifically for active classroom tinkering and compliant with school board standards across India.

GeM Portal Registered
Short-Circuit Defended
100% NEP Compliant
Bilingual Activity Manuals
1,200+
Schools
50,000+
Students
200+
ATL Labs
28+
States

Robotics & STEM

Mechanical rovers & custom motor drives.

AI & Python

Computer vision & neural model simulators.

AR/VR Devices

3D Virtual science labs & cosmic field trips.

IoT Electronics

Cloud-connected weather & soil telemetry.

PEDAGOGICAL CONTINUUM

Learning Journey by Grade

Designed specifically for school leaders & STEM coordinators. Understand instantly how STEMSaathi hardware, coding tools, and kits map seamlessly from Grade 3 through Grade 12.

LAB MODULE #stage-01STAGE 01Grades 3–5Age 8–10
Hands-On Experiments:45+

Foundation Explorer

Tactile Tinkering, Spatial Reasoning & Physical Logic

Foundation Explorer
Primary grade students discovering circuit loops & mechanical gears
Grade Level Objective

Ignite innate curiosity through play-based physical construction, spatial reasoning, simple machine mechanics, and safe low-voltage closed-loop electrical circuits.

Core Technologies:
Solderless SnapsColor-Coded WiringTactile LeversMagnetic Modules
Cognitive & Practical Skills:
Spatial ReasoningManual DexterityCircuit LogicTeam Collaboration

Key Curriculum Focus Areas

Basic STEM ConceptsCreative Spatial ThinkingSimple Machines & GearsHands-On Physical ActivitiesLow-Voltage Electronics Basics

Recommended Hardware Systems & Kits

Turn-Key Ready
Junior Robotics KitBest Seller

Modular snap-together gears, DC motors & mechanical axles

DIY Science Experiment KitNEP Aligned

40+ hands-on physics, optics & magnetic experiments

Basic Electronics BoxChild Safe

Shielded battery modules with LED & buzzer feedback

Activity Worksheet SetBilingual

Step-by-step visual experiment guides in Hindi & English

Measurable Learning Outcomes

Grasp fundamental concepts of push-pull mechanics, lever arms, and gear ratios
Build basic series and parallel circuits safely without soldering tools
Develop spatial problem-solving skills through hands-on model creation
Build early confidence in scientific enquiry and experimental hypothesis
100% CBSE & State Board Aligned
Request Grades 3–5 Curriculum
INSTITUTIONAL CONTINUUM GUARANTEE

A Complete STEM Learning Path From Grade 3 to Grade 12

Instead of purchasing disconnected, one-off hardware kits, STEMSaathi provides a structured, age-appropriate progression. Every grade level seamlessly builds upon prior cognitive skills—from foundational tinkering to university-grade engineering and patentable research.

Request Curriculum Mapping
Free Consultation for School Principals & Trustees
SYSTEM ARCHITECTURE

Hardware Domains At A Glance

Robotics & Physical Automation

Modular robot kits engineered with anodized aluminum frames, high-torque motors, line sensors, and custom motor shields. Students progress from manual gear ratios to autonomous rover logic.

Line Following Ultrasonic Obstacle Avoidance Bluetooth Remote Control

Artificial Intelligence

Visual camera modules and neural net software interfaces that let middle schoolers train image recognition models and natural language commands.

Computer Vision Python ML

IoT & Smart Telemetry

Connect breadboard sensor circuits to cloud dashboards. Monitor real-time temperature, soil moisture, and humidity from school gardens.

ESP32 / ESP8266 Cloud Webhooks

AR/VR Spatial Learning & ECCE Tinkering

From ergonomic standalone virtual reality headsets for high school physics to non-toxic magnetic building tiles for foundational years, we ensure continuous cognitive development across all grades.

360° Virtual Field Trips FLN Foundational Blocks PM SHRI Aligned Sets
IN-ACTION CLASSROOM TINKERING

See Our Kits In Active Labs

Watch how middle and high school students collaborate, program, and test autonomous hardware in real school environments.

NOW SHOWCASING

Atal Tinkering Lab Session: Ultrasonic Sensor Integration

Verified Classroom Footages
PEDAGOGICAL FLOW

How Students Master Hardware

Students assembling robotics
Phase 1: Tactile Mechanical Assembly
STEP 01 • TACTILE BUILDING

Physical Assembly & Circuit Wiring

Students unpack color-coded component trays, mount motors, plug jumpers into solderless breadboards, and physically experience gear ratios firsthand.

STEP 02 • VISUAL LOGIC

Block-Based & Python Logic

Using drag-and-drop block interfaces, students map sensor inputs to motor outputs. As confidence grows, they seamlessly toggle into real Python code.

Student coding
Phase 2: Sensor-Motor Logic Programming
DOMAIN MATRIX

Kit Comparison Matrix

Beginner - Intermediate

Robotics & STEM

Target Age:Ages 8 - 16
Course Duration:30 Hours Curriculum

Core Focus: Mechanics, Motors, Ultrasonic Logic

Intermediate - Advanced

Artificial Intelligence

Target Age:Ages 12 - 18
Course Duration:40 Hours Curriculum

Core Focus: Computer Vision, Python, Neural Nets

Beginner - Advanced

IoT & Electronics

Target Age:Ages 10 - 18
Course Duration:35 Hours Curriculum

Core Focus: Breadboards, Cloud Telemetry, Sensors

TURN-KEY ONBOARDING

From Order To Active Lab

01

Consultation

Space & Board Mapping

02

Audit

Infrastructure Check

03

Delivery

Tested Hardware Deployment

04

Training

3-Day Faculty Workshop

05

Classes

Active Student Tinkering

06

Support

Continuous Mentorship

VISUAL EVIDENCE

Kits In Real Action

 Jaipura Robotics Lab
Jaipura Robotics Lab
Teacher Certification Workshop
Teacher Certification Workshop
Drone Aerospace Telemetry
Drone Aerospace Telemetry
Ready To Modernize Your School?

Equip Your School With
World-Class Hardware Today

Schedule an on-site lab demonstration or request a custom hardware quotation tailored to your school board requirements.