ELECTRONICS
DIY KITS
ELECTRONICS
DIY KITS
Explorer series
build, learn, wonder
Beginner-friendly kits focused on core mechanical concepts. Ideal for students new to hands-on STEM.
Explorer series
build, learn, wonder
Beginner-friendly kits focused on core mechanical concepts. Ideal for students new to hands-on STEM.
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
A wooden snail that actually crawls powered by a hidden eccentric wheel mechanism.
MECHANISM
Eccentric wheel converts motor spin into a crawling vibration
CONCEPT
Bio mimetic locomotion, center of gravity, vibration
STAND OUT
Inspired by real snail movement science meets design
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
A working miniature oilfield pumpjack that pumps real liquid using a syringe mechanism.
MECHANISM
Crank-rocker linkage drives a syringe pump up and down
CONCEPT
Mechanical linkage, fluid dynamics, mechanical advantage
STAND OUT
Pumps real colored liquid satisfying and visual
DESCRIPTION
A gear-driven spiral bowl that tilts and spins to roll a steel ball in a mesmerizing loop.
MECHANISM
Large wooden gear transmits motor power to tilt the spiral bowl
CONCEPT
Gear transmission, centripetal force, rotational mechanics
STAND OUT
Doubles as a desk display when assembled
ADVANCE BUILDER SERIES
Level up : wire it, drive it, control it
More complex builds involving electronics, remote control, and multi-system integration. For students ready to go deeper.
DESCRIPTION
A four-wheeled robot that mimics an animal's gait using a crank-linkage drive no legs required.
MECHANISM
Rotating crank converts motor spin into a rocking walk cycle
CONCEPT
Kinematics, gear ratios, energy conversion
STAND OUT
Same principle used in real bipedal and quadruped robots
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
An entry-level tracked vehicle with a rubber-band drive learn chassis design before going RC.
MECHANISM
Rubber-band track loops around drive wheels for traction
CONCEPT
Structural assembly, drivetrain, mechanical drive
STAND OUT
Perfect stepping stone before building the RC tank
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
A fully remote-controlled tank with rubber tracks, dual motors, and an independently rotating turret.
MECHANISM
Differential steering each track is driven by a separate motor
CONCEPT
Torque, track-drive systems, circuit wiring, remote control
STAND OUT
Most advanced kit turret rotates independently of the chassis
DESCRIPTION
Build a twin-propeller catamaran using repurposed plastic bottles, then control it wirelessly.
MECHANISM
Dual propeller motors provide thrust and steering via differential speed
CONCEPT
Buoyancy, circuit basics, thrust, wireless control
STAND OUT
Uses upcycled bottles great conversation on sustainability
Need Help?
Start Here
What kind of products do we offer?
We design and develop high-quality, electronics toys, robotics kits, and space-science educational systems, such as CanSat and CubeSat.
Who are our learning kits designed for?
Our products cater to a wide range of learners, including children (5-12 years) for early learning, teenagers in STEM and hobby labs, college students, and educational institutions.
Why should students and educators choose our kits?
To address the reliance on expensive imported electronics, our kits are affordable, safe, and focused entirely on bridging the gap between theoretical education and practical, hands-on engineering skills.
Do we provide resources for advanced or college-level projects?
Yes, we offer ready-to-use mini-project kits for electronics, communication, IoT, and space projects, alongside advanced engineering subsystems for real-time rocketry missions.
Where are we located?
We are located in Jammu, Jammu & Kashmir, India, where we are hosted by the CU Jammu Start-up Incubation and Technology Enablement Centre (SITE Council).
How do our products support national initiatives?
We actively align with national priorities like Make in India, Atmanirbhar Bharat, and the India Semiconductor Mission (ISM) by promoting the indigenous design, development, and manufacturing of educational electronics.
DIY sightseeing
cable car
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
DESCRIPTION
String it across a room and watch it glide a motor-driven gondola on a wire.
MECHANISM
Friction wheels grip a rope to propel the car forward
CONCEPT
Tension, friction, pulley systems, torque
STAND OUT
Can be strung between two points for a live demo
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E-Tarangini Innovations Pvt. Ltd. (Navta Labs) is an early-stage Indian start-up dedicated to designing and developing high-quality, affordable, Made-in-India electronics toys, learning kits, and space-science educational systems for children, school students, and college learners.
(+91)9622774118
info@navtalabs.com
location
Jammu
designed and developed by svh graphic
Copyright © 2026 All rights reserved
Need Help? Start Here
call us now!
+91 9622774118
What kind of products do we offer?
We design and develop high-quality, electronics toys, robotics kits, and space-science educational systems, such as CanSat and CubeSat.
Who are our learning kits designed for?
Our products cater to a wide range of learners, including children (5-12 years) for early learning, teenagers in STEM and hobby labs, college students, and educational institutions.
Why should students and educators choose our kits?
o address the reliance on expensive imported electronics, our kits are affordable, safe, and focused entirely on bridging the gap between theoretical education and practical, hands-on engineering skills.
Do we provide resources for advanced or college-level projects?
Yes, we offer ready-to-use mini-project kits for electronics, communication, IoT, and space projects, alongside advanced engineering subsystems for real-time rocketry missions.
Where are we located?
We are located in Jammu, Jammu & Kashmir, India, where we are hosted by the CU Jammu Start-up Incubation and Technology Enablement Centre (SITE Council).
How do our products support national initiatives?
We actively align with national priorities like Make in India, Atmanirbhar Bharat, and the India Semiconductor Mission (ISM) by promoting the indigenous design, development, and manufacturing of educational electronics.
Let’s Make Things Happen — Contact Us!
Navigation
- Home
- Pages
- About Us
- Services
QUICK LINKS
- Pages
- Contact
- About Us
- 404
SERVICES
- Contact Us
- FAQs
- Booking
- Services