AeroSpace
DESCRIPTION
A balloon borne atmospheric probe that ascends to the stratosphere (~30 km), profiling the atmosphere in real time and parachuting back to Earth for recovery.
ARCHITECTURE
MEMS sensors (temp, humidity, pressure) + GPS module + RF transmitter + foam-insulated housing
CAPACITY
Live upper-atmosphere profiling from ground to stratosphere, students track the balloon in real time and recover payload for post-mission data analysis
DESCRIPTION
A balloon borne atmospheric probe that ascends to the stratosphere (~30 km), profiling the atmosphere in real time and parachuting back to Earth for recovery.
ARCHITECTURE
MEMS sensors (temp, humidity, pressure) + GPS module + RF transmitter + foam-insulated housing
CAPACITY
Live upper-atmosphere profiling from ground to stratosphere, students track the balloon in real time and recover payload for post-mission data analysis
DESCRIPTION
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
ARCHITECTURE
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
CAPACITY
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
DESCRIPTION
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
ARCHITECTURE
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
CAPACITY
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
DESCRIPTION
A 1U CubeSat-standard (10 × 10 × 10 cm) low-cost prototype platform for proof-of-concept missions full subsystem validation without the orbital price tag.
ARCHITECTURE
OBC (STM32/Raspberry Pi CM) with Li-ion battery + UHF comms module + modular payload bay + structural 1U chassis
CAPACITY
Validate payload-subsystem interfaces, simulate orbital duty cycles, and test power budgets on the ground.
DESCRIPTION
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
ARCHITECTURE
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
CAPACITY
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
DESCRIPTION
A 1U CubeSat-standard (10 × 10 × 10 cm) low-cost prototype platform for proof-of-concept missions full subsystem validation without the orbital price tag.
ARCHITECTURE
OBC (STM32/Raspberry Pi CM) with Li-ion battery + UHF comms module + modular payload bay + structural 1U chassis
CAPACITY
Validate payload-subsystem interfaces, simulate orbital duty cycles, and test power budgets on the ground.
DESCRIPTION
A fully functional satellite in a can form factor ejectable from a rocket at defined altitude and tasked with collecting and downlinking atmospheric data during a timed descent.
ARCHITECTURE
Sensor suite (barometric pressure, temperature, 9-DOF IMU, GPS) + RF transceiver all within a can
CAPACITY
Complete mission cycle analysis from integration, testing to launch. Live telemetry reception, and post-flight data analysis Image: Previously shared in google docs
DESCRIPTION
A fully functional satellite in a can form factor ejectable from a rocket at defined altitude and tasked with collecting and downlinking atmospheric data during a timed descent.
ARCHITECTURE
Sensor suite (barometric pressure, temperature, 9-DOF IMU, GPS) + RF transceiver all within a can
CAPACITY
Complete mission cycle analysis from integration, testing to launch. Live telemetry reception, and post-flight data analysis Image: Previously shared in google docs
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.
Let’s Make Things
Happen — Contact Us!
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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
Model rocketry
DESCRIPTION
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
ARCHITECTURE
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
CAPACITY
A student designed and built sounding rocket with an onboard altimeter payload bridging aerodynamics theory with real flight data across iterative launches.
CubeSAt
DESCRIPTION
A 1U CubeSat-standard (10 × 10 × 10 cm) low-cost prototype platform for proof-of-concept missions full subsystem validation without the orbital price tag.
ARCHITECTURE
OBC (STM32/Raspberry Pi CM) with Li-ion battery + UHF comms module + modular payload bay + structural 1U chassis
CAPACITY
Validate payload-subsystem interfaces, simulate orbital duty cycles, and test power budgets on the ground.
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