Our Rocket
Infinity One

infinitY one

The only Indian launch vehicle
engineered for high-frequency,
low-cost orbital access built for
the commercial small satellite economy.
Payload 150Kg to Lower Earth Orbit
Reusability First-stage recovery
Cost Up to 60% lower
Turnaround Rapid relaunch capability
India's First Reusable Rocket
For Small Satellite

infinity 1 |payload
ENGINE CONFIGURATION 500kg
ORBIT MATERIAL Up to 500 km LEO
Infinity One delivers up to 500 kg to Low Earth Orbit on a fully dedicated mission profile. The carbon fiber fairing shields your satellite through ascent, while the integrated kick stage ensures precision delivery to the exact target orbit — no rideshare, no compromise.


infinity 1 |payload
infinity 1 |first stage
RELAUNCH TURNAROUND
24–48 Hours
Infinity One's first-stage booster returns to the pad after every mission — recovered, inspected, and relaunch-ready within 24 to 48 hours. What was once a one-time vehicle is now a repeatable orbital service.
infinity 1 |first stage
Infinity One delivers up to 500 kg to Low Earth Orbit on a fully dedicated mission profile. The carbon fiber fairing shields your satellite through ascent, while the integrated kick stage ensures precision delivery to the exact target orbit — no rideshare, no compromise.

infinity 1 |payload
infinity 1 |landing legs
LEG TYPE
DEPLOYABLE ASSEMBLY
The Infinity One first stage is equipped with a deployable landing leg assembly, stowed along the base of the vehicle during ascent. The legs deploy autonomously during the terminal descent phase, enabling a precision vertical touchdown and supporting rapid ground turnaround operations.
infinity 1 |first stage
Infinity One delivers up to 500 kg to Low Earth Orbit on a fully dedicated mission profile. The carbon fiber fairing shields your satellite through ascent, while the integrated kick stage ensures precision delivery to the exact target orbit — no rideshare, no compromise.

infinity 1 |engine
Ignite. Integrate. Infinity.
OMSPACE's cryogenic engine ist India's first fully indigenous liquid propulsion system, developed entirely in-house for the Infinity One launch vehicle. Powered by Bio-Methane and Liquid Oxygen, it is engineered for multi-mission endurance and manufactured through an end-to-end additive manufacturing process — reducing component count and eliminating conventional assembly failure points.
ENGINE CYCLE Cryogenic Liquid
Engineered for Orbit

Payload
On-Demand Orbital Access.
Dedicated, on-demand orbital insertion for small payloads. Your orbit, your schedule — no waiting for a manifest to fill up.

Reusable First Stage
Built for Rapid Turnaround.
Engineered for rapid recovery and turnaround within 24 hours. High-cadence reusability that meets demand while cutting cost to orbit.

Liquid Cryogenic Engine
Precision at Maximum Thrust.
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3D Printed Engine
Engineered for Simplicity.
Fewer Parts. Fewer Failures.
End-to-end additive manufacturing strips out complexity at the source. Fewer components mean fewer failure points and a lighter, more reliable vehicle.

Advanced Composite Structure
Engineered to Endure.
An ultra-lightweight composite airframe maximizes payload volume. Built for the strength-to-weight ratio needed to survive max-Q and thermal stress.

Payload:
Ditch the rideshare waitlists. Infinity One provides dedicated, on-demand orbital insertion to drop your small payloads exactly where they need to be, precisely on your schedule.

Liquid Cryogenic Engine:
State-of-the-art cryogenic propulsion delivers heavy-lifting power. This highly efficient system provides the maximum thrust and specific impulse required for a clean, precise ascent to Low Earth Orbit.

Reusable First Stage & Capable :
Engineered for rapid recovery, our first stage is fully capable of relaunching within 24 hours. This high-cadence reusability allows us to meet market demand while drastically lowering the cost to orbit.

Advanced Composite Structure :
An ultra-lightweight composite airframe maximizes available space for your payloads. It delivers the extreme strength-to-weight ratio needed to survive maximum aerodynamic pressure and thermal stress.

3D Printed Engine:
We use end-to-end additive manufacturing to build faster and smarter. By drastically reducing part counts, we eliminate complex failure points and create a much lighter, more reliable launch vehicle.


