0+

Large Debris Tracked

0 KM/H

Orbital Velocity

0+

Dead Satellites

0 Million+

Tiny Fragments
The Orbital Hazard

Out of 17,000+ satellites launched since the space age began, more than 5,000 are now "dead metal". At hypersonic velocities, even a small, untracked fragment can cause catastrophic, mission-ending damage.

Mission Objective

Safe. Efficient. Autonomous.

“Achieving safe, efficient, and zero-impact handling of space junk.”

Garuda Mission Objective

System Architecture

Key technologies powering the GARUDA arm.

Dual-Arm Design

Dual-Arm Design

A lightweight, modular dual-arm design provides flexibility and redundancy for complex capture maneuvers.

7-DOF Articulation

7-DOF Articulation

7-Degrees-of-Freedom with high-precision articulation allows for maximum dexterity and reach in orbit.

Advanced Sensor Suite

Advanced Sensor Suite

Equipped with IMU, LIDAR, and Stereo Vision to autonomously identify, track, and approach target debris with high accuracy.

Fault-Tolerant & Soft Capture

Fault-Tolerant & Soft Capture

Robust architecture ensures stable debris collection. Adaptive grippers with force/torque feedback ensure zero-impact capture.

On Orbit Servicing

On-Orbit Servicing (OOS)

The GARUDA arm's high-precision and modular design makes it a versatile tool for critical OOS beyond debris removal.

Refueling & Repair

Refueling & Repair

Perform intricate maintenance to extend the operational life of active satellites.

Orbital Assembly

Orbital Assembly

Support the construction and deployment of large, next-generation space structures in orbit.

System Inspection

System Inspection

Conduct detailed, non-contact inspection of vehicle and satellite systems using the advanced vision suite.

Know More

Request detailed mission specifications, technical datasheets, or schedule a secure briefing with our Space Systems command.

Encrypted Transmission24/7 Response Unit