Agasthya Aerospace

Building Indigenous Launch & Propulsion Systems for India’s Near-Space Future.

Avionics Systems

πŸš€ Avionics Systems & Flight Computers

Our avionics systems serve as the intelligent core of every vehicle we build. Designed for high vibration and extreme flight conditions, our flight computers integrate real-time processing, sensor fusion, telemetry, and autonomous recovery logic into a compact, resilient architecture. Built with redundancy and scalability in mind, these systems ensure reliable performance from low-altitude validation flights to advanced suborbital missions.

πŸ›° Navigation & Guidance

We develop precision navigation and guidance systems that combine GNSS, inertial sensing, and advanced filtering algorithms to deliver accurate real-time position and attitude control. Our architecture enables stable ascent trajectories, controlled descent, and autonomous recovery β€” ensuring mission accuracy, safety, and complete post-flight data analysis.

Sounding Rockets

🌌 Suborbital Research Vehicles

Our suborbital vehicles are engineered for atmospheric research, payload testing, and high-altitude experimentation. Featuring modular payload bays, lightweight structures, and reliable recovery systems, they provide affordable and repeatable access to near-space environments for academic, commercial, and research applications.

Propulsion Systems

πŸ”₯ Solid Propulsion

We develop high-performance solid propulsion systems engineered for reliability, structural strength, and predictable thrust delivery. Our design approach focuses on optimized grain geometry, combustion stability, and robust motor casing integrity to withstand extreme flight loads. Through simulation-driven analysis and structured static testing, we ensure consistent performance aligned with suborbital research objectives and regulatory standards.

πŸ’§ Liquid Propulsion (Future Development)

As part of our long-term roadmap, Agasthya Aerospace plans to develop liquid propulsion systems focused on precision control, efficiency, and mission flexibility. Future research will explore advanced feed architectures, injector optimization, and controllable thrust modulation to enable enhanced flight adaptability. This propulsion program is envisioned to support higher-altitude and advanced suborbital missions, with a strong emphasis on safety, performance validation, and scalable engineering growth.

Projected Launches in 2026

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Accelerated 5-Year Roadmap

2026 – Integrated System Validation

  • 5km Demonstrator
  • 2–3 Launches

2027 – Dual Track Expansion

  • 30km Missions
  • 6 Launches

2028 – Manufacturing Scale

  • 80km Capability

2029 – 100km Missions

  • Commercial Flights

2030 – Aerospace Facility

  • 20+ Launches

Technical Whitepaper

Download propulsion and avionics architecture overview.

Download Whitepaper

Contact

Email: sameer@agasthyaerospace.com

Phone: +91 8123 276877