Next gen flight yielding zenith efficiency. Designing indigenous aerial vehicles, UAV systems, air taxis, and space robotics using sustainable engineering and advanced intelligence.
We are building efficient, reliable aerial and extra terrestrial vehicles with local manufacturing, world class engineering and a human centered approach. Our solutions range from agriculture UAVs to air taxi prototypes and planetary rovers.
VTOL based regional air mobility prototypes designed for short range shuttle, hospital transfers, and urban commute with hybrid electric propulsion.
Agriculture and industrial UAVs with precise flight control, long endurance, payload adaptability and robust telemetry for Indian conditions.
Compact rovers and exploration platforms that bring low mass, high reliability design to planetary research and sample retrieval missions.
Nfyze integrates aerostructures, propulsion research, AI based flight optimization and digital twin simulations to accelerate prototype to pilot manufacturing lifecycles.
Rapid CAD to prototype cycles with focus on weight optimisation.
Robust autopilot and mission stack for autonomy and safe operations.
From crop health mapping to payload delivery, our UAVs are tuned for reliability, low maintenance and high mission availability in tropical and coastal environments.
Multi-spectral cameras and LiDAR fusion for crop health and yield prediction.
Wind tolerant control laws and predictive energy management.
Redundancy, pre-flight checks and geofencing to meet safe operation protocols.
Short-range VTOL prototypes focusing on low footprint operations, human centered cabin design and hybrid propulsion for extended range.
Urban congestion and emergency medical transport needs call for efficient short hop aerial solutions. Our air taxi research blends aerodynamics with city integration planning and pilot training simulations.
Lightweight rovers and robotic manipulators for planetary exploration, built for high reliability in harsh environments.
Multi-terrain wheel systems and modular suspension for rocky, sandy and icy surfaces.
Stereo vision, depth sensing and onboard perception for autonomous navigation and sample acquisition.
Low power neural accelerators and fault tolerant computing for mission critical tasks.
We use MQTT for telemetry and control with secure TLS, fallback HTTP/REST for non real time tasks and custom peer-to-peer protocols for local mesh communication in low connectivity environments.
MQTT offers low overhead publish-subscribe messaging which is ideal for telemetry and constrained links. Combined with edge intelligence and local mesh protocols we ensure robust operations in rural and coastal areas.