Vertical Integration

We Build the Brain,
Body, and Power.

End-to-End Control. Unmatched Performance. From the proprietary autopilot PCB to the composite frame and custom battery cells, we own every critical system.

The Brain

Stalya Flight Controller

AI-powered autonomous navigation for GNSS-denied operations. Our Stalya FC family features FPGA-based architecture with custom AI accelerators, delivering microsecond-level deterministic control and real-time visual localization — all fully onboard with no external compute dependency.

explore

GNSS-Denied Navigation

Offline map-based localization with satellite imagery, visual feature matching, and homography pose estimation.

speed

10-15ms AI Pipeline

End-to-end visual localization with sub-20ms deterministic perception loop and EKF sensor fusion.

memory

Custom AI Accelerators

INT8/INT16 quantized CNNs for object detection, tracking, visual odometry, and landing zone identification.

hub

Triple IMU Redundancy

Multiple camera inputs, power domains, and hardware-enforced domain isolation for safety-critical flight.

Custom autopilot board
STALYA FLIGHT CONTROLLER
wifi_tethering
Architecture
FPGA SoC
Core
RISC-V
The Body

Aerospace Grade Composites

We don't assemble parts; we weave structures. Our frames are manufactured in-house using Toray carbon fiber.

hexagon

Unibody Construction

Eliminating joints reduces vibration and structural weak points, increasing lifespan by 40% compared to bolted frames.

science

In-House Stress Testing

Every frame batch undergoes rigorous testing, including wind tunnel validation up to 80 km/h.

Weight Reduction vs Competitors-35%
Carbon fiber weave
FIG 1. T700 WEAVE
Robotic arm manufacturing
IP54
Dust & Water
Resistant
Battery cell
45
Min Flight
850
Cycles
2C
Charge Rate
The Power

High-Density Energy Storage

Power is the limiting factor of flight. Our custom Li-Ion packs are designed for high discharge rates and extreme temperature resilience.

Smart BMS Integrationexpand_more
Our Battery Management System communicates directly with the AutoPilot, providing cell-level voltage monitoring and accurate return-to-home calculations.
Temperature Resilienceexpand_more
Self-heating technology allows for operation in temperatures as low as -20°C without significant capacity loss.
Rapid Swapping Systemexpand_more
Hot-swappable design allows operators to change batteries in under 15 seconds.