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Engineered To
Your Specification

Fli-Lux 10-Inch Quadcopter

Tactical Superiority

Modular Architecture

Rigorous Validation

ENGINEERED FOR RESILIENCE, MODULARITY, & TACTICAL SUPERIORITY

7075-Aluminum Frame

Patent-pending modular aluminum construction. Weight-competitive with 3K carbon (approx. 397g equivalent) while surviving field conditions that destroy composite frames.

Modular Architecture

Standard 30x30mm stack mount. Arm and body modularity enables rapid field replacement. Optional SBC Bay (Raspberry Pi 5) for compute-intensive missions.

Open Ecosystem

No proprietary component lock-in. Flight controller, ESC, motors, control link, and video system are customer-specified. NDAA-compliant component sets available.

Endurance & Capacity

Engineered for efficiency and lift. Achieves approx. 42 minutes flight time unladen, or supports heavy payloads up to 1.36 kg (3 lb) with linear endurance scaling.

Advanced Avionics

Baseline integration utilizes ArduPilot on a Holybro Kakute H7 flight controller, providing advanced mission planning, automated flight modes, and robust failsafe protocols.

Transparent Validation

No inflated claims. We provide blackbox flight data, telemetry logs, and a structured customer acceptance test process prior to delivery.

Sleek Carbon Fiber 10in Drone

Operational Capabilities

Tactical Payload Integration

Tactical Payload Integration

Engineered for advanced stabilized cameras, precision sensor packages, and bespoke tactical delivery mechanisms without airframe modification. We handle the integration and center-of-gravity tuning.

Payload-Agnostic Interface

Payload-Agnostic Interface

The Fli-Lux avoids vendor lock-in. It features an Integrated 7-Pin Magnetic Payload Connector rated to 12V, providing power and bidirectional data (UART, CAN, I2C, PWM) to any attached payload without external wiring.

Contested Environments

Contested Environments

Designed for the modern battlespace with GPS-denied navigation capabilities, optical flow integration, and structural resilience against severe operational abuse.

We do not overstate capabilities. Performance estimates are derived from established aerodynamic modeling and are continually validated through structured flight tests. We will not deliver a platform that has not been validated to your exact operational requirements.