Synchronized Aerial Systems

Where physics, signal, and flight operate as one.

Designing a custom drone from the ground up—open-source flight control, custom PCBs, and disciplined systems engineering.

Open source

Flight control + documentation

Hardware

Sold as releases mature

Phase alignment

Live

Light-blue sync point, silver waveform. Pauses for reduced motion.

Current focus

Disciplined engineering for synchronized micro-drone fleets.

Physics-driven architecture

Signal timing, sensor fusion, and control loops designed as a single system.

Custom electronics

Purpose-built PCBs with EMI-aware layout, mesh-ready links, and deterministic timing.

Open flight control

Open-source stack for flight logic, telemetry, and documentation to enable collaboration.

Program status

Progress across hardware and control.

PCB v1

Available

Baseline flight controller board with stable power and sensor stack.

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Drone v1

In development

Reference airframe integrating PCB v1 for controlled test flights.

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PCB v2

In development

Latency-optimized board with improved RF discipline and sync taps.

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Drone v2

Planned

Higher-thrust platform validating multi-node timing and mesh links.

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Controller

Planned

Ground unit with deterministic command latency and secure mesh handoff.

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PCB v3 Mesh

Coming soon

Mesh-ready control board built for distributed phase alignment.

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Drone v3 Mesh

Planned

Cooperative flight testbed demonstrating synchronized aerial swarms.

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Mass Programmable Controller

Planned

Operator interface built for fleet-scale programming and monitoring.

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Open source

Transparent control stack with disciplined documentation.

Flight control + docs

Core control logic, telemetry pipeline, and build instructions remain open for review and contribution.

GitHub (coming soon)

Hardware releases

PCBs ship as they mature. Select design details will publish after validation to keep reliability first.

Collaboration

We welcome disciplined contributors in controls, RF, PCB layout, and documentation to accelerate the roadmap.

Engineering story

Building synchronized flight through deliberate phases.

Phase progression

Every build is a step in phase—measurable improvements in timing, EMI discipline, and controllability.

Hardware + software symmetry

Electronics, firmware, and flight dynamics are designed together to avoid surprises downstream.

Signal-first testing

Instrumentation, sync markers, and telemetry traces guide every lab session before field deployment.

Roadmap

See how the program advances.

Review timelines for PCB and airframe milestones, open-source scope, and what ships next.