Platform Platform OverviewArchitecture
Jurisdictions Thermal InspectionPrecision MappingFire MonitoringISR Operations
Papers Partner with us

Let's Talk

Built for hardware partners, technical evaluators, and defense/public-safety teams validating governed autonomy in the field.

Current engagement model: technical evaluations, field-validation partnerships, and SBIR-aligned co-development.

OPERATIONS United States
ENGAGEMENT MODEL Technical evaluations, field-validation partnerships, SBIR-aligned co-development

We typically respond within 24 hours.

Send a Message

We typically respond within 24 hours. Your information is kept confidential.

Common Questions

What is Flightworks Control?

Not a GCS. A mission governance platform built on the AgentVector pattern. Every autonomous decision is deterministic, auditable, and attributable.

What is the fire monitoring demo?

FireLaw is the lead demo target — overnight wildfire perimeter monitoring with multi-asset task leases, 4-tier escalation, and degraded mode discipline. See the full architecture.

What SBIR artifacts are available?

Published papers, architecture documentation, FireLaw HLD/PRD, Sentinel edge relay, and the open-source codebase. Concrete, reviewable artifacts — not slide decks.

Why Swift and Rust?

Safety-critical systems require deterministic behavior and compile-time guarantees. Swift (SwiftVector) powers the principal interface; Rust (RustVector) powers the edge relay. Both enforce constitutional governance.

What is Sentinel?

The MAVLink edge relay and governance engine. RustVector kernel running on edge hardware, enforcing FlightLaw at wire speed with hash-chained audit and deterministic replay. See the architecture.

Who should reach out?

Hardware partners, technical evaluators, and defense/public-safety teams validating governed autonomy in the field. Technology partnerships and SBIR collaborations. U.S.-based field operations.