Reinventy
English

Primary navigation

Concept visualization of Tin Man OS Flight operating in its target domain

TIN MAN OS · PRODUCT-LINE EDITION · 01

TIN MAN OSFLIGHT

Airframes were automated. Now they become cognitive.

Tin Man OS Flight is a purpose-built aerial edition for sovereign mission intelligence: multimodal perception, adaptive reasoning and governed action deployed directly inside advanced uncrewed aircraft.

PRODUCT-LINE EDITION
01Autonomous systems

DOMAIN MISSION

One operating architecture.
Recomposed for flight.

Flight composes NVIDIA-accelerated perception, mission reasoning, vehicle interfaces and external safety authority into one reproducible edge profile. It is designed to preserve operational intelligence when bandwidth disappears, latency becomes mission-critical and the cloud is no longer an acceptable dependency.

THE COMMERCIAL THESIS

A product line.
Not another one-off AI integration.

The next generation of aerial systems will be differentiated less by the airframe than by the intelligence they can carry, govern and continuously adapt. Flight turns that intelligence into a licensable, hardware-aware operating layer—portable across airframes, payloads and missions without surrendering control of the platform or its data.

01

NVIDIA-accelerated edge

Jetson AGX Thor is the first target in the product roadmap. CUDA, camera and ROS 2/DDS providers enter through a versioned HAL, keeping accelerated compute powerful without making the product inseparable from one machine contract.

02

Reproducible by architecture

The Tin Man OS Foundry resolves machine, mission, domain and governance manifests into a pinned product image—with provenance, SBOM, integrity evidence and a declared resource envelope.

03

A defensible integration layer

The moat is not one model. It is the composition of hardware abstraction, cognitive runtime, domain knowledge, governed tools, observability and an external constitutional plane the intelligence cannot rewrite.

04

Designed to scale commercially

One core architecture can support edition licensing, OEM integration, domain packs, qualification programmes and lifecycle support—turning deep engineering into a repeatable platform relationship.

CURRENT PUBLIC PROOF · v0.2.0-alpha.1 · 7,609 / 7,609 BITBAKE TASKS · 100% SSTATE REPLAY · 12 / 12 SHA-256 ENTRIES · BOOT / FLASH VALIDATION DEFERRED

EDITION CAPABILITIES

The intelligence changes bodies.
The governance does not.

A domain pack changes what the system can understand and integrate while the same constitutional, lifecycle and evidence boundaries remain in force.

01

Multimodal airspace perception

Fuse camera, thermal, depth, telemetry and payload evidence into one time-aware operational picture.

02

Adaptive mission reasoning

Re-plan bounded mission steps around weather, sensor quality, energy and changing objectives without rewriting the safety plane.

03

Disconnected operation

Keep critical cognition local and sovereign when cloud access is intermittent, contested or prohibited.

04

Fleet intelligence

Coordinate role, evidence and health across multiple aircraft while preserving explicit operator authority.

05

Payload-native architecture

Expose inspection, mapping, environmental and specialist sensors through versioned HAL contracts.

06

Governed actuation

Route every physical action through typed tools, risk classes and an independent external safety controller.

THE GOVERNED OPERATING LOOP

Adaptation with
an audit trail.

  1. 01Sense the environment
  2. 02Build operational context
  3. 03Propose a bounded action
  4. 04Obtain policy authorization
  5. 05Execute and preserve evidence

DEPLOYMENT PROFILES

Built around the mission.
Resolved for the machine.

01

Inspection

Infrastructure, energy and inaccessible-asset inspection

02

Survey

Mapping, environmental sensing and persistent observation

03

Remote operations

Supervised missions beyond reliable connectivity

04

Strategic integration

Qualified dual-use integration under operator and regulatory authority

AUTHORITY BOUNDARY

Capability is powerful.
Authority remains external.

TMOS-5 defines a planned drone SIL/HIL profile with an external safety controller. Tin Man OS does not replace certified flight control, airworthiness processes, command authority or qualified operators.

OEMs · NVIDIA ECOSYSTEM · STRATEGIC CAPITAL

The category is open.
The right partners can define it.

Reinventy is opening the first reference-integration and strategic-capital conversations for a product category designed to place sovereign synthetic intelligence inside real machines. Partner profile: UAS OEMs · NVIDIA ecosystem partners · avionics integrators · sensing companies · simulation and HIL laboratories.

Build with Tin Man OS Flight
NEXT EDITION · 02ROBOTICS