Built for the airframe
TPM 2.0, conformal coating, and vibration isolation protect the mission stack in flight.
A carrier board and full communications PACE stack delivered as one swap-and-play edge system—with autonomy software, mission models, and program-selected radio interfaces already loaded for the validated configuration.
Inspect the architecture* Selected model-and-hardware benchmark; end-to-end mission latency varies by configuration and workload.
Arc-Edge v1 separates compute, acceleration, sensors, vehicle control, and communications into replaceable capability blocks. Programs can change an airframe, autopilot, or link plan without rebuilding the autonomy runtime from zero.
Camera and mission payload ingress
Local perception and mission reasoning
MAVLink vehicle integration
Program-selected PACE bearers
Tracks, tasking, and swarm state
Configuration note / Installed compute, radios, environmental hardening, and interfaces are configured for the target platform and program.
Arc-Edge v1 separates mission capability from airframe lock-in. Socketed compute, an upgradable accelerator, and three universal radio slots support a full communications PACE plan across program-selected radio, mesh, LTE/5G, and SATCOM integration options.
Native video and sensor pipelines for mission perception.
PX4 and ArduPilot integrations, extensible to other MAVLink-based autopilots through adapter validation.
Selected onboard model-and-hardware benchmark; end-to-end decision latency varies by workload and configuration.
Program-selected radio, mesh, LTE/5G, and SATCOM paths by validated configuration.
Arc-Edge v1 arrives as an integrated capability block. The selected compute and full communications PACE hardware are paired with the operating stack, mission models, and validated vehicle interfaces needed for the target airframe.
Arc autonomy runtime and mission orchestration
Mission model library and edge inference pipelines
Full communications PACE policies and profiles for the selected loadout
MAVLink interfaces for the target autopilot
Select the compute and communications package around the mission. Full communications PACE tiers retain the same carrier architecture and software foundation while integrating program-selected radio, mesh, LTE/5G, and SATCOM pathways.
| Configuration | Compute | Mesh / primary link | Additional paths / slots | Mission role |
|---|---|---|---|---|
| T1Command Core (Dev) | Arc-Cortex | WFB / program-radio development | Three open slots for adapter validation | Development and hardware-in-the-loop baseline |
| LiteArc-Lite | Jetson Orin Nano | Microhard integration option | LTE / 5G integration option | SWaP-conscious edge autonomy on the same PCB |
| T2PACE Base | Arc-Cortex | Microhard / selected mesh option | LTE / 5G + SATCOM integration options | Baseline multi-path communications |
| T3PACE Doodle | Arc-Cortex | Doodle Labs Defense Helix option | LTE / 5G + SATCOM integration options | Helix-based tactical mesh loadout |
| T4PACE Silvus | Arc-Cortex | Silvus LC5200 OEM option | LTE / 5G + SATCOM integration options | Silvus-based tactical mesh loadout |
| T5Swarm Command | Arc-Cortex | LC5200 + Microhard integration option | LTE / 5G + SATCOM integration options | Dual-mesh command and qualified swarm backbone |
Configuration is mission-dependent. Radios, mesh, LTE/5G, SATCOM, bearer transitions, and airframe interfaces require hardware- and program-specific validation.
TPM 2.0, conformal coating, and vibration isolation protect the mission stack in flight.
Compute, AI acceleration, and radios remain modular so the capability can evolve without a new carrier board.
PX4 and ArduPilot are integrated; other MAVLink-based autopilots extend through an adapter that is validated on the target aircraft.
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