HALO // NEAR-SPACE SYSTEMS

Persistent capability above the battlespace.

Deimos-One develops high-altitude unmanned systems for persistent sensing, resilient communications, atmospheric intelligence, and long-duration mission operations.

EnvironmentStratospheric operations
PayloadsMission-configured
ArchitectureSoftware-defined
Mission dataReplayable by design
HALO // PLATFORM 01
MISSION STATE // NOMINAL
ALTITUDE 72.4 KFT PAYLOAD MULTI-MODAL LINK NOMINAL
WIND 18.2 KT MISSION NODE ACTIVE OUTPUT TRACEABLE
Platform classHALE / Near Space
Control modelMission-Driven
Payload modelConfigurable
Design originUnited States
01 // OPERATIONAL LAYER

Near space is the missing operational layer.

HALO operates above conventional aviation and below orbital infrastructure, creating a persistent, recoverable layer for sensing, communications, payload hosting, and mission intelligence.

01 // SENSING

Persistent sensing

Mission-configured observation, mapping, monitoring, and atmospheric intelligence from the stratosphere.

Platform capability
02 // RELAY

Resilient communications

Near-space data relay for remote, disrupted, or infrastructure-limited operational environments.

Mission dependent
03 // PAYLOADS

Modular integration

A configurable payload and ground-segment architecture designed around the mission rather than a fixed sensor catalog.

Mission configured
04 // DEPLOYMENT

Responsive deployment

High-altitude access without orbital launch timelines, with recoverability and iterative flight validation built into the model.

System architecture
PLATFORM 01 // HALO

A software-defined platform for persistent operations in near space.

HALO combines predictive atmospheric estimation, modular payload integration, safety-aware flight control, and a replayable mission-data architecture in a recoverable high-altitude platform.

Platform classHigh-altitude long-endurance unmanned system
EnvironmentStratospheric and near-space operations
Mission rolesISR, communications, atmospheric sensing, payload hosting
Payload modelModular and mission-configured
Mission dataTraceable telemetry, state history, and replay by design
Status // Active development & flight validation
02 // MISSION EVIDENCE

Built around missions, not abstractions.

Each campaign is structured around explicit objectives, test configuration, observed outcomes, and the next engineering milestone.

MISSION // SKY DRAGON
35.9721° N
114.8347° W
FLIGHT CAMPAIGNSTATUS // COMPLETE

Sky Dragon

High-altitude platform validation spanning launch operations, telemetry continuity, recovery, and post-flight reconstruction.

APOGEE74.8 KFT
DURATION06:42:18
LINK99.2%
MISSION // EVIE
36.1146° N
115.1728° W
ENVIRONMENTAL VALIDATIONSTATUS // COMPLETE

EVIE

Environmental validation focused on atmospheric sampling, thermal behavior, sensor integrity, and mission-state capture.

CEILING68.3 KFT
TEMP MIN-51.4°C
SAMPLES18,420
MISSION // ANCHOR 9
HALO V0.1.0
RUN 0217
SOFTWARE VALIDATIONSTATUS // ACTIVE

Anchor 9

Mission logic, negative scenarios, safety behavior, provenance, and deterministic replay across the HALO validation baseline.

SCENARIOS52 / 52
TESTS1,860
REPLAYVERIFIED
MISSION INTAKE // OPEN

Bring a mission to near space.

Discuss payload integration, persistent sensing, resilient communications, atmospheric research, or a custom high-altitude mission architecture.