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© 2026 INORE INC.
Autonomous mining operations on regolith, Earth on the horizon
AUTONOMOUS MINE OPERATING INFRASTRUCTURE

Mining beyond human limits

INORE builds the operating layer that keeps autonomous mining fleets running, and the robots that service them, so fewer people ever enter the hazardous zone. First on Earth. Then off it.

EXPLORE THE SYSTEM OUR MISSION
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THE INORE SYSTEM

The zero-entry mine, built in layers

01 / ORCHESTRATE

One live mine model

CONTROL coordinates tasks, energy and service events across mixed OEM fleets, and detects the exceptions that stop them, without replacing the systems already on site.

02 / SERVICE

Intervene without entry

SCOUT and BASE handle inspection, sensor care, delivery, docking and recovery, the reasons people enter autonomous zones today.

03 / EVIDENCE

Prove it, then scale it

Every exception and recovery builds the dataset, and the ISO 17757-aligned safety case, that make zero-entry operations bankable. Like space.

CONTROL operations room: supervisors over one live model of the mine
01 · FLEET ORCHESTRATION IN SIMULATION · 2026

Control

The operating system of the autonomous mine. CONTROL coordinates tasks, energy, service events and exceptions across mixed OEM fleets, against one live model of the site.

FLEETS
Mixed OEM
OPERATION
24 / 7
PEOPLE IN ZONE
0 goal
CONTROL · THE SYSTEM
SCOUT v0 cleaning a haul truck sensor pod at the wheel line
02 · INTERVENTION ROBOT V0 CONCEPT

Scout

The first machine of the zero-entry mine. SCOUT v0 rides a proven rugged chassis: it inspects roads and stopped equipment, cleans and verifies sensors, delivers tool pods, connects charging, and investigates exceptions before any person enters.

CANDIDATE TASKS
Under review
ENDURANCE
14 h
CREW ONBOARD
0
SCOUT · FULL SPECS
INORE BASE perimeter service station at the autonomous-zone boundary at dusk
03 · ZONE-BOUNDARY SERVICING CONCEPT · FIRST BUILD 2028

Inore Base

An airlock for the autonomous zone. People restock and maintain BASE from the safe side; machines dock from the pit side, for charging, tool pods, sensor cleaning and consumables.

BOUNDARY SIDES
Safe / pit
SERVICES
Charge · tools
PEOPLE PAST FENCE
0
INORE BASE · CONCEPT
ATLAS future haul platform, engineering concept schematic
04 · REFERENCE ARCHITECTURE FUTURE PROGRAMS

Future machines

Owning the operating data comes first. ATLAS haulage, TALON loading, DELVER deep-bore and CERES-R off-world are the machines that data will design: future programs, co-developed with OEM partners.

PROGRAMS
4
BUILD MODEL
OEM-built
CREW ONBOARD
0
ALL FUTURE PROGRAMS
CERES-R excavating lunar regolith
05 · OFF-EARTH HORIZON R&D HORIZON · 2030s

Ceres

The lunar surface needs what the pit needs: long-duration offline autonomy, dust-tolerant connectors, tool exchange, energy-constrained scheduling, machines that inspect and recover each other.

The systems that remove people from the pit are the systems that operate where people cannot go. Space is our R&D horizon, not a near-term revenue line.

CERES · FULL SPECS SEE THE TIMELINE
MISSION TIMELINE

Earth first. Then the belt.

2026 H2
Company formed
CONTROL in simulation. 25+ operator interviews shape the wedge; one design-partner site signed with data rights.
NEXT
SCOUT v0 in the field
Fenced design-partner site: inspection, sensor care, delivery, docking. 1,000+ supervised hours toward an ISO 17757-aligned safety case.
2028
First INORE BASE
Perimeter service station live at the zone boundary; robotic charging and tool-pod interfaces; first paid deployment.
2029
Three paid sites
Remote operations and incident-review center; 95%+ approved-task completion; OEM-certified integrations.
3–5 YRS
The operating layer
10 to 20 sites. Intervention and energy management; haulage, loaders, drills and light vehicles integrated through existing OEM supervisors.
5–10 YRS
Purpose-built machines
Seatless machines co-developed with OEM and manufacturing partners, designed from the operating dataset.
HORIZON
Off-world qualification
Lunar subsystem qualification with agency programs: offline autonomy, dust-tolerant hardware, cooperative robots.

Build what digs the future

We hire autonomy engineers, roboticists and field-safety leads, and partner with operators ready to take people out of the hazardous zone.

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