LUNAR HABITATO - Established lunar village with multiple dome habitats and solar panels

LUNAR HABITATO

THE MOON FRANCHISE

SPaaS — Space as a Service

1000x
Cost Reduction Factor
99.9%
ISRU-Driven Savings
3
Design IPs Registered

Our Mission

Enabling sustainable lunar colonization through revolutionary ISRU technology

Multiple connected lunar habitat domes with solar panels on the Moon surface

The Issue

Our path to the stars is blocked by an impossible “weight tax”:

  • $1M/kgPayload cost to lunar orbit
  • ~3mWall thickness needed for 90% radiation protection
  • 1,500tWeight of a 100 sq.m. habitat
  • $1.5TResulting payload cost - unsustainable!

Our Solution

Our concept reduces both time and costs through innovation:

  • AI-supported R&D with agile iteration cycles
  • Research projects targeting close to 100% ISRU (ESA / Fraunhofer / MIT / Politecnico Torino)
  • De-risking through XR simulations & feasibility studies
  • 99.9%Cost reduction through ISRU disruption

The Company

HABITATO - Pioneering lunar habitat development with proven expertise

LUNAR HABITATO lunar colony with rocket on illuminated landing pad

Terrestrial PoC

Proven concept with terrestrial applications

3 LOIs

Letters of Intent from Italian 3D pioneers

ESA Partnership

Industrial partnership with ESA & Fraunhofer

Expert Team

MIT, Fraunhofer & industry experts

Key Partnerships & Projects

Research project “Lunar Digital Twins” with Dr. Tommy Nilsson (FIT Fraunhofer) & Prof. Dr. Valentina Sumini (MIT Media Lab)

ASP Research project “Swarm Robotics”

3 Design IPs registered by EUIPO

100% ISRU moon habitat concept development

Patented Innovations

EUIPO registered intellectual property protecting our breakthrough technologies

Matryoshka Shell Design

World's first MaSh design providing maximal structural integrity through nested shell architecture.

EUIPO Registered

Single Armor Protection

World's first surface protection design optimized for micro-meteorite impact resistance.

EUIPO Registered

Bug Shield Double Armor

Advanced dual-layer protection system for maximum defense against micro-meteorite strikes.

EUIPO Registered
Top-down view of connected modular habitat structures showing the patented design
WIPO Registration Pending

Matryoshka Shell Design

Revolutionary multi-layered architecture for maximum protection and structural integrity

Matryoshka Shell Design cross-section showing interior habitat

Technical Specifications

11.3m Internal Diameter

Optimized dimensions for structural efficiency and livable space

3m Wall Thickness

Double shell layer with single vacuum void between both shells for radiation protection

90%+ Radiation Shielding

Multi-layered protection against cosmic radiation and solar events

Unique Construction Method

The MaSh design utilizes regolith spheres arranged in a honeycomb-like pattern, creating an exceptionally strong structure that can be manufactured entirely from lunar materials using ISRU techniques.

Regolith Spheres

Regolith-based construction elements

Double Shell

Nested layers for redundancy

Close-up of sintered regolith sphere construction
Durability

Withstands micro-meteorite impacts and extreme temperature cycling

Modularity

Expandable design allows for colony growth over time

Resilience

Multi-layer redundancy ensures safety in case of damage

Competitive Advantage

LUNAR HABITATO vs. Competition - Our unique selling propositions

FeatureLUNAR HABITATOCompetitor ACompetitor B
MaSh Design
100% ISRU Target
AI-Accelerated R&D
Patented IP (EUIPO)
ESA/Research Partners
Dual-Use Applications

What Sets Us Apart

  • Only company with patented Matryoshka Shell design
  • Targeting 100% ISRU - not just partial utilization
  • 99.9% cost reduction potential (Factor 1000)

Portfolio Highlights

  • Research projects (ESA XR study, ISRU study, swarm robotics)
  • Licensable AI-based feasibility simulations
  • Commercially usable 1:1 demonstrator
  • GLAMS: Geopolymers for Additive Manufacturing and Lunar Monitoring

In-Situ Resource Utilization

The key to sustainable lunar colonization - using what the Moon provides

Extract

Harvest regolith from the lunar surface

Process

Convert raw regolith into construction material

Form

3D print structural elements

Build

Assemble complete habitat structures

Traditional Approach

$1M/kg
Payload to lunar orbit
1,500 tons
Weight of 100m² habitat
$1.5 Trillion
Total cost - Unsustainable!

ISRU Approach

99.9%
Materials sourced on-site
~1.5 tons
Only equipment needs transport
$1.5 Billion
1000x cost reduction!
Large-scale lunar colony with astronauts, rovers, and numerous connected habitat domes

The Vision: Sustainable Lunar Colonies

With ISRU technology, entire lunar villages become economically viable, enabling permanent human presence beyond Earth.

R&D & Technology Readiness

AI-accelerated research and strategic partnerships driving rapid advancement

AI-Accelerated R&D

Rapid iteration cycles powered by AI agents and BEYOND BOT AI

Partner Labs

In-house research + ESA, MIT, Politecnico Torino

LUNA Simulator

Validation through ESA LUNA facility trials

Strategic Partnerships

Materials, life support & thermal shielding partners

Key Research Collaborations

ESA

Lunar Digital Twins

Industrial partnership with ESA/Fraunhofer research project led by Dr. Tommy Nilsson (FIT Fraunhofer) & Prof. Dr. Valentina Sumini (MIT Media Lab)

ASP

Swarm Robotics

Research project for swarm robotics in additive manufacturing of shell structures - enabling autonomous construction on the lunar surface

2026 Milestones

1

XR-based feasibility simulations (OSIP lunar digital twins research)

2

Study: "Is 100% ISRU-driven lunar habitat deployment achievable?"

3

ASP research project "Swarm Robotics for Additive Manufacturing"

4

1st physical 1:1 prototype

5

Spacetech funding & VC deals sealed

Dual-Use at its Best

Transformative, sustainable ISRU solutions for both Earth and Space

Dual Use comparison - Lunar Habitat on the left, Crisis Shelter on Earth on the right

Terrestrial Applications

  • Sustainable 3D-printed construction using local materials
  • Disaster-resistant shelter solutions
  • Remote/extreme environment habitats
  • Proof-of-concept demonstrators

Extraterrestrial Applications

  • Lunar habitat construction using regolith
  • Mars settlement infrastructure
  • Asteroid mining support structures
  • Deep space mission habitats

Key Benefits of Dual-Use Approach

Cost Reduction

Shared R&D costs between terrestrial and space applications

Industry Innovation

Space technology driving sustainable construction innovation on Earth

Market Diversification

Multiple revenue streams reducing business risk