Space Computing · Orbital Cloud

Compute in Orbit.Data Centers in Space.

A space computing platform that moves the data center into orbit. Satellite constellations carry radiation-hardened AI chips, run on solar power, radiate heat into deep space and link up via inter-satellite lasers into an orbital compute network — processing data where it is born and returning only results, breaking the energy and bandwidth limits of ground-based compute.

  • Solar Powered
  • Deep-Space Cooling
  • Elastic Compute
  • Laser Mesh
1361W/m²
Solar constant in orbit — no night, no clouds
~3K
Deep-space background for radiative cooling
0L
Cooling water used, zero land footprint
10²+Gbps
Class of inter-satellite laser bandwidth

Positioning & Vision

The cloud’s compute pool — built in space

AI is ultimately bounded by energy. Ground data centers are constrained by grid capacity, cooling water and land permits, making expansion ever slower and costlier. StarWeave builds self-powered data centers in orbit and opens them up like the cloud: request on demand, scale elastically, pay for what you use — without caring which satellite runs your workload.

SAT

Compute Constellation

Every satellite is a server in space — launched in batches, expanded continuously.

RAD-AI

Rad-hard AI Chips

Energy-efficient AI training and inference hardened for space.

OISL

Laser Links

High-bandwidth, low-latency optical backbone in orbit.

ORBIT CLOUD

Orbital Cloud

A self-powered, on-demand, elastically scalable data center in space.

Core Features

Breaking four bottlenecks of ground compute

Rebuilding compute infrastructure on the physical advantages of space.

Always-on Solar Power
01

Clean · Low-carbon

Always-on Solar Power

Dawn-dusk orbits enjoy near-continuous sunlight, turning solar energy straight into compute — clean, low-carbon and off the terrestrial grid.

Natural Deep-Space Cooling
02

Zero water · Zero land

Natural Deep-Space Cooling

Heat is radiated into near-absolute-zero space. No water, no land — no cooling towers and no competition for water resources.

Compute at Capture
03

Real-time · Bandwidth-light

Compute at Capture

Imagery, communications and sensor data are inferred in orbit in real time; only structured results come down, saving downlink bandwidth and time.

Inter-satellite Laser Mesh
04

Elastic · Scalable

Inter-satellite Laser Mesh

Satellites interconnect via laser links into one network. Compute nodes join on demand, scaling elastically like the cloud.

Architecture

Use space compute the way you use the cloud

Users submit jobs on the ground; orbital clusters run them and deliver results. Access works just like cloud computing — the compute simply lives in space.

  1. 01

    Submit

    Send AI training, inference and compute jobs via API or console, on demand.

  2. 02

    Uplink & schedule

    Ground stations and optical links route jobs, models and data to the best orbital nodes.

  3. 03

    Compute in orbit

    Solar-powered satellites form a laser-linked cluster and run workloads in parallel.

  4. 04

    Deliver

    Results return to Earth through cloud APIs; data born in orbit is processed in place.

Ground data center vs orbital cloud

Ground data center
StarWeave orbital cloud
Energy
Bought from the grid; growth capped by power quotas
Direct solar, near-continuous sunlight
Cooling
Chillers and towers consuming water and power
Radiated into deep space, zero water
Siting
Needs land and lengthy permits
No land — the orbit is the server hall
Scaling
New campuses take years
Launch new compute satellites to join the mesh

Use Cases

One orbital cloud, every industry

Like the cloud, orbital compute is delivered as a service — from large models to enterprise workloads, available on demand.

LLM Inference Service
Inference API/ 01

LLM Inference Service

Orbital AI inference exposed as an API, billed per call and ready to use.

AI Training & HPC
Training · Batch/ 02

AI Training & HPC

Long-running training, rendering and scientific jobs scheduled onto energy-rich orbital clusters.

Green Compute
Zero-carbon/ 03

Green Compute

Solar-powered and water-free, helping enterprises meet ESG and emissions goals.

Satellite Data Processing
Process in place/ 04

Satellite Data Processing

EO and comms operators tap nearby orbital compute — process at capture, return only results.

Compute Everywhere
Global reach/ 05

Compute Everywhere

Oceans, aviation and remote regions access compute over satellite links — no local data center needed.

Disaster Recovery
Resilience/ 06

Disaster Recovery

Compute independent of ground grids and natural disasters, as off-site backup for critical workloads.

Why Now

Four trends are converging

Falling launch costs

AI energy demand

Large models keep driving compute and power consumption up; ground energy and cooling are now hard limits.

Falling launch costs

Reusable rockets and mass-produced satellites make large constellations economically viable.

Chip efficiency leaps

Efficient AI silicon and radiation hardening have matured — one satellite can host meaningful compute.

Laser comms mature

Inter-satellite laser links are in large-scale orbital use, providing a high-speed backbone.

Roadmap

Validate — Demonstrate — Constellate — Commercialize

01

Validate

Ground simulation & payload prototypes

02

Demonstrate

First compute satellites in orbit

03

Constellate

Laser-linked, elastic expansion

04

Commercialize

Global orbital cloud services

StarWeave

Partner · Invest · Connect

Shape the future of space computing with us

We welcome investors, aerospace and semiconductor partners, and research teams worldwide to build with us.

Capital

Strategic & Early-stage Investment

We are actively seeking venture capital, industry funds and sovereign funds as strategic and early-stage partners to lead the emerging category of orbital cloud infrastructure.

  • Venture & early-stage investment
  • Industry & strategic funds
  • Global capital and market synergy
Get in Touch

Industry

Industrial Partnership & Joint R&D

We invite partners in satellite manufacturing, launch, AI chips, optical communications and cloud computing to engineer and commercialize orbital compute together.

  • Satellite platform & launch partnerships
  • Joint R&D on AI chips and laser comms
  • Compute partnerships with clouds & AI firms
Get in Touch

Contact

Let’s talk

Whether you are exploring an investment, a technical partnership or buying compute, we would love to hear from you.

venslu.pro@gmail.com
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