{{ step.title }}
{{ step.body }}
Pulsar Space is building AI compute infrastructure for space. Our goal is to make orbital compute accessible to anyone who needs it. Onboard inference with a broader range of AI workloads in orbit.
{{ p.desc }}
Orbital compute remains fragmented and mission specific. Pulsar Space is building shared AI infrastructure that can serve workloads across missions. It supports onboard inference and broader applications while operating through radiation, power, thermal, and communication constraints.
Pulsar Space runs AI workloads across orbital compute nodes. The platform coordinates execution from flight hardware through the fleet and makes that capacity accessible through a common control plane.
{{ c.desc }}
{{ cap.desc }}
Building quantum chips for deep-space exploration.
The runtime coordinates fault recovery, workload scheduling, and autonomous operations. AI workloads continue through radiation events and constrained power budgets. The spacecraft remains operational when communication with Earth is interrupted.
{{ c.long }}
Pulsar Space is building a shared AI compute layer in orbit. Developers, researchers, and mission operators will be able to deploy workloads through one platform. Satellites can use the same infrastructure for onboard inference and autonomous operations.
{{ applicationDetail.intro }}
{{ applicationDetail.mission }}
{{ step.body }}
{{ system.body }}
{{ reality.body }}
{{ measure.note }}
Pulsar Space forecasts orbital constraints before they affect operations. The forecast covers eclipse and radiation exposure. It also tracks thermal limits and downlink access. Each job can then be scheduled, checkpointed, or rerouted as conditions change.
{{ f.desc }}
Pulsar Space begins with interorbital vehicles and a software layer that makes high performance compute dependable in orbit. Each horizon extends those foundations. The roadmap advances through autonomous servicing, world models, hybrid computing, physical AI, and Solar System energy infrastructure.
Planning windows, not launch promises · every phase advances only after its technical evidence, safety case, capital, and mission partnership are secured · programs overlap where shared technology makes parallel progress credible
{{ r.desc }}
Physical AI gives machines the ability to perceive and reason beyond Earth. It enables them to build and survive there. This capability supports deep space exploration and extends human consciousness.
Interorbital vehicles establish mobility. A resilient compute fabric makes intelligence available wherever it is needed. Together they expand into autonomous systems that can service infrastructure, coordinate operations, and manage energy beyond Earth.
{{ horizonDetail.intro }}
{{ horizonDetail.mission }}
{{ system.body }}
{{ reality.body }}
{{ step.text }}
Evidence required · {{ step.evidence }}
{{ measure.note }}
{{ v.desc }}
Pulsar Space is looking for aligned investors and partners who understand the technical ambition of widely accessible AI compute in space.
{{ partner.desc }}
Join us in Oslo to develop orbital AI infrastructure that makes compute widely accessible. Advance autonomous servicing, world models, hybrid quantum GPU systems, and physical AI for deep space.
Tell us what you have built, what you want to solve, and why space is where you want to do your best work.
Thank you for applying to Pulsar Space. Your application and CV have been submitted for review.
This notice explains how Pulsar Space handles information submitted through the contact and careers forms. Last updated 27 July 2026.
{{ section.body }}
Choose the path that fits your mission, technology, investment focus, or interest in joining the founding team.
Your message was sent successfully. We'll be in touch within two business days.