Moliri develops large‑scale space infrastructure, offering end‑effector tools and in‑space assembly services to construct and maintain orbital structures. Its portfolio includes space solar‑power systems that capture sunlight and transmit energy to Earth or other platforms, enabling continuous power supply for satellite constellations and future habitats.
Funding
Funding not disclosed
Founders
Product
Problem
Deploying large orbital structures such as solar power arrays or habitats requires multiple heavy launch segments and extensive on‑orbit construction, driving up mission cost and complexity. Current assembly methods rely on limited manual operations and bespoke hardware, restricting scalability and increasing risk for satellite constellations and future space habitats.
Solution
Moliri provides a suite of large‑scale space infrastructure services that combine modular end‑effector tools with automated in‑space assembly capabilities. By delivering standardized, reusable components that can be assembled autonomously in orbit, Moliri reduces the total launch mass needed for complex structures. Its in‑space assembly platform enables the construction of space solar‑power systems that capture sunlight and beam energy to Earth or other platforms, supporting continuous power for satellite constellations and emerging habitats. The integrated approach lowers operational costs, shortens deployment timelines, and enhances the reliability of large orbital assets.
Target Audience
Primary customers are satellite operators, space agencies, and commercial developers of orbital habitats or large‑scale space infrastructure projects seeking cost‑effective deployment and maintenance solutions.
Features
- Modular end‑effector tools designed for robotic manipulation and precise docking of large structural elements in orbit
- Automated in‑space assembly processes that minimize human intervention and enable scalable construction of megastructures
- Space solar‑power system architecture that captures solar energy and transmits it via microwave or laser to ground stations or other space platforms
- Standardized interface specifications to reduce integration effort across different mission payloads
- Reusable component designs that lower launch mass and overall mission expenditure