Ramon.Space offers a platform of resilient space computing systems, including NuStream (Storage System), NuPod (Edge Compute System), and NuComm (Communication Processor), designed for advanced software applications in space.
Resilient Space Computing Systems (NuStream, NuPod, NuComm)
Ramon.Space offers a platform of resilient space computing systems, including NuStream (Storage System), NuPod (Edge Compute System), and NuComm (Communication Processor), designed for advanced software applications in space.
Description
Ramon.Space provides a suite of resilient space computing systems engineered to meet the demanding requirements of intelligent systems in space. These systems feature advanced computing, storage, and connectivity capabilities, built to withstand high radiation levels and extreme temperatures. The technology leverages in-house advanced IC integrated circuits and virtual radiation hardening, manufactured using standard high-volume processes, to create a new generation of Space COTS (commercial off-the-shelf) components. The platform is designed to transform satellites into software-based, smart, and autonomous systems. Key products include NuStream (Storage System), NuPod (Edge Compute System), and NuComm (Communication Processor). The architecture is modular and scalable, supporting in-orbit software upgrades and multi-layered radiation hardening. These systems are suitable for LEO, MEO, GEO, and deep space missions. They enable a wide range of applications, from essential data handling (store, process, connect) to advanced functionalities like real-time processing of images and sensing data, massive storage, and downlink transmission for remote sensing, Earth observation, and IoT. For communication constellations, they support regenerative and non-regenerative smart communication satellites, including channelizers, inter-satellite links, routing in space, digital beamforming, and beam hopping. The high-density space storage and high-performance computing capabilities also facilitate data networks, edge computing, container applications, and data compression, enabling autonomous operations and onboard analytics. Furthermore, these computing platforms power unique space exploration missions across the solar system, delivering unmatched performance under hostile space conditions.
Specifications
| Operating orbits | LEO, MEO, GEO and deep space |
|---|---|
| Core technology | Vertically integrated |
| Architecture | Modular and scalable |
| Software | In orbit SW upgrades |
| Storage | High-density |
| Radiation hardening | Multi-layered |