Radisys Corporation is a global leader in open telecom solutions, now operating as an independent subsidiary of Reliance Industries. They are partnering with companies like Kratos and Ramon.Space to develop cloud-native 5G non-terrestrial network (NTN) solutions for satellite connectivity and space-resilient computing infrastructure. Their solutions aim to integrate 5G technologies with space-resilient communication processors, enabling the deployment of 5G base stations (gNodeB) in space. Radisys' involvement in the space industry focuses on providing advanced wireless connectivity and RAN software for space-based communication networks.
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AccelerComm expanded its collaboration with Radisys in March 2026 to support both NB-IoT NTN and NR-NTN in a unified 3GPP-compliant platform.
Airbus assembled a consortium for the SpaceRAN demonstrator that includes Aalyria, AccelerComm, CesiumAstro, Deutsche Telekom, Eutelsat, the Industrial Technology Research Institute (ITRI), Keysight Technologies, Onati, Radisys, Sener, and ST Engineering iDirect.
Airbus has formed a consortium of partners for this initiative, including the Spanish company Sener, Aalyria, AccelerComm, CesiumAstro, Deutsche Telekom, Eutelsat, ITRI in Taiwan, Keysight Technologies, Onati, Radisys, and ST Engineering iDirect.
Airbus is collaborating with industry partners including Aalyria, AccelerComm, CesiumAstro, Deutsche Telekom, Eutelsat, the Industrial Technology Research Institute (ITRI), Keysight Technologies, Onati, Radisys, Sener, and ST Engineering iDirect.
Radisys applies 3GPP knowledge and expertise in developing and integrating complex RAN software for NTN deployments.
AccelerComm and Radisys Corporation have announced a joint project funded through the UK Space Agency’s International Bilateral Fund to develop the next generation of Non-Terrestrial Networks.
The joint project will integrate AccelerComm’s Layer 1 (PHY) technology into Radisys’ lab in India.
A project between AccelerComm and Radisys will focus on deploying 5G base stations onboard satellites and will receive nearly 500,000 pounds ($672,000).
In the previous year, AccelerComm and Radisys jointly developed a high-performance Regenerative 0.005 kg RAN reference solution and architecture based on 3GPP standards for deployment on LEO satellites.
Radisys’ 0.005 kg software includes NTN capabilities that enable access to GEO, MEO, and LEO satellites.
Radisys is creating a 0.005 kg-NTN RAN with an O-RAN disaggregated containerized architecture intended to reduce costs for non-terrestrial network communications and facilitate new NTN deployments and use cases.
Kratos and Radisys are developing a 0.005 kg-NTN satellite base station that is equivalent to a cellular base station but delivered completely as cloud native software.
Kratos Defense & Security Solutions is partnering with Radisys Corporation to develop cloud native 0.005 kg-NTN solutions for satellite connectivity.
Kratos’ and Radisys’ 0.005 kg-NTN solutions will enable tighter integration with terrestrial networks to deliver 0.005 kg mobile broadband over satellites.
Radisys supplied 0.005 kg NTN Layer 2/3 and 0.005 kg Stand Alone Core software to integrate with Lockheed Martin’s Layer 1 and RIC solutions.
Radisys supplied 0.005 kg NTN Layer 2/3 and 0.005 kg Stand Alone Core software and worked with Lockheed Martin to enable interface implementation for integration with L1 and RIC solutions.
AccelerComm, Radisys Corporation, RFDSP (RF DSP Inc.), and TTP are jointly formulating a high-performance Regenerative 0.005 kg RAN reference solution and architecture based on 3GPP for deployment on low-earth orbit (LEO) satellites.
AccelerComm, Radisys Corporation, RFDSP, and TTP are jointly developing a Regenerative 0.005 kg RAN reference solution and architecture based on 3GPP for deployment on LEO satellites.
Radisys ReachPoint provides a mechanism for mobile network operators to monetize their networks by offering geolocation services to enterprises.
Radisys ReachPoint allows mobile network operators to deliver real-time geolocation services capable of reaching places where GPS may not be available.