Matrox Video has announced an integration between Matrox Origin and Nvidia Holoscan for Media, enabling Origin media services to be provisioned, configured and deployed within the Holoscan for Media open reference architecture using Kubernetes.
The integration is being demonstrated at IBC 2026 as part of the European Broadcasting Union’s Dynamic Media Facility showcase.
Matrox Video has developed a Kubernetes-native operator that extends the Kubernetes control plane to understand and manage Matrox Origin resources. When new resources are added, the operator automatically deploys the required pods, supporting the provisioning, configuration and placement of media functions with appropriate resource limits and isolation.
The integration brings Kubernetes-native deployment capabilities together with the Matrox Origin SDK, which is designed to simplify the development of software-defined live media applications.
Nvidia Holoscan for Media is an open reference architecture and developer toolkit for building AI-powered media applications for software-defined live production on Nvidia-accelerated infrastructure.
Daniel Robinson, product manager at Matrox Video, said: “Developers shouldn’t have to solve the underlying complexities of live media processing every time they build a new application.”
Robinson added: “Matrox Origin provides the media foundation so they can focus on what differentiates their applications. Bringing those capabilities into Nvidia Holoscan for Media extends that developer experience into a Kubernetes-based environment for software-defined production.”
The implementation being shown at IBC includes Matrox Origin media processing services such as colour correction, media playback, audio shuffling and Ograf graphics.
These services connect to the wider DMF deployment using the Media eXchange Layer, with support for NMOS BCP-007-03 allowing MXL I/O services to register using IS-04 and receivers to be switched using IS-05.
IBC 2026 attendees can see the integration as part of the EBU’s DMF showcase on stand 10.D21.