Reliable Live Video Meets Efficient Processing

Learn how Zixi Broadcaster, ZEN Master, and NETINT VPUs create Reliable Live Video workflows with scalable transcoding, monitoring, and failover.
Brazil’s DTV Plus: How TV 3.0 Is Driving LCEVC Adoption

Brazil’s DTV Plus rollout gave LCEVC something new video technologies rarely get: a commercial reason for the whole device ecosystem to support it.
From Capture to Compute: Advantech’s Vision for the Future of Broadcast

Explore how Advantech is shaping the future of broadcast with AI, edge computing, VPUs, and scalable video infrastructure for modern media workflows.
Recommission Old Servers: Your video encoding capacity is in your warehouse

Expanding video encoding capacity may not require new servers. Adding VPUs to existing hardware recovers dense capacity in a constrained supply market.
The C-Band Transition Is Finished. The Video Infrastructure Work Is Not.

The C-Band transition is finished, but the IP video work is not. How spectrum policy became an infrastructure challenge solved at the edge with VPUs.
Building a Category in Plain Sight: A Decade Inside the Rise of the Video Processing Unit

A decade inside the rise of the video processing unit, from industry skepticism to Emmy recognition, and how the VPU reshaped streaming infrastructure.
The Encoding Industry Just Changed its Mind About Everything

The 2026 State of Video Encoding Report draws on 286 professionals to reveal how codec, hardware, and cost decisions are reshaping streaming infrastructure.
When Milliseconds Define the Experience

How TMPS and Misao Network used NETINT VPUs to deliver ultra-low-latency 8K video over WebRTC, proving real-time 8K streaming is achievable today.
When Standards Become Strategy

MPEG-5 LCEVC enhances existing codecs instead of replacing them. How V-Nova’s approach rewrites the economics of video quality and compression.
The Architecture Beneath the Accelerator

VPU system architecture determines whether accelerator-dense video infrastructure delivers sustained performance across PCIe, power, and thermal limits.