Carrier Ethernet Data Plane Products

Xelerated products target Carrier Ethernet platforms for unified fiber access, metro Ethernet and core, as well as systems for deep packet packet processing.
Xelerated offers network processors (NPU) and programmable Ethernet switches for the Unified Fiber Access and Metro Ethernet markets. The chips support 10-100 Gbps with integrated packet processing, switching, Ethernet MAC and advanced traffic management for rich services at competitive price points.
All chips are based on Xelerated's unique Dataflow Architecture, which is wirespeed by design - all packets are guaranteed a number of classifications and operations under all conditions, packet sizes and services.
HX Family of NPUs targets platforms for Metro Ethernet, Service Edge and Cloud Computing
AX Family of Programmable Ethernet Switches targets platforms for Unified Fiber Access, Mobile Backhaul and Enterprise Backbone
X11 Family of NPUs targets Metro Ethernet and Unified Fiber Access platforms
X10 Family of NPUs targets Core platforms
Xelerated's data plane design solutions are centered around Xelerated's programmable packet processing chips. Feature-rich data plane software products and hardware reference design kits (RDKs) provide significant time-to-market benefits.
Data Plane Software
- Metro Ethernet Application (MEA)
- Unified Fiber Access Application (UFA)
Software Development Kit (SDK)
Reference Design Kit (RDK)
In addition, Xelerated provides know-how and offers professional services to systemize and develop data plane software and integrate board designs and software. The professional services offering ranges from training and maintenance services to customized development design projects. Training services are offered both as getting started packages and as advanced, customer-tailored courses.
Services
- Professional Services
- Basic Training
- Advanced Training
Key features
- Prolonged product lifetimes
- Customizable for system vendor differentiation
- Highest service density
- 'Line-card-on-a-chip'
- 'Switch-on-a-chip'