Cornelis Omni-Path Edge Switch 48-Port 100 Series
The Omni-Path Edge Switch 48-Port 100 Series is purpose-built for organizations deploying high-performance computing clusters and AI infrastructure requiring ultra-low latency and massive throughput. This 1U, 48-port 100 Gb/s non-blocking edge switch delivers 9.6 Tb/s aggregate throughput, making it ideal for HPC environments, machine learning workloads, and large-scale fabric deployments where network performance directly impacts computational efficiency.
With sub-110 ns post-protection switch latency, this Cornelis Networks switch minimizes packet delay across your cluster, enabling faster data movement between compute nodes and storage systems. Whether you're running distributed AI training, scientific simulations, or enterprise-scale analytics, the 100 Series provides the deterministic, high-bandwidth connectivity your infrastructure demands.
Key Features
- 48-port 100 Gb/s non-blocking architecture for maximum throughput
- 9.6 Tb/s aggregate switching capacity for demanding HPC and AI workloads
- Sub-110 ns post-protection latency for ultra-responsive cluster communication
- 1U compact form factor optimized for data center density
- Omni-Path fabric support for seamless integration with HPC ecosystems
- Highly optimized design for scalability in large cluster deployments
- Enterprise-grade reliability and performance monitoring
Technical Specifications
| Specification |
Details |
| Manufacturer |
Cornelis Networks |
| Part Number |
100SWE48URD |
| Product Type |
Edge Switch |
| Port Count |
48 ports |
| Port Speed |
100 Gb/s per port |
| Aggregate Throughput |
9.6 Tb/s |
| Switch Latency |
Sub-110 ns (post-protection) |
| Architecture |
Non-blocking |
| Form Factor |
1U rack-mount |
| Fabric Technology |
Omni-Path |
Frequently Asked Questions
What is the Omni-Path Edge Switch 48-Port 100 Series best used for?
The 100 Series is optimized for high-performance computing clusters, AI and machine learning infrastructure, scientific computing environments, and large-scale data center fabric deployments where low latency and high bandwidth are critical to performance.
How does sub-110 ns latency benefit my HPC environment?
Ultra-low latency reduces packet transmission delays between compute nodes, enabling faster inter-node communication, quicker data synchronization, and improved overall cluster efficiency—especially important for tightly-coupled parallel workloads and real-time analytics.
Can the 48-port 100 Gb/s switch handle non-blocking traffic?
Yes. The non-blocking architecture ensures that all 48 ports can simultaneously transmit at full 100 Gb/s line rate without congestion, delivering the full 9.6 Tb/s aggregate throughput for demanding fabric and cluster applications.
Is the Cornelis Omni-Path Edge Switch compatible with existing HPC infrastructure?
The switch supports Omni-Path fabric technology, making it compatible with HPC systems and clusters already deployed on Omni-Path networks. Verify your specific infrastructure requirements with Cornelis Networks for seamless integration.