Cornelis Omni-Path 30M Active Optical Cable QSFP-QSFP
The Cornelis Omni-Path 30M Active Optical Cable delivers high-speed, reliable connectivity for demanding data center and HPC environments. This QSFP-to-QSFP active optical cable provides extended reach up to 30 meters, making it ideal for enterprise networks requiring low-latency, high-bandwidth interconnections. Built for performance-critical applications, this cable ensures consistent signal integrity and reduced power consumption compared to traditional copper alternatives.
Key Features
- 30-meter active optical cable for extended reach connectivity
- QSFP-to-QSFP connector configuration for seamless integration
- High-speed data transmission with minimal signal degradation
- Low power consumption and reduced heat generation
- Omni-Path architecture support for HPC and data center deployments
- Durable optical design for reliable long-term performance
- Hot-pluggable connectors for easy installation and maintenance
Technical Specifications
| Specification |
Details |
| Manufacturer |
Cornelis Networks |
| Part Number |
100FEVP1000 |
| Cable Type |
Active Optical Cable (AOC) |
| Connector Type |
QSFP to QSFP |
| Cable Length |
30.0 Meters |
| Architecture |
Omni-Path |
| Application |
Data Center, HPC, High-Speed Interconnect |
| Signal Integrity |
Low-loss optical transmission |
Frequently Asked Questions
What is an active optical cable used for?
Active optical cables are used for high-speed data transmission over extended distances in data centers and HPC environments. They provide superior performance and lower power consumption compared to copper cables, making them ideal for demanding interconnect applications.
How does the 30-meter Omni-Path cable improve network performance?
The 30M active optical cable enables longer cable runs without signal degradation, allowing flexible network topology designs while maintaining high-speed connectivity and low latency critical for enterprise applications.
Is the Cornelis QSFP cable compatible with standard data center equipment?
Yes, the QSFP-to-QSFP connector configuration ensures compatibility with standard data center switches, servers, and storage systems supporting Omni-Path architecture and QSFP interfaces.
What are the advantages of optical over copper interconnect cables?
Optical cables offer greater bandwidth capacity, longer transmission distances, immunity to electromagnetic interference, lower power consumption, and reduced heat generation—essential benefits for modern high-performance computing environments.