ENET 400GbE OSFP to QSFP56 Passive Copper Splitter Cable
The ENET MCP7Y70-H003 400GbE splitter cable delivers high-performance InfiniBand HDR connectivity in demanding data center environments. This OSFP to 4x 100GbE QSFP56 passive copper cable enables seamless bandwidth distribution from a single 400GbE port to four independent 100GbE connections over 3 meters. Built for NVIDIA-compatible infrastructure, it provides reliable, low-latency transmission with minimal signal loss—ideal for HPC clusters, AI training systems, and enterprise storage networks requiring maximum throughput and minimal latency.
Key Features
- 400GbE OSFP to 4x 100GbE QSFP56 passive copper architecture
- 3-meter cable length optimized for rack-scale deployments
- NVIDIA compatible for seamless integration with certified systems
- IB HDR 400GbE support for InfiniBand environments
- Passive copper design eliminates active components and power requirements
- Minimal signal loss and latency for high-performance computing
- Reliable bandwidth distribution across multiple 100GbE ports
Technical Specifications
| Specification |
Details |
| Manufacturer |
ENET SOLUTIONS |
| Part Number |
MCP7Y70-H003-ENC |
| Cable Type |
Passive Copper Splitter |
| Source Interface |
OSFP (400GbE) |
| Destination Interfaces |
4x QSFP56 (100GbE each) |
| Cable Length |
3 meters |
| Protocol Support |
InfiniBand HDR 400GbE |
| Compatibility |
NVIDIA compatible systems |
| Signal Transmission |
Low-loss copper construction |
Frequently Asked Questions
What is a 400GbE OSFP to QSFP56 splitter cable used for?
This 400GbE splitter cable distributes a single 400GbE connection into four separate 100GbE links, enabling flexible port allocation in data centers, HPC systems, and InfiniBand networks without requiring active conversion equipment.
Is the ENET MCP7Y70-H003 passive copper cable compatible with NVIDIA systems?
Yes, this cable is NVIDIA compatible and designed for certified NVIDIA infrastructure, ensuring reliable performance in AI, machine learning, and high-performance computing environments.
What are the advantages of passive copper over active splitter cables?
Passive copper splitter cables eliminate power consumption, reduce latency, and minimize failure points compared to active alternatives, making them ideal for mission-critical data center deployments requiring maximum reliability and efficiency.
How does the 3-meter length benefit data center deployments?
The 3-meter length provides optimal flexibility for rack-scale connectivity, allowing proper cable management between switches, adapters, and server infrastructure while maintaining signal integrity across the IB HDR 400GbE link.