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Description
The NVIDIA/Mellanox InfiniBand MCP7Y50-N0005 Cable is an 800Gb/s twin-port OSFP to 4x 200Gb/s OSFP passive Direct Attach Copper dual breakout cable. The 8-channel twin-port OSFP end uses a finned top form-factor for use in Quantum-2 and Spectrum-4 switch cages. The two 400G ends support 4-channels of 100G-PAM4 (400G) This cable is compliant with OSFP MSA (Multi-Source Agreement), CMIS Rev 4.0, and IEEE 802.3ck standards. DACs offer the lowest latency, so are widely used in data centers to connect servers and GPU compute systems to the top-of-rack (TOR) switches and link spine-to-super-spine switches inside racks over short cable lengths. DACs are also used to create InfiniBand storage fabrics with hard-disk-drive (HDD) and flash memory subsystems. Featuring a simple design and minimal components, DAC cables offer the lowest-cost, lowest-latency, and near-zero-power connections for high-speed links. They enhance port bandwidth, density, configurability, and reduce power requirements in supercomputers and hyperscale systems.
0.5m (2ft) NVIDIA/Mellanox MCP7Y50-N0005 Compatible 800G OSFP 8 x 100G PAM4 Finned Top to 4 x 200G OSFP 2 x 100G PAM4 Finned Top InfiniBand NDR Passive Direct Attach Copper Breakout Cable for Quantum-2 Switches
Dhs. 1,023.93
Sale price
Dhs. 1,023.93
Regular price
Dhs. 1,433.50
The NVIDIA/Mellanox InfiniBand MCP7Y50-N0005 Cable is an 800Gb/s twin-port OSFP to 4x 200Gb/s OSFP passive Direct Attach Copper dual breakout cable. The 8-channel twin-port OSFP end uses a finned top form-factor for use in Quantum-2 and Spectrum-4 switch cages. The two 400G ends support 4-channels of 100G-PAM4 (400G) This cable is compliant with OSFP MSA (Multi-Source Agreement), CMIS Rev 4.0, and IEEE 802.3ck standards. DACs offer the lowest latency, so are widely used in data centers to connect servers and GPU compute systems to the top-of-rack (TOR) switches and link spine-to-super-spine switches inside racks over short cable lengths. DACs are also used to create InfiniBand storage fabrics with hard-disk-drive (HDD) and flash memory subsystems. Featuring a simple design and minimal components, DAC cables offer the lowest-cost, lowest-latency, and near-zero-power connections for high-speed links. They enhance port bandwidth, density, configurability, and reduce power requirements in supercomputers and hyperscale systems.