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Vendor:NVIDIA
NVIDIA MCP7Y50-N002-FLT | IB NDR 800G to 4x200G splitter DAC, OSFP to 4xOSFP, passive copper, 2m, flat-top
MCP7Y50-N002-FLT
Vendor:NVIDIANVIDIA MCP7Y50-N002-FLT | IB NDR 800G to 4x200G splitter DAC, OSFP to 4xOSFP, passive copper, 2m, flat-top
Passive OSFP-to-4xOSFP DAC breakout for InfiniBand NDR with a flat-top OSFP head to improve clearance and airflow in high-density chassis. Converts one twin-port 800Gb/s NDR interface into four 200Gb/s links for efficient fan-out without optics or power. Ideal for short-reach HPC and data center fabrics. -
Vendor:NVIDIA
NVIDIA MCP7Y50-N002 | IB NDR 800G to 4x200G splitter DAC, OSFP to 4xOSFP, passive copper, 2m
MCP7Y50-N002
Vendor:NVIDIANVIDIA MCP7Y50-N002 | IB NDR 800G to 4x200G splitter DAC, OSFP to 4xOSFP, passive copper, 2m
Passive OSFP-to-4xOSFP direct-attach copper breakout for InfiniBand NDR fabrics. Converts one twin-port 800Gb/s NDR interface into four 200Gb/s links for high-density switch/adapter fan-out with ultra-low latency and no optics or power. Ideal for short-reach HPC and leafāspine deployments. -
Vendor:NVIDIA
NVIDIA MCP7Y50-N001-FLT | DAC breakout | IB NDR 800Gā4x200G | OSFP (flatātop)ā4xOSFP | passive copper | 1m
MCP7Y50-N001-FLT
Vendor:NVIDIANVIDIA MCP7Y50-N001-FLT | DAC breakout | IB NDR 800Gā4x200G | OSFP (flatātop)ā4xOSFP | passive copper | 1m
Passive copper DAC breakout with flatātop OSFP on the 800G root side for improved clearance in dense cages, fanning out to four 200G OSFP endpoints. Delivers zeroāpower, ultraālow latency links for shortāreach, inārack wiring in HPC/AI deployments. Ideal for NDR switch or adapter fanāout directly to OSFP 200G hosts. Length: 1 m. -
Vendor:NVIDIA
NVIDIA MCP7Y50-N001 | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xOSFP | passive copper | 1m
MCP7Y50-N001
Vendor:NVIDIANVIDIA MCP7Y50-N001 | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xOSFP | passive copper | 1m
Passive copper DAC breakout that fans out an InfiniBand NDR 800G twināport OSFP to four 200G OSFP endpoints. Provides zeroāpower, ultraālow latency connectivity for shortāreach, inārack wiring in HPC/AI clusters. Suited for fanāout from NDR switches or adapters directly to OSFP 200G hosts. Length: 1 m. -
Vendor:NVIDIA
NVIDIA MCP7Y40-N02A | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xQSFP112 | passive copper | 2.5m
MCP7Y40-N02A
Vendor:NVIDIANVIDIA MCP7Y40-N02A | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xQSFP112 | passive copper | 2.5m
Passive copper DAC breakout connecting an InfiniBand NDR 800G twināport OSFP to four 200G endpoints via QSFP112. Zeroāpower, ultraālow latency, and ideal for shortāreach fanāouts in dense racks where simple, reliable cabling is essential. Tailored for HPC/AI deployments using NDR/NDR200 ports. Length: 2.5 m. -
Vendor:NVIDIA
NVIDIA MCP7Y40-N01A | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xQSFP112 | passive copper | 1.5m
MCP7Y40-N01A
Vendor:NVIDIANVIDIA MCP7Y40-N01A | DAC breakout | IB NDR 800Gā4x200G | OSFPā4xQSFP112 | passive copper | 1.5m
Passive copper DAC breakout connecting an InfiniBand NDR 800G twināport OSFP to four 200G endpoints via QSFP112. Delivers zeroāpower, ultraālow latency performance for shortāreach, inārack fanāouts from NDR switches or adapters to NDR200 ports. Purposeābuilt for dense HPC fabrics and AI clusters where minimal latency and simple deployment matter. Length: 1.5 m. -
Vendor:NVIDIA
NVIDIA MCP7Y40-N003 | 800G NDR OSFP to 4x200G QSFP112 DAC, passive copper, 3m, breakout 1:4, InfiniBand, 112G PAM4 lanes, reach 3m, connectors: OSFP | QSFP112
Passive copper splitter DAC engineered for InfiniBand NDR fanout from one 800G OSFP host to four 200G QSFP112 branches. Supports short-reach links up to 3 meters with ultra-low latency and zero power, ideal for dense data center fabrics. -
Vendor:NVIDIA
NVIDIA MCP7Y40-N002 | 800G NDR OSFP to 4x200G QSFP112 DAC, passive copper, 2m, breakout 1:4, InfiniBand, 112G PAM4 lanes, reach 2m, connectors: OSFP | QSFP112
Passive copper splitter DAC for InfiniBand NDR fanout, converting a single 800G OSFP port into four 200G QSFP112 branches. Suited for short-reach, in-rack and row deployments up to 2 meters with ultra-low latency and zero power consumption. -
Vendor:NVIDIA
NVIDIA MCP7Y40-N001 | 800G NDR OSFP to 4x200G QSFP112 DAC, passive copper, 1m, breakout 1:4, InfiniBand, 112G PAM4 lanes, reach 1m, connectors: OSFP | QSFP112
High-density passive copper splitter DAC for InfiniBand NDR, breaking a single 800G OSFP port into four 200G QSFP112 branches for NDR200 endpoints. Ideal for top-of-rack fanout and short in-rack connections up to 1 meter with ultra-low latency and zero power. -
Vendor:NVIDIA
NVIDIA MCP7Y10-N02A | 800G NDR OSFP to 2x400G QSFP112 DAC, passive copper, 2.5m, breakout 1:2, InfiniBand, 112G PAM4 lanes, reach 2.5m, connectors: OSFP | QSFP112
High-performance passive copper breakout DAC for InfiniBand NDR fabrics. Fan out a single 800G OSFP port into two 400G QSFP112 branches to connect NDR switches or HCAs to NDR400 endpoints with ultra-low latency and zero power draw. Ideal for short-reach, high-density leaf/spine or HCA-to-switch interconnects up to 2.5 meters. -
Vendor:NVIDIA
NVIDIA MCP7Y10-N01A | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 1.5m
MCP7Y10-N01A
Vendor:NVIDIANVIDIA MCP7Y10-N01A | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 1.5m
Passive twinax breakout DAC that splits a single 800G NDR OSFP port into two 400G NDR QSFP112 links for lowālatency intraārack connections. The 1.5m length balances reach and cable management, with passive, powerāfree operation and accurate lane mapping. Ideal for switchātoāadapter breakouts in highādensity deployments. -
Vendor:NVIDIA
NVIDIA MCP7Y10-N003 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 3m
MCP7Y10-N003
Vendor:NVIDIANVIDIA MCP7Y10-N003 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 3m
Passive copper breakout DAC that converts one 800G NDR OSFP port into two 400G NDR QSFP112 links. Provides lowālatency, shortāreach connectivity for switch and adapter breakouts at 3m length with precise lane mapping and no power consumption. Ideal for structured intraārack routing in HPC/AI fabrics. -
Vendor:NVIDIA
NVIDIA MCP7Y10-N002 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 2m
MCP7Y10-N002
Vendor:NVIDIANVIDIA MCP7Y10-N002 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 2m
Passive copper breakout DAC that splits a single 800G NDR OSFP port into two independent 400G NDR QSFP112 links for highādensity, lowālatency intraārack connectivity. Designed for shortāreach, powerāfree deployment with precise 8ālane to 2x 4ālane PAM4 mapping. Ideal for HPC and AI fabric breakouts at 2m length. -
Vendor:NVIDIA
NVIDIA MCP7Y10-N001 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 1m
MCP7Y10-N001
Vendor:NVIDIANVIDIA MCP7Y10-N001 | Passive DAC splitter | OSFP to 2x QSFP112 | IB NDR 800G->2x400G | 1m
High-performance passive copper breakout DAC that splits one 800G NDR OSFP port into two independent 400G NDR QSFP112 links for ultraālowālatency, shortāreach intraārack connectivity. Zeroāpower, plugāandāplay operation with precise lane mapping (8ālane OSFP to 2x 4ālane QSFP112). Ideal for switch-to-adapter or switch-to-switch breakouts in dense HPC fabrics. -
Vendor:NVIDIA
NVIDIA MCP7Y00-N02A | IB NDR 800G OSFP-to-2xOSFP passive DAC splitter, 2x400G breakout, 2.5m reach
MCP7Y00-N02A
Vendor:NVIDIANVIDIA MCP7Y00-N02A | IB NDR 800G OSFP-to-2xOSFP passive DAC splitter, 2x400G breakout, 2.5m reach
Passive DAC Y-splitter that converts one 800G OSFP twin-port into two 400G OSFP links for InfiniBand NDR fabrics. Balanced length for flexible rack layouts while maintaining low latency and power compared to optics. -
Vendor:NVIDIA
NVIDIA MCP7Y00-N01A-FLT | IB NDR 800G OSFP-to-2xOSFP passive DAC splitter (flat-top), 2x400G breakout, 1.5m reach
MCP7Y00-N01A-FLT
Vendor:NVIDIANVIDIA MCP7Y00-N01A-FLT | IB NDR 800G OSFP-to-2xOSFP passive DAC splitter (flat-top), 2x400G breakout, 1.5m reach
Flat-top OSFP passive DAC Y-splitter for InfiniBand NDR environments, breaking one 800G OSFP twin-port into two 400G OSFP links. The flat-top mechanical variant offers improved clearance under adjacent slots or airflow guides while preserving the same electrical performance.
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