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NVIDIA

NVIDIA 980-9IAM5-00X01A | MCA4K50 | 1600G OSFP Active Copper Cable | Reach 1.5m | 1.6T Ethernet | Connector: OSFP‑to‑OSFP

SKU:980-9IAM5-00X01A

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Description

High‑density OSFP active copper cable engineered for ultra‑low‑latency 1.6T links inside AI and data center platforms. The fixed 1.5 m assembly with IHS‑to‑IHS terminations delivers robust signal integrity for short‑reach back‑to‑back connections while minimizing power and airflow impact in tightly packed OSFP cages.

Features

Ultra‑low‑latency 1.6T OSFP interconnect
- Active equalization for clean signal integrity
- Fixed 1.5 m length optimized for short‑reach links
- Secure latching and robust strain relief
- Designed for high‑density OSFP IHS deployments

Warranty

All products sold by XS Network Tech include a 12-month warranty on both new and used items. Our in-house technical team thoroughly tests used hardware prior to sale to ensure enterprise-grade reliability.

All technical data should be verified on the manufacturer data sheets.

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Technical Specifications

FAQs

Technical Specifications

Data rate: 1.6 Tbps (1600 Gbps) aggregate
- Form factor: OSFP
- Cable type: Active Copper Cable (ACC)
- Length: 1.5 meters
- Ends/connector style: OSFP IHS to OSFP IHS (In‑Heat‑Sink)
- Application: Short‑reach, high‑density intra‑rack/interconnect
- Protocol: Ethernet
- Breakout support: No (straight 1:1)
- Compliance: RoHS

FAQs

Q: What does IHS‑to‑IHS mean?
A: IHS (In‑Heat‑Sink) indicates OSFP modules designed to fit within a heat sink assembly; IHS‑to‑IHS means both ends are OSFP IHS connectors.

Q: Is this compatible with any OSFP port?
A: It is intended for 1.6T OSFP ports that support active copper cables. Check the host platform’s supported cable list for compatibility.

Q: How does ACC differ from DAC and AOC?
A: ACC is copper with active signal conditioning for improved reach/signal integrity over passive DAC while keeping lower latency and power than optical AOC.

Q: Can this cable be used for breakout applications?
A: No, this model is a straight 1:1 OSFP‑to‑OSFP assembly.

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