48 × 10/25GbE SFP28 ports + 12 × 100GbE QSFP28 ports
Delivers up to 2.4Tbps switching capacity and 3.58Bpps
Ideal for leaf, spine, and super-spine topologies
Perfect for cloud-scale, hyperscale, and SDN environments
Supports advanced telemetry and real-time visibility
SDN-ready with consistent low-latency architecture
Energy-efficient 1U rack-mount design
Seamless server and uplink connectivity
The NVIDIA Spectrum SN3420 is a next-generation Top-of-Rack (ToR) switch designed to meet the growing demands of modern data centers, cloud infrastructure, and enterprise networking environments.
As part of the Spectrum SN3000 Series, the SN3420 combines exceptional bandwidth, advanced software-defined networking (SDN) support, and rich telemetry capabilities in a compact and cost-efficient 1U chassis.
With 48 ports of 10/25GbE SFP28 and 12 ports of 40/100GbE QSFP28, the SN3420 provides unmatched flexibility and scalability for a wide range of applications from traditional enterprise data centers to hyperconverged and cloud-native deployments.
Whether you’re upgrading from 10GbE infrastructure or building a high-speed leaf-spine architecture, the SN3420 delivers the performance, efficiency, and future-proof design your network needs.
One of the most compelling features of the SN3420 is its port versatility and bandwidth capabilities.
The 48 SFP28 ports support both 10GbE and 25GbE speeds, allowing for gradual upgrades from legacy 10G infrastructure to 25G without replacing the entire network fabric.
This dual-speed capability is a cost-effective solution for organizations planning for future expansion.
The 12 QSFP28 ports offer flexible uplink options supporting 40GbE and 100GbE speeds. These ports can also be used in splitter mode for additional connectivity options.
With up to 2.4 terabits per second of switching throughput, the SN3420 supports non-blocking, line-rate performance across all ports, ensuring zero bottlenecks even under full load.
This switch enables seamless communication between servers, storage, and aggregation layers, making it ideal for spine-leaf topologies, hybrid cloud environments, and software-defined data centers.
The SN3420 is purpose-built for leaf/spine/super-spine deployments, supporting flexible port speeds and topologies.
Its high-density design allows full rack connectivity to servers at 10GbE or 25GbE, while the 100GbE uplinks provide scalable backbone connections to spine switches or aggregation layers.
This makes the SN3420 a natural fit for environments requiring:
In today’s networked world, visibility is just as important as performance.
The NVIDIA SN3420 integrates rich telemetry features that provide deep insight into traffic patterns, port utilization, latency metrics, and congestion points.
Using streaming telemetry, operators can proactively identify anomalies, enforce policies, and optimize traffic flows in real-time.
This granular visibility is crucial for ensuring application performance, meeting SLAs, and improving overall operational efficiency.
Additionally, the SN3420 supports hardware-based traffic monitoring and flow tracking to provide accurate and low-latency data for network analytics tools.
The SN3420 switch supports a variety of open network operating systems, offering unparalleled flexibility for data center operators:
These OS options allow organizations to tailor the SN3420 to their existing software environments and leverage modern DevOps workflows.
As networks continue to evolve toward automation and virtualization, the SN3420 supports a rich suite of SDN capabilities, including:
These features enable dynamic network provisioning, load balancing, and traffic engineering—all critical in cloud-scale environments.
Despite its powerful specifications, the SN3420 fits neatly into a standard 1U rackmount, optimizing space without sacrificing performance.
Designed with hot-swappable redundant power supplies and front-to-back/back-to-front airflow options, it ensures continuous operation and thermal efficiency in dense server environments.
In high-availability deployments, SN3420 switches support industry-standard high availability protocols, including MLAG, VRRP, and BFD, offering the resiliency that mission-critical networks demand.
Energy costs and operational efficiency are top concerns in today’s data centers.
The SN3420 is engineered for low power consumption per port, delivering exceptional performance-per-watt.
Its efficient architecture reduces cooling requirements, which helps lower total cost of ownership (TCO) without compromising performance or scalability.
This efficiency, combined with support for evolving technologies like 25G and 100G, makes the SN3420 a future-ready investment that grows with your infrastructure.
|
SKU |
OPN |
Port Configuration |
Interface |
Data Rate |
|
920-9N213-00F7-0C0 |
MSN3420-CB2FC |
48x 25GbE SFP28 + 12x 100GbE QSFP28 |
QSFP28 and SFP28 |
100GbE |
|
920-9N213-00R7-0C0 |
MSN3420-CB2RC |
48x 25GbE SFP28 + 12x 100GbE QSFP28 |
QSFP28 and SFP28 |
100GbE |
Both models offer the same high-performance architecture and interface compatibility. Selection typically depends on power supply and airflow direction preferences.
The NVIDIA Spectrum SN3420 is more than just a switch it’s a strategic investment in the future of your data center.
With its flexible port speeds, high-density design, software-defined networking features, and rich telemetry capabilities, the SN3420 enables businesses to scale, adapt, and thrive in an ever-evolving digital landscape.
Whether you’re modernizing an enterprise data center or building a next-generation cloud architecture, the SN3420 gives you the performance and reliability you need today and tomorrow.
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The NVIDIA Quantum-X800 platform is the next generation of NVIDIA Quantum InfiniBand, purpose-built for trillion-parameter-scale AI models and comprised of the NVIDIA Quantum-X800 InfiniBand switch, NVIDIA ConnectX®-8 SuperNIC, and LinkX cables and transceivers.
The new platform supports advanced hardware-based, In-Network Computing with Scalable Hierarchical Aggregate Reduction Protocol (SHARP)™ v4, adaptive routing, and telemetry-based congestion control, enabling a new frontier of AI innovation.
The NVIDIA Quantum-X800 InfiniBand switch provides 144 ports of 800Gb/s connectivity per port. It includes hardware-based In-Network Computing with SHARP v4, adaptive routing, telemetry-based congestion control, performance isolation capabilities, and a dedicated port supporting the Unified Fabric Manager (UFM). NVIDIA Quantum-X800 switches also add advanced power-efficiency features, including low-power link state and power profiling.
The NVIDIA Quantum-X800 switch provides increased performance and power efficiency to significantly reduce scientific computing, AI workload completion time, and energy costs.
Quantum-X silicon photonics switches further reduce total power consumption and latency by minimizing the distance and number of connections between optics and electronics.
The NVIDIA ConnectX-8 SuperNIC delivers 800Gb/s connectivity with ultra-low latency and supports the latest in advanced In-Network Computing. Based on the ConnectX architecture, it continues to provide accelerated MPI hardware engines, quality of service, adaptive routing, congestion control, and more.
The NVIDIA Quantum-X800 platform connectivity options with the NVIDIA LinkX® interconnect portfolio provide the maximum flexibility for building a preferred network topology, using connectorized transceivers with passive fiber cables and linear active copper cables (LACCs).
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