Ethernet 32P 400G Fabric Switch - NVIDIA SN4700

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VAST SKU: ETH-NVMEF-1X32-400G

NVIDIA OPN: NVIDIA SN4600

Configurations


Switch

Switch Speed

Ports

Connector

SN4700

400G

32

QSFP-DD

Specification


Switch

Switch:

  • SN4700

Supported Speeds:

  • 400G - 1/10/25/40/50/100/200/400GbE per port

Throughput:

  • 12.8Tb/s

CPU:

  • Intel x86 2.20GHz Quad Core

PCIe:

  • 4x Gen 3.0

Switch:

  • NVIDIA Spectrum®-3

Memory:

  • 16GB DDR4 RAM, 60G SSD

Environmental Data

Dimensions:

  • 1.72’’ x 16.85’’ x 22.3’’, 44mm (H) x 428mm (W) x 568.5mm (D)

Weight: 

  • 11.6Kg

Mounting:

  • 19” Rack mount

Airflow

  • C2P

Input Voltage:

  • 2x, 100Vac 15A, 110Vac 15A, 120Vac 12A, 200-240Vac 10A, 50/60Hz

  • Note: Two power cords are provided for each power supply unit in order to meet the electrical requirements of various regions. Make sure to use the cord that meets the power requirements of your country or region.

Power Consumption:

  • Global Power Consumption with passive Cables 650W

Temperature:

  • Operational: 0° to 35°C

  • Non-Operational: -40° to 70°C

Humidity:

  • Operational: 10% - 85% non-condensing

  • Non-Operational: 10% - 90% non-condensing

Altitude:

  • 3050m

Noise Level

  • 67.6dBA

Certifications

Safety /EMC

  • CB

  • cTUVus

  • CE

  • CU

  • S_Mark

  • FCC

  • VCCI

  • ICES

  • RCM

  • BSMI

  • KCC

  • CCC

RoHS:

  • RoHS compliant

Manufacturer Documentation


https://resources.nvidia.com/en-us-accelerated-networking-resource-library/br-sn4000-series-pdf

NVIDIA Spec Sheet: https://docs.nvidia.com/networking/display/nvidia-spectrum-3-sn4000-1u-and-2u-switch-systems-hardware-user-manual.pdf

Product Images


Front:

The image depicts a dual-width network switch model SN4700, featuring 32 gigabit Ethernet ports arranged in two rows with each port labeled numerically from 1 to 30 and an additional row labeled 31 through 36. The switch is designed for enhanced connectivity management within data centers or large-scale networks.

This device supports high-density networking capabilities by integrating multiple gigabit ports that facilitate efficient data transmission across various network segments while offering redundancy options for improved operational reliability.

Back:

The image depicts a sequence of frames showing an automated process where six identical server enclosures are being stacked vertically, starting from one enclosure on the left and ending with all six stacked in place on the right side. Each frame captures different stages in this automated stacking procedure, illustrating the precision and efficiency required in data center infrastructure assembly.