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RG-S6990-128QC2XS – 128-Port 400GE Fixed Switch for AIGC Intelligent Computing Networks

128 x 400GE ports and 2 x 10GE ports, RDLB and GDLB of the AI-Fabric solution to improve the bandwidth and shorten the AI training time in AIGC intelligent computing scenarios

Models
Highlight Features
  • High-density 400GE switch with 128 x 200GE/400GE QSFP112 ports housed in a 4-RU enclosure
  • Eliminating packet loss during E2E communication through RDMA, building high-performance and low-latency data center networks
  • Hardware-level redundancy, ensuring service continuity and preventing network downtime
  • Nanosecond-level hardware failover, mitigating the impact of network faults on services and securing network stability
  • AI-powered intelligent O&M, making management easy and efficient
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Features

RG-S6990-128QC2XS – 128-Port 400GE Data Center Fixed Switch

The high-speed and high-density core switch provides 128 x 400GE ports housed in a 4-RU enclosure,
delivering scalable, high-performance, and high-bandwidth services for large-scale DCI networks.

Ports

Dimensions

Eliminating Packet Loss During E2E Communication Through RDMA, Building High-Performance and Low-Latency Data Center Networks

PFC and ECN are leveraged to implement intelligent data exchange and eliminate packet loss. With the RDMA technology, data does not need to be handled by the CPU during device communication. This reduces the CPU load
and addresses network latency issues, ensuring lossless transmission of data. In addition, Remote Dynamic Load Balancing (RDLB) and Global Dynamic Load Balancing (GDLB) of the AI-Fabric solution solve the ECMP conflict caused by flow-based load balancing, improving the bandwidth and shortening the AI training time in AIGC intelligent computing scenarios.

Hardware-Level Redundancy, Ensuring Service Continuity and Preventing Network Downtime

Hot-Swappable Redundant Power Modules

Hot-Swappable Redundant Fan Modules

The switch supports 2+2 power redundancy, enables failover in seconds, and ensures network connectivity during power replacement. This provides dual protection for links.

AI-Powered Intelligent O&M
Making Management Easy and Efficient

The switch offers AI-powered automatic ECN tuning, real-time telemetry of key RoCE network metrics, visualization of endpoint status and RoCE services, along with congestion and packet loss analytics.

Specifications

Hardware Specifications

System Specifications

RG-S6990-128QC2XS

Switching capacity

102.4 Tbps

Packet forwarding rate

21,000 Mpps

Port Specifications

Service port

128 x 200GE/400GE QSFP112 ports

2 x 1GE/10GE SFP+ ports

Management port

1 x RJ45 console port

1 x RJ45 MGMT port

USB port

1 x USB 2.0 port (Type A connector)

Slot

Four power module slots

Five fan module slots

Dimensions and Weight

Dimensions

(W x D x H)

446 mm x 800 mm x 173.6 mm (17.56 in. x 31.5 in. x 6.84 in.)

Height

4 RU

Weight

Chassis only: 36.15 kg (79.7 lbs)

Fully system: 43 kg (94.8 lbs)

Mounting option

Rack-mount

Power Supply and Consumption

Power consumption

Max: 3180 W

Typical: 2339 W

Static: 434 W

Power input

RG-PA1600II-F (AC input)

Rated input voltage: 100 V AC to 127 V AC, 200 V AC to 240 V AC, 50/60 Hz

Maximum input voltage: 90 V AC to 140 V AC, 180 V AC to 264 V AC, 47 Hz to 63 Hz

Rated input current: 12 A (100 V AC to 127 V AC)

                                 9.5 A (200 V AC to 240 V AC)

Power connector: C14

 

RG-PA1600II-F (HVDC input)

Rated input voltage: 240 V DC

Maximum input voltage: 180 V DC to 300 V DC

Rated input current: 9.5 A

Power connector: C14

Environment and Reliability

Temperature

Operating temperature: 0°C to 40°C (32°F to 104°F)

Storage temperature: –40°C to +70°C (–40°F to +158°F)

Note: At altitudes ranging from 1,800 m (5,905.51 ft) to 5,000 m (16,404.20 ft), the maximum temperature decreases by 1°C (1.8°F) for every 200 m (656.17 ft) increase in elevation.

Humidity

Operating humidity: 10% RH to 90% RH (non-condensing)

Storage humidity: 5% RH to 95% RH (non-condensing)

Altitude

Operating altitude ≤ 5,000 m (16,404.20 ft)

Storage altitude ≤ 5,000 m (16,404.20 ft)

Cooling

Air cooling, front-to-rear airflow (port-side intake)

* indicates that the feature will be available in the future.


Software Specifications

Software Specifications

RG-S6990-128QC2XS

Layer 2 protocols

IEEE 802.3ae (10GBase), IEEE 802.3ak, IEEE 802.3an, IEEE 802.3x, IEEE 802.3ad (Link Aggregation Control Protocol), IEEE 802.1p, IEEE 802.1Q, IEEE 802.1D (STP), IEEE 802.1w (RSTP), IEEE 802.1s (MSTP), Jumbo Frame (9 KB)

Layer 3 protocols (IPv4)

BGP4, OSPFv2, RIPv1, RIPv2, LPM Routing, Policy-based Routing, Route-policy, ECMP, WCMP, VRRP

Basic IPv6 protocols

Neighbor Discovery, ICMPv6, Path MTU Discovery, DNSv6, DHCPv6, ICMPv6, ICMPv6 redirection, ACLv6, IPv6 TCP/UDP, SNMPv6, IPv6 Ping/Traceroute, IPv6 RADIUS, IPv6 Telnet/SSH, IPv6 FTP/TFTP, NTPv6, IPv6 MIB for SNMP, IPv6 VRRP, IPv6 QoS

IPv6 features

Static routing, ECMP, PBR, OSPFv3, RIPng, BGP4+

Data center features

VXLAN*, BGP-EVPN

RDMA

PFC, ECN

PFC deadlock prevention

AI-powered ECN*

ECN overlay*

RDLB, GDLB

Visualization

Telemetry

sFlow

QoS

IEEE 802.1p, DSCP, and ToS mapping
ACL-based traffic classification
Priority marking and re-marking
Multiple queue scheduling mechanisms, including SP, WRR, WFQ, DRR, SP+WRR, SP+WFQ, SP+DRR
Congestion avoidance mechanisms such as WRED and tail discarding

High redundancy design

GR for RIP/OSPF/BGP, BFD, DLDP, REUP, Rapid Link Detection Protocol (RLDP), 2 + 2 power redundancy, fan redundancy, and hot swapping of line cards and power modules

Security features

Network Foundation Protection Policy (NFPP), CPU Protection Policy (CPP), RADIUS/TACACS, IPv4/IPv6 packet filtering by basic ACL, extended ACL or VLAN-based ACL, cleartext and MD5-based authentication for OSPF, RIPv2, and BGPv4 packets, telnet from specified IP addresses, broadcast packet suppression, and hierarchical user management

Management mode

SNMP v1/v2c/v3, telnet, console, MGMT, RMON, SSHv1/v2, FTP/TFTP, NTP clock, Syslog, SPAN/RSPAN/ERSPAN, ZTP, NETCONF, Python, fan and power alarm, temperature alarm

Other protocols

DHCP Client, DHCP Relay, DHCP Server, DNS Client, ARP Proxy, and Syslog

* indicates that the feature will be available in the future.

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Learn about Products or Solutions
Order Information

Take the following steps to configure an RG-S6990-128QC2XS:

  • Select the chassis.
  • Select optical transceivers based on the port types and quantity required.

Models marked with asterisks (*) in the ordering information will be available in the future.

Chassis, Fan Modules, and Power Modules

Model

Description

RG-S6990-128QC2XS

Fixed 128 x 400GE ports, 2 x 10GE ports, four power module slots, and five fan module slots

RG-PA1600II-F

Power module, hot swappable 2 + 2 redundancy, front-to-rear airflow

FAN80-180F

Fan module, hot swappable 4 + 1 redundancy, front-to-rear airflow


1GE Optical Transceivers

Model

Description

GE-SFP-LX20-SM1550-BIDI

1GE LX transceiver, SFP form factor, BIDI LC, 1550 nm, 20 km (65,616.80 ft.) over SMF

GE-SFP-LX20-SM1310-BIDI

1GE LX transceiver, SFP form factor, BIDI LC, 1310 nm, 20 km (65,616.80 ft.) over SMF

GE-SFP-LX03-SM1550-BIDI-I

1GE LX transceiver, SFP form factor, BIDI LC, 1550 nm, 3 km (9,842.52 ft.) over SMF

GE-SFP-LX03-SM1310-BIDI-I

1GE LX transceiver, SFP form factor, BIDI LC, 1310 nm, 3 km (9,842.52 ft.) over SMF

GE-SFP-LH40-SM1550-BIDI

1GE LH transceiver, SFP form factor, BIDI LC, 1550 nm, 40 km (131,233.59 ft.) over SMF

GE-SFP-LH40-SM1310-BIDI

1GE LH transceiver, SFP form factor, BIDI LC, 1310 nm, 40 km (131,233.59 ft.) over SMF

MINI-GBIC-ZX80-SM1550

1GE ZX transceiver, SFP form factor, duplex LC, 1550 nm, 80 km ( 262,467.20 ft.) over SMF


10GE Optical Transceivers

Model

Description

XG-SFP-AOC5M

10GE AOC cable, SFP+ form factor, 5 m (16.40 ft.)

XG-SFP-LR-SM1310

10GE LR transceiver, SFP+ form factor, duplex LC, 1310 nm, 10 km (32,808.40 ft.) over SMF

XG-SFP-iLR-SM1310-I

10GE LR transceiver, SFP+ form factor, duplex LC, 1310 nm, 1.4 km (4,593.18 ft.) over SMF


100GE Optical Transceivers

Model

Description

100G-QSFP-ER4-SM1310

100GE ER4 transceiver, QSFP28 form factor, duplex LC, 1310 nm, 40 km (131,233.59 ft.) over SMF

100G-QSFP-iLR4-SM1310

100GE iLR4 transceiver, QSFP28 form factor, duplex LC, 1310 nm, 2 km (6,561.68 ft.) over SMF

100G-QSFP-LR4-SM1310

100GE LR4 transceiver, QSFP28 form factor, duplex LC, 1310 nm, 10 km (32,808.40 ft.) over SMF

100G-QSFP-SR-MM850

100GE SR transceiver, QSFP28 form factor, MPO, 850 nm, 100 m (328.08 ft.) over OM4 MMF


200GE Optical Transceivers

Model

Description

200G-Q56-SR4-MM850(D)

200GE SR4 transceiver, QSFP56 form factor, MPO12/APC, 850 nm, 100 m (328.08 ft.) over OM4 MPO MMF, CMIS-compliance

200G-Q56-SR4-MM850

200GE SR4 transceiver, QSFP56 form factor, MPO12/APC, 850 nm, 100 m (328.08 ft.) over OM4 MPO MMF, SFF-8636-compliance


400GE Optical Transceivers

Model

Description

400G-Q112-DR4-SM1310

400GE DR4 transceiver, QSFP112 form factor, MPO-12 APC, 1310 nm, 500 m (1,640.42 ft.) over SMF

400G-Q112-VR4-MM850

400GE VR4 transceiver, QSFP112 form factor, MPO-12 APC, 850 nm, 50 m (164.04 ft.) over OM4 MMF

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