Compare Products
Hide
VS
It supports Ruijie intelligent computing solution technologies including Remote Dynamic Load Balancing (RDLB), Global Dynamic Load Balancing (GDLB) and End-to-Network Load Balancing (ENLB), to improve bandwidth utilization in AIGC intelligent computing scenarios, reduce AI training time, and meet the network deployment requirements of AI and machine learning, high-performance computing, distributed storage, and big data applications.
4 RU, 128 x 400GE ports, 2 x 10GE ports
RG-S6990-64OC2XSAIGC, 800GE, one-click RoCE deployment
Hardware Specifications
| Item |
RG-S6990-64OC2XS |
| Dimensions (W x D x H) |
440 mm x 760 mm x 86.1 mm (17.32 in. x 29.92 in. x 3.39 in.) |
| Height |
2 RU |
| Weight |
26 kg (57.32 lbs.) (A chassis installed with two power modules and four fan modules) |
| Switching Capacity |
102.4 Tbps |
| Packet Forwarding Rate |
21000 Mpps |
| Service Port |
64 x 800G OSFP ports, each supporting 1-to-2 or 1-to-4 breakout 2 x 1G/10G/25G SFP28 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 |
2 x power module slots 4 x fan module slots |
| Power Consumption |
Maximum power consumption: 2814 W Typical power consumption: 2010 W Static power consumption: 352 W |
| Power input |
PA3000I-F (AC input) Rated input voltage: 100 V AC to 240 V AC, 50 Hz/60 Hz Maximum input voltage: 90 V AC to 264 V AC, 47 Hz to 63 Hz Rated input current: 16 A (100 V AC to 240 V AC) Power connector: C20
PA3000I-F (HVDC input) Rated input voltage: 240 V DC Maximum input voltage: 180 V DC to 320 V DC Rated input current: 16 A Power connector: C20 |
| 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 1800 m (5,905.51 ft.) to 3000 m (9,842.52 ft.), the maximum temperature decreases by 1°C (1.8°F) for every 220 m (721.787 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: ≤ 3000 m (9,842.52 ft.) Storage altitude: ≤ 5000 m (16,404.20 ft.) |
| Cooling |
Air cooling, front-to-rear airflow (port-side intake) |
Software Specifications
| Item |
RG-S6990-64OC2XS |
| 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 (ND), 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 AI ECN ECN overlay RALB, AILB, End-to-Network Load Balance (ENLB) |
| Visualization |
Telemetry INT sFLOW/IPFIX |
| 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 availability |
GR for RIP/OSPF/BGP, BFD, Device Link Detection Protocol (DLDP), Rapid Ethernet Uplink Protection Protocol (REUP), Rapid Link Detection Protocol (RLDP), 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 login 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 |
Chassis, Fan Modules, and Power Modules
| Model |
Description |
| RG-S6990-64OC2XS |
Fixed 64 x 800GE ports, 2 x 10GE ports, two power module slots, and four fan module slots. |
| RG-S6990-64OC2XS-X |
Fixed 64 x 800GE ports, 2 x 10GE ports, two power module slots, and four fan module slots, equipped with high-performance CPUs. |
| PA3000I-F |
Power module, hot-swappable, 1+1 redundancy, front-to-rear airflow |
| FAN80-02-F |
Fan module, hot-swappable, 3+1 redundancy, front-to-rear airflow |
800GE Optical Transceivers
| Model |
Description |
| 800G-OSFP-DR8-L |
800G DR8 LPO optical transceiver, OSFP form factor, MPO16/APC, 1310 nm, up to 500 m (1,640.42 ft.) transmission distance |
| 800G-OSFP-2DR4-L |
800G 2DR4 LPO optical transceiver, OSFP form factor, Dual-MPO12/APC, 1310 nm, up to 500 m (1,640.42 ft.) transmission distance |
| 800G-OSFP-DR8-SM1310 |
800G DR8 optical transceiver, OSFP form factor, MPO16/APC, 1310 nm, up to 500 m (1,640.42 ft.) transmission distance |
| 800G-OSFP-VR8-MM850 |
800G VR8 optical transceiver, OSFP form factor, MPO16/APC, 850 nm, up to 50 m (164.04 ft.) transmission distance for OM4 and 30 m (98.43 ft.) transmission distance for OM3 |
| 800G-OSFP-2VR4-MM850 |
800G 2VR4 optical transceiver, OSFP form factor, dual-MPO12/APC, 850 nm, up to 50 m (164.04 ft.) transmission distance for OM4 and 30 m (98.43 ft.) transmission distance for OM3 |
| 800G-OSFP-2DR4-SM1310 |
800G 2DR4 optical transceiver, OSFP form factor, dual-MPO12/APC, 1310 nm, up to 500 m (1,640.42 ft.) transmission distance |
10GE Optical Transceivers
| Model |
Description |
| XG-SFP-AOC1M |
10GE Active Optical Cable (AOC), SFP+ form factor, 1 m (3.28 ft.) |
| XG-SFP-AOC3M |
10GE AOC, SFP+ form factor, 3 m (9.84 ft.) |
| XG-SFP-AOC5M |
10GE AOC, SFP+ form factor, 5 m (16.40 ft.) |
| XG-SFP-LR-SM1310 |
10GE LR optical transceiver, SFP+ form factor, Duplex LC, 1310 nm, 10 km (32,808.40 ft.) over single-mode fiber (SMF) |
| XG-SFP-iLR-SM1310-I |
10GE LR optical transceiver, SFP+ form factor, Duplex LC, 1310 nm, 1.4 km (4,593.18 ft.) over SMF |
| XG-LR-SM1310 |
10G LR optical transceiver, SFP+ form factor, Duplex LC, 1310 nm, 10 km (32,808.40 ft.) over SMF |
| XG-SR-MM850 |
10G SR optical transceiver, SFP+ form factor, Duplex LC, 850 nm, 300 m (984.25 ft) over multimode fiber (MMF) |
| XG-SFP-ER-SM1550 |
10G ER optical transceiver, SFP+ form factor, Duplex LC, 1550 nm, 40 km (131,233.60 ft.) over SMF |
| XG-SFP-ZR-SM1550 |
10G ZR optical transceiver, SFP+ form factor, Duplex LC, 1550 nm, 80 km (262,467.19 ft.) over SMF |
| XG-SFP-LR10-SM1270-BIDI-I |
10G LR optical transceiver, SFP+ form factor, BIDI LC, 1270 nm, 10 km (32,808.40 ft.) over SMF |
| XG-SFP-LR10-SM1330-BIDI-I |
10G LR optical transceiver, SFP+ form factor, BIDI LC, 1330 nm, 10 km (32,808.40 ft.) over SMF |
1GE Optical Transceivers
| Model |
Description |
| MINI-GBIC-SX-MM850 |
1G SR optical transceiver, SFP form factor, Duplex LC, 850 nm, 550 m (1,804.46 ft.) over MMF |
| MINI-GBIC-LX-SM1310 |
1G LX optical transceiver, SFP form factor, Duplex LC, 1310 nm, 10 km ( 32,808.40 ft.) over SMF |
| MINI-GBIC-LH40-SM1310 |
1G LH optical transceiver, SFP form factor, Duplex LC, 1310 nm, 40 km ( 131,233.60 ft.) over SMF |
| GE-SFP-LX20-SM1550-BIDI |
1G LX optical transceiver, SFP form factor, BIDI LC, 1550 nm, 20 km (65,616.80 ft.) over SMF |
| GE-SFP-LX20-SM1310-BIDI |
1G LX optical transceiver, SFP form factor, BIDI LC, 1310 nm, 20 km (65,616.80 ft.) over SMF |
| GE-SFP-LX03-SM1550-BIDI-I |
1G LX optical transceiver, SFP form factor, BIDI LC, 1550 nm, 3 km (9,842.52 ft.) over SMF |
| GE-SFP-LX03-SM1310-BIDI-I |
1G LX optical transceiver, SFP form factor, BIDI LC, 1310 nm, 3 km (9,842.52 ft.) over SMF |
| GE-SFP-LH40-SM1550-BIDI |
1G LH optical transceiver, SFP form factor, BIDI LC, 1550 nm, 40 km (131,233.60 ft.) over SMF |
| GE-SFP-LH40-SM1310-BIDI |
1G LH optical transceiver, SFP form factor, BIDI LC, 1310 nm, 40 km (131,233.60 ft.) over SMF |
| MINI-GBIC-ZX80-SM1550 |
1G ZX optical transceiver, SFP form factor, Duplex LC, 1550 nm, 80 km ( 262,467.19 ft.) over SMF |
Ruijie Networks websites use cookies to deliver and improve the website experience.
See our cookie policy for further details on how we use cookies and how to change your cookie settings.
Cookie Manager
When you visit any website, the website will store or retrieve the information on your browser. This process is mostly in the form of cookies. Such information may involve your personal information, preferences or equipment, and is mainly used to enable the website to provide services in accordance with your expectations. Such information usually does not directly identify your personal information, but it can provide you with a more personalized network experience. We fully respect your privacy, so you can choose not to allow certain types of cookies. You only need to click on the names of different cookie categories to learn more and change the default settings. However, blocking certain types of cookies may affect your website experience and the services we can provide you.
Through this type of cookie, we can count website visits and traffic sources in order to evaluate and improve the performance of our website. This type of cookie can also help us understand the popularity of the page and the activity of visitors on the site. All information collected by such cookies will be aggregated to ensure the anonymity of the information. If you do not allow such cookies, we will have no way of knowing when you visited our website, and we will not be able to monitor website performance.
This type of cookie is necessary for the normal operation of the website and cannot be turned off in our system. Usually, they are only set for the actions you do, which are equivalent to service requests, such as setting your privacy preferences, logging in, or filling out forms. You can set your browser to block or remind you of such cookies, but certain functions of the website will not be available. Such cookies do not store any personally identifiable information.
Contact Us
How can we help you?