Compare Products
Hide
VS
M-LAG/VSU/de-stacking for higher availability, PFC/ECN-based lossless RDMA network with high performance
Hardware Specifications |
RG-S6250-48XS8CQ |
System |
|
Switching capacity |
4.8 Tbps |
Packet forwarding rate |
2,000 Mpps |
Ports |
|
Port density |
48 x 10GE SFP+ ports + 8 x 100GE QSFP28 ports |
Expansion modules |
Two power module slots, supporting 1+1 redundancy Four fan module slots, supporting 3+1 redundancy |
Management port |
1 x MGMT port, 1 x console port, and 1 x USB 2.0 port |
802.1Q VLAN |
4,094 |
Dimensions and Weight |
|
Dimensions (W x D x H) |
442 mm x 387 mm x 44 mm (17.40 in. x 15.24 in. x 1.73 in., 1 RU) |
Weight |
8.2 kg (18.08 lbs., including two power modules and four fan modules) |
Power Supply and Consumption |
|
AC input |
Rated voltage: 110 V AC/220 V AC Rated voltage range: 100 V AC to 240 V AC (50 Hz to 60 Hz) Max. voltage range: 90 V AC to 264 V AC (47 Hz to 63 Hz) Rated current range: 7.2 A to 3.5 A |
HVDC input |
Rated voltage: 240 V DC Max. voltage range: 180 V DC to 310 V DC Rated current: 3.6 A |
LVDC input |
Voltage range: –36 V DC to –72 V DC Rated voltage: –48 V DC Rated current: 23 A |
Maximum Power Consumption |
● Max: 300 W ● Typical: 165 W ● Static: 98 W |
Environment and Reliability |
|
Operating temperature |
0ºC to 40ºC (32°F to 104°F) |
Storage temperature |
–40°C to +70°C (–40°F to +158 °F) |
Operating humidity |
10% RH to 90% RH (non-condensing) |
Storage humidity |
5% to 95% RH (non-condensing) |
Working altitude |
Operating altitude: up to 5,000 m (16,404.20 ft.) |
Software Specifications |
RG-S6250-48XS8CQ |
Layer 2 protocols |
IEEE802.3ae (10GBASE), IEEE802.3ak, IEEE802.3an, IEEE802.3x, IEEE802.3ad (static link aggregation, LACP, MLAG), IEEE802.1p, IEEE802.1Q, IEEE802.1D (STP), STP Root Guard, BPDU Guard, IEEE802.1w (RSTP), IEEE802.1s (MSTP), IGMP Snooping , MLD Snooping, Jumbo Frame (9 Kbytes), IEEE802.1ad (QinQ, selective QinQ), GVRP, access, trunk, and hybrid interfaces, LLDP, static MAC address, MAC address filter, MAC address limit |
N/A |
|
Layer 3 protocols (IPv4) |
Static routing, BGP4, OSPFv2, IS-IS, RIPv1, RIPv2, MBGP, LPM Routing, Policy-based Routing (PBR), routing policy, ECMP, WCMP, VRRP, IGMP v1/v2/v3, PIM-SSM/SM/DM, MSDP, Any-RP, and BFD for BGP/IS-IS/OSPF/static routing, manual tunnel, GRE tunnel |
Basic IPv6 protocols |
Neighbor Discovery, ICMPv6, Path MTU Discovery, DNSv6, DHCPv6, ICMPv6, ICMPv6 redirection, ACLv6, TCP/UDP for IPv6, SNMPv6, Ping/Traceroute v6, IPv6 RADIUS, Telnet/SSH v6, FTP/TFTP v6, NTPv6, IPv6 MIB for SNMP, VRRPv6, and IPv6 QoS |
IPv6 features |
Static routing, ECMP, PBR, OSPFv3, RIPng, BGP4+, IS-ISv6, IPv6 VRRP, MLD v1/v2, PIM-SMv6, manually configured tunnel, GRE tunnel, automatic tunnel, IPv4 over IPv6 tunnel, and ISATAP tunnel |
Data center features |
VXLAN routing and VXLAN bridging EVPN Virtual eXtensible LAN (VXLAN) VXLAN mapping IPv4 VXLAN over IPv4 IPv6 VXLAN over IPv4 IPv4 VXLAN over IPv6 IPv6 VXLAN over IPv6 MLAG OpenFlow 1.3 PFC, ECN |
Visualization |
gRPC sFlow sampling IPFIX sampling |
QoS |
802.1p, DSCP, and ToS mapping ACL-based traffic classification Queue scheduling mechanisms such as SP (PQ), WRR, DRR, SP (PQ) + WRR, and SP (PQ) +DRR Flexible queue scheduling algorithms based on ports or queues Congestion avoidance mechanisms such as WRED and tail discarding Inbound/outbound rate limiting, CAR |
MPLS |
MPLS VPN |
Virtualization |
VSU |
Buffer management |
Buffer usage monitoring and traffic microburst identification |
High availability |
GR for RIP/OSPF/BGP, BFD, DLDP, VRRP, VRRP load balancing/dual-active, BFD for VRRP, REUP, RLDP, 1+1 power redundancy and fan redundancy, and hot swappable line cards and power modules |
Security features |
Network Foundation Protection Policy (NFPP), CPU Protection Policy (CPP), DDoS/DoS attack defense, ICMP attack defense, unauthorized packet detection, data encryption, source IP spoofing defense, IP scanning attack defense, RADIUS/TACACS, IPv4/v6 packet filtering by basic ACL, extended ACL, port-based ACL, or VLAN-based ACL, cleartext and MD5-based authentication for OSPF, RIPv2, and BGPv4 packets, Telnet login from specified IP addresses, uRPF, broadcast packet suppression, DHCP snooping, ARP spoofing defense (ARP anti-spoofing), ARP check, and hierarchical user management |
Management mode |
SNMP v1/v2c/v3, Telnet, Console, MGMT, RMON, SSHv1/v2, FTP/TFTP, NTP Syslog, SPAN/RSPAN/ERSPAN, Telemetry, ZTP, NETCONF, Python, fan and power alarm, temperature alarm, and configuration rollback |
Other protocols |
DHCP Client, DHCP Relay, DHCP Server, DNS Client, UDP Relay, Proxy ARP, and Syslog |
* indicates that the feature will be available in the future.
Specifications |
RG-S6250-48XS8CQ |
Safety |
● IEC 62368-1 ● EN 62368-1 ● NM EN 62368-1 ● NM CEI 62368-1 ● EN IEC 62368-1 ● BS EN IEC 62368-1 ● UL 62368-1 ● CSA C22.2#62368-1 ● GB 4943.1 |
Electromagnetic Compatibility (EMC) |
● EN 55032 ● EN 55035 ● EN IEC 61000-3-2 ● EN IEC 61000-3-3 ● EN 61000-3-3 ● EN 300 386 ● ETSI EN 300 386 ● NM EN 55035 ● NM EN CEI61000-3-2 ● NM EN 61000-3-3 ● CNS 13438 ● FCC CFR Title 47, ● Part 15, Subpart B ● ANSI C63.4-2014 ● ICES-003 Issue 7 ● GB/T 9254.1 |
Environment |
● 2011/65/EU EN 50581 ● 2012/19/EU EN 50419 ● (EC) No.1907/2006 ● GB/T 26572 |
*For more country-specific regulatory information and approvals, contact your local sales agency.
Model |
Description |
RG-S6250-48XS8CQ |
RG-S6250-48XS8CQ chassis, 48 x 10GE SFP+ ports, 8 x 100GE QSFP28 ports, 2 x power module slots, 4 x fan module slots. The chassis is equipped with two power modules (RG-PA550I-F) and four fan modules (M1EFAN II-F). |
Model |
Description |
RG-PA550I-F |
550 W power module (supporting AC and 240 V HVDC) |
RG-PD800I-F |
800 W power module (supporting 48 V LVDC) for the RG-S6250-48XS8CQ and the RG-S6510-48VS8CQ |
Model |
Description |
M1EFAN II-F |
Fan module (port-side intake) for the RG-S6250-48XS8CQ |
M1EFAN III-F |
Fan module (port-side intake) for the RG-S6231-48XT8CQ, the RG-S6231-48XS8CQ, the RG-S6232-48XS8CQ, and the RG-S6501-48VS8CQ |
Model |
Description |
100G-AOC-5M |
100G AOC cable, QSFP28 form factor, 5 m (16.40 ft.) |
100G-AOC-10M |
100G AOC cable, QSFP28 form factor, 10 m (32.81 ft.) |
100G-QSFP-SR-MM850 |
100G SR transceiver, QSFP28 form factor, MPO, 850 nm, 100 m (328.08 ft.) over MMF |
100G-QSFP-iLR4-SM1310 |
100G iLR4 transceiver, QSFP28 form factor, Duplex LC, 1310 nm, 2 km (6,561.68 ft.) over SMF |
100G-QSFP-LR4-SM1310 |
100G LR4 transceiver, QSFP28 form factor, Duplex LC, 1310 nm, 10 km (32,808.40 ft.) over SMF |
100G-QSFP-ER4-SM1310 |
100G ER4 transceiver, QSFP28 form factor, Duplex LC, 1310 nm, 40 km (131,233.59 ft.) over SMF |
Model |
Description |
40G-AOC-5M |
40G AOC cable, QSFP+ form factor, 5 m (16.40 ft.) |
40G-AOC-30M |
40G AOC cable, QSFP+ form factor, 30 m (98.43 ft.) |
40G-QSFP-SR-MM850 |
40G SR transceiver, QSFP+ form factor, MPO, 150 m (492.13 ft.) over MMF |
40G-QSFP-LSR-MM850 |
40G LSR transceiver, QSFP+ form factor, MPO, 400 m (1,312.34 ft.) over MMF |
40G-QSFP-LR4-SM1310 |
40G LR4 transceiver, QSFP+ form factor, Duplex LC, 10 km (32,808.40 ft.) over SMF |
40G-QSFP-iLR4-SM1310 |
40G iLR4 transceiver, QSFP+ form factor, Duplex LC, 2 km (6,561.68 ft.) over SMF |
40G-QSFP-LX4-SM1310 |
40G LX4 transceiver, QSFP+ form factor, Duplex LC connector, 150 m (492.13 ft.) over OM3/OM4 MMF, or 2 km (6,561.68 ft.) over SMF |
Model |
Description |
XG-SFP-SR-MM850 |
10G SR transceiver, SFP+ form factor, Duplex LC, 300 m (984.25 ft.) over MMF |
XG-SFP-LR-SM1310 |
10G LR transceiver, SFP+ form factor, Duplex LC, 10 km (32,808.40 ft.) over SMF |
XG-SFP-ER-SM1550 |
10G ER transceiver, SFP+ form factor, Duplex LC, 40 km (131,233.60 ft.) over SMF |
XG-SFP-ZR-SM1550 |
10G ZR transceiver, SFP+ form factor, Duplex LC, 80 km (262,467.19 ft.) over SMF |
XG-LR-SM1310 |
10G LR transceiver, SFP+ form factor, Duplex LC, 10 km (32,808.40 ft.) over SMF |
XG-SFP-AOC1M |
10G AOC cable, SFP+ form factor, 1 m (3.28 ft.) |
XG-SFP-AOC3M |
10G AOC cable, SFP+ form factor, 3 m (9.84 ft.) |
XG-SFP-AOC5M |
10G AOC cable, SFP+ form factor, 5 m (16.40 ft.) |
XG-SR-MM850 |
10G SR transceiver, SFP+ form factor, Duplex LC, 300 m (984.25 ft.) over MMF |
Model |
Description |
GE-SFP-LH40-SM1310-BIDI |
1G LH transceiver, SFP form factor, BIDI LC, 40 km (131,233.60 ft.) over SMF |
GE-SFP-LX20-SM1310-BIDI |
1G LX transceiver, SFP form factor, BIDI LC, 20 km (65,616.80 ft.) over SMF |
GE-SFP-LX20-SM1550-BIDI |
1G LX transceiver, SFP form factor, BIDI LC, 20 km (65,616.80 ft.) over SMF |
MINI-GBIC-LH40-SM1310 |
1G LH transceiver, SFP form factor, Duplex LC, 40 km (131,233.60 ft.) over SMF |
MINI-GBIC-LX-SM1310 |
1G LX transceiver, SFP form factor, Duplex LC, 10 km (32,808.40 ft.) over SMF |
MINI-GBIC-SX-MM850 |
1G SR transceiver, SFP form factor, Duplex LC, 550 m (1,804.46 ft.) over MMF |
MINI-GBIC-ZX80-SM1550 |
1G ZX transceiver, SFP form factor, Duplex LC, 80 km (262,467.19 ft.) over SMF |
Model |
Description |
Mini-GBIC-GT(F) |
1G electrical transceiver, SFP form factor, RJ45, 100 m (328.08 ft.) over Cat 5e/6/6a. For the S6200 series, the Mini-GBIC-GT(F) module applies to only the RG-S6250-48XS8CQ. |
Mini-GBIC-GT |
1G electrical transceiver, SFP form factor, RJ45, 100 m (328.08 ft.) over Cat 5e/6/6a |
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?