H3C CR16000-F como o topo de linha roteador, com foco no backbone/MAN das operadoras e na rede central da indústria em grande escala, fornecendo alto desempenho de encaminhamento, portas de alta densidade, e tipos de portas ricos. Os roteadores CR16000-F adotam arquitetura CLOS e estrutura de encaminhamento distribuída, oferecendo mais alta disponibilidade e rede escalável. O sistema operacional Comware V7 permite ao CR16000-F mais compatibilidade, que integra o Security Blade, Módulo de plataforma de aplicativos abertos, tornando-o uma escolha ideal para os clientes.
Os roteadores CR16000-F incluem os seguintes modelos: CR16006-F, CR16010-F, CR16010H-F e CR16018-F para cobrir todas as camadas da rede, fornecendo 4/8/8/16 slots de serviço.
Folha de dados dos roteadores de última geração H3C CR16000-F
Especificações técnicas
tem | CR16006-F | CR16010-F | CR16010H-F | CR16018-F |
Slots MPU | 2 | 2 | 2 | 2 |
Line card slots | 4 | 8 | 8 | 16 |
Chassis | Integrated chassis, which can be installed in a 19-inch rack | |||
Independent switch fabrics | 4 | 4 | 5 | 5 |
Max Forwarding Capacity | 2.56Tbps | 6.4 Tbps | 25.6Tbps | 51.2Tbps |
Bi-direction Forwarding Capacity/slot | 320 Gbps | 400 Gbps | 1.6 Tbps | 1.6T bps |
Power module system | Support for 4 módulos de potência (AC or DC) and N+M redundancy | Support for 6 módulos de potência (AC or DC) and N+M redundancy | Support for 8 módulos de potência (AC or DC) and N+M redundancy | Support for 16 módulos de potência (AC or DC) and N+M redundancy |
Dimensões (A × L × D) | 353 × 440 × 660 milímetros (13.90 × 17.33 × 25.99 em), 8 ru | 931 × 440 × 660 milímetros (34.89 × 17.32 × 25.98 em), 21 ru | 931 × 440 × 640 milímetros (36.66× 17.32 × 25.98 em), 21 ru | 1687 × 440 × 640 milímetros (66.42 × 17.32 × 25.98 em), 38 ru |
MTBF | 41.68 | 40.46 | 27.03 | 22.27 |
MTTR | 0.5 hours | 0.5 hours | 0.5 hours | 0.5 hours |
Unicast routing | Pilha dupla IPv4/IPv6
Roteamento Estático, RASGAR, RIPng, OSPF, OSPFv3, É-É, IS-ISv6, BGP-4, e BGP4+ VRRP and VRRPv3 IPv6 neighbor discovery, PMTU discovery, TCP6, ping IPv6, traceroute IPv6, socket IPv6, static IPv6 DNS, specifying an IPv6 DNS server, and TFTP IPv6 client IPv4 to IPv6 transition technologies ICMPv6 MIB, UDP6 MIB, TCP6 MIB, and IPv6 MIB, etc. ECMP Roteamento baseado em políticas Routing policies Tunneling technologies, such as GRE IP FRR |
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Multitransmissão | PIM-DM, PIM-SM, PIM-SSM, MSDP, MBGP, anycast-RP, etc.
IGMP V1/V2/V3 and IGMP Snooping v1/2/3 PIM6-DM, PIM6-SM, e PIM6-SSM MLD V1/V2 and MLD Snooping v1 Multicast policies and multicast QoS |
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MPLS VPN | P/PE functions, compliant with the RFC 2547 bis standard
Three multi-AS MPLS VPN methods (Option1/Option2/Option3) Hierarchy of PE (Ter esperança) |
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Multi-role host
Camada 2 MPLS VPN functions MPLS TE FRR and LDP FRR 6PE and 6vPE Distributed multicast VPNs ACL-based traffic filtering for VPNs MPLS ping and MPLS traceroute L2VPN access to L3VPN QinQ access to VPLS |
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BRAS | Remote AAA based on RADIUS/TACACS+ protocol
iTA Unified access authentication for large numbers of wired and wireless users Mobility and once-for-all authentication for wireless terminals BRAS IRF routing stateful failover PPPoE, PPPoEoVLAN, and PPPoEoQ Camada 2 Portal, Camada 3 Portal, and QinQ Portal access authentication IPoE, IPoEoVLAN, IPoEoQ, DHCP, and unknown IP address access authentication VPN access authentication L2TP |
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LCA | IPv4/IPv6 standard ACL and extended ACL
Layer 2/Layer 3/Layer 4-based ACL Ingress/Egress ACL |
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QoS | Hierarchical QoS (HQoS) and queue scheduling mechanisms including PQ, QFQ, and CBWFQ
Modelagem de tráfego TD/WRED Priority marking/remarking 802.1p, Termos de Serviço, DSCP, and EXP priority mappings Multicast QoS |
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Ethernet | 802.1P
802.1Q VLAN Trunk QinQ 802.3d (STP)/802.3c (RSTP)/802.3é (MSTP) IEEE 802.3ad (link aggregation), agregação de porta estática, and inter-card link aggregation Port mirroring and flow mirroring |
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Virtualization | Virtualizes multiple physical devices into a virtual fabric, manages devices and device forwarding on a unified interface, and supports multi-chassis link aggregation | |||
Network traffic analysis | NetStream data export in v5/v8/v9
Traffic sampling and accounting Multiple log hosts Hardware-based network traffic analysis IPv4/IPv6/MPLS traffic analysis Port-based inbound and outbound traffic analysis Flow monitor to monitor illegitimate traffic flows |
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Availability | 1+1 redundancy backup for critical components including the MPUs, comutação de módulos de malha, suprimentos de energia, and fans
Passive design for the backplane to prevent single point of failure Troca a quente para todos os componentes NSF, NSR, and GR IP TRUNK, MP, and ETH port aggregation PW redundancy, OAM Ethernet, and Y.1731 BFD |
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Segurança | Firewall
Hierarchical user management Password protection AAA SSHv2 providing secure encrypted channel for user login Standard and extended ACLs for packet filtering to prevent network attacks Preventing attacks by using ARP packets, unknown multicast packets, broadcast packets, unknown unicast packets, local subnet route scanning packets, packets whose TTL is 1, and other protocol packets URPF for preventing network attacks using source address spoofing OSPF, RIPv2 and BGPv4 plain text authentication and MD5 authentication SNMPv3 |
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Administração de sistema | In-band and out-of-band management
Command line configuration through Console/AUX Modem/Telnet/SSH2.0 File download/upload management through FTP, TFTP, Xmodem, and SFTP SNMPv1/v2/v3 RMONv1/v2, supporting 1, 2, 3 ou 9 groups NTP Controle de qualidade Failure alarm and automatic recovery Data logs ICMP Syslog Traceroute Multiple user-line Telnet access |