Huawei NetEngine NE40E-X8 Series Routers CR5P08BASD70
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- Cung cấp thiết bị Huawei NetEngine NE40E-X8 Series Routers CR5P08BASD70.
- Including NE40E-X8 Chassis, 2+1 Redundant SRU/SFU.
- 4 DC Power, without Software Charge and Document.
- Hàng chính hãng 100%, bảo hành 12 tháng.
Tổng quan về Huawei NetEngine NE40E-X8 Series Routers CR5P08BASD70
The NE40E series universal service router CR5P08BASD70, a high-end network product, features line-rate forwarding capability, a well designed Quality of Service (QoS) mechanism, strong service-processing capability, and excellent expansibility and are usually deployed at the edges of Internet Protocol (IP) backbone networks, IP Metropolitan Area Networks (MANs), Internet Data Centers (IDCs) networks and other large-scale IP networks. It can also provide comprehensive services for enterprises, residential as universal edge device. The Huawei CR5P08BASD70 NE40E-X8 basic configuration includes the features:
1) NE40E-X8 Chassis, 2+1 Redundant SRU/SFU, 4 DC Power supplies, 2 MPU slots, 1 SFU slots, 8 LPU slots, Huawei VRP platform.
2) Up to 7.08Tbit/s switching capacity, 2880Mpps forwarding performance.
3) 1+1 backup for SRUs, 2+1 backup for SFUs.
4) Extremely Large Capacity Line Card, Energy Saving Design, IPv6-Compatible Solutions, Enhanced Metro Ethernet Features, Enhanced User Management Functions.
5) Interface type: 100GE/40GE, 10G-LAN/WAN, GE/FE OC-192c/STM-64c POS, OC-48c/STM-16c POS, OC-12c/STM-4c POS, OC-3c/STM-1c POS, Channelized STM-4, Channelized OC-3/STM-1, OC-3c/STM-1c ATM, OC-12c/STM-4c ATM, E3/CT3 CE1/CT1 E1/T1.
6) IPv4/IPv6, MPLS, QoS, Multicast, Security, VPNs, Value-added services.
Thông số kỹ thuật Huawei NetEngine NE40E-X8 Series Routers CR5P08BASD70
|Switching Capacity||7.08 Tbit/s|
|Forwarding Performance||2,880 Mpps|
|Number of Slots||11 slots, including
2 SRUs (1:1 backup), 1 SFUs
(2+1 backup), and 8 LPUs
|Dimensions (W x D x H)||442 mm x 650 mm x 620 mm (14U)|
|Power Consumption (in full configuration)||2,340W (120G)|
|Weight (in full configuration)||119 kg (120G)|
|Interface Types||100 GE/40 GE
10 GE- LAN/WAN
POS OC-12c/STM-4c POS
|IPv4||Support for static routing as well as dynamic routing protocols, such as RIP, OSPF, IS-IS, and BGP-4
Line rate forwarding on all interfaces in complex routing environments, for example, when route flapping occurs
|IPv6||Various IPv4-to-IPv6 transition technologies: manual tunnel, automatic tunnel, 6to4 tunnel, GRE tunnel, and ISATAP tunnel
IPv4 over IPv6 tunnel and IPv6 Provider Edge (6PE)
IPv6 static routes and dynamic routing protocols, such as BGP4+, RIPng, OSPFv3, and IS-ISv6
IPv6 neighbor discovery, PMTU discovery, TCP6, ping IPv6, tracert IPv6, socket IPv6, static IPv6 DNS, IPv6 DNS server, TFTP IPv6 client, and IPv6 policy-based routing
Internet Control Message Protocol Version 6 (ICMPv6), Management Information Base (MIB), User Datagram Protocol Version 6 (UDP6) MIB, TCP6 MIB, and IPv6 MIB
L2NAT, NAT444, DS-Lite, and NAT64
|MPLS||MPLS TE and MPLS/BGP VPN, in compliance with RFC 2547
Inter-AS VPN Option A/B/C
Integration with Internet services
Martini and Kompella MPLS L2VPN
L2VPN techniques, such as VPLS and VLL
IP interworking over heterogeneous media
MPLS-TP, EVPN, Remote LFA
|Layer 2 Features||IEEE 802.1Q, IEEE802.1ad, IEEE 802.1D, IEEE 802.1w, and IEEE 802.1s
VLAN aggregation (super VLAN)
Filtering list based on MAC addresses and ports
Protection mechanisms such as IP/TE auto rerouting, IGP/BGP/multicast route convergence, VRRP, RRPP, IP-Trunk load balancing and backup, BFD, MPLS/Ethernet OAM, Y.1731, and routing protocol/port/VLAN damping
PW redundancy, E-Trunk, E-APS, and E-STP
In-service patching for smooth software upgrade
Passive backplane design
Redundancy backup for key components, such as route processing modules, SFUs, and power modules to guard against single points of failure
Switching between components that hot-back up each other
GR, NSF, NSR, and ISSU
Hot swap of all components
|QoS||Well-designed HQoS and advanced scheduling and congestion avoidance technologies on each LPU
Accurate traffic policing and traffic shaping
Complex rule definition and fine-grained flow identification
MPLS H-QoS, ensuring QoS for MPLS VPN, VLL, and PWE3 services
8CT that combines MPLS TE and the DiffServ model
|OAM||Y.1731, IP FPM, RFC 2544, MPLS OAM, 802.1ag, and 802.3ah, OPS|
|Multicast||IGMPv1, IGMPv2, and IGMPv3
Multicast routing protocols, including PIM-DM, PIM-SM, PIM-SSM, Multicast Source Discovery Protocol (MSDP), and Multiprotocol BGP (MBGP)
Interoperability between multicast protocols
Processing of multicast policies based on multicast routing protocols and multicast forwarding
Multicast QoS and multicast replication for IPoE access users
Two-level multicast replication on the SFUs and LPUs to optimize the multicast effect
|Security||ACL-based packet filtering
ARP attack defense and DoS attack defense
MAC address limit and MAC-IP binding
Secure Shell (SSH) and SSH version 2 (SSH v2)
RIPv2, OSPF, IS-IS, and BGP MD5, SHA256, Keychain
|Value-added Services||IPsec tunnel
Distributed GRE tunnel
High-precision NAT: CGN
|Environment Requirements||Long-term operating temperature: 0°C to 45°C
Short-term operating temperature: -5°C to 55°C
Long-term operating humidity: 5% RH to 85% RH
Short-term operating humidity: 0% RH to 100% RH
Operating altitude: ≤ 3,000 meters
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