NE20E Network Service Processor (NSP-50)
USD $29,000 - $35,000 /Unit
Min.Order:1 Unit
The NE20E-S uses the latest VRP8 platform, which is also used by the NE5000E core router. The VRP uses the Resilient Distributed Framework (RDF), with separated management plane, service plane, data plane, and monitoring module, greatly increasing the system flexibility, reliability, manageability, and expansibility.
The VRP has grown mature and stable over the years. So far, more than 4 million sets are running on live networks. Its rich features and stability have proven themselves through wide applications.
The NE20E-S uses in-built Huawei developed NP chips that allow the NE20E-S to have a flexible programmable architecture. Microcode programming can be used for new service deployment, without the need to replace hardware, which saves investments. In addition, this architecture drastically shortens the technological innovation cycle and accelerates new service launch speed, helping customers build flexible and scalable networks.
The NE20E-S uses a leading industrial design, with low power consumption, energy conservation, and environmental protection. The NE20E-S is only 220 mm deep and has a lowest height of 2 U, reducing the required installation space. It can be used when the ambient temperature is between –40°C and +65°C, applicable to outdoor deployment.
The NE20E-S supports various interface types (E1/CE1, POS, CPOS, GE, 10GE, and 40GE) and high-density fixed ports to provide access and aggregation WAN services as well as Ethernet multi-service transmission platform (MSTP) aggregation services, satisfying various service requirements.
The NE20E-S provides powerful service processing capabilities.
The NE20E-S provides reliability protection at different levels, including the equipment level, network level, and service level. The NE20E-S can provide a multi-level reliability solution that completely meets carrier-class reliability. The NE20E-S lays the foundation for carrier-class services with a system availability of 99.999%.
The following describes the reliability protection levels that the NE20E-S provides:
The NE20E-S supports flexible virtual system (VS) technologies. A physical router can be divided into multiple logical routers between which resources are separated. Services can be deployed on different VSs to form a multi-service network with service separation. The use of VSs enhances security and reliability.
IP hard pipe is an IP network-based access technology newly developed by Huawei. It works with MPLS TE and HQoS and reserves hardware resources to implement dedicated use of bandwidth for leased line services, ensuring low delay and high reliability.
The NE20E-S supports IP hard pipe, providing a high-quality IP leased line solution for enterprises. IP hard pipe strictly isolates soft and hard pipes by hardware so that soft and hard pipe bandwidths are isolated and cannot be preempted. A hard pipe is similar to a synchronous digital hierarchy (SDH) rigid pipe. IP hard pipe uses IP Flow Performance Measurement (FPM) to measure service quality of flows and uses the NMS and uTraffic to display the measurement result and real-time service operating status, making IP leased line services controllable, manageable, and visible.
The NE20E-S supports complete OAM technologies. Detection packets can be sent periodically or manually to detect network connectivity for network fault locating and diagnosis. P2P Ethernet in the First Mile (EFM), E2E Connectivity Fault Management (CFM), E2E Y.1731, and their combinations are used to provide a complete Ethernet OAM solution.
The NE20E supports a generalflow test methodology in compliance with RFC 2544 for offline performance monitoring. RFC 2544 defines a set of standard methods for evaluating network performance, which can be used in various networking scenarios that have different packet formats. The RFC 2544 tests are performed before service provisioning. During a test, a device simulates network packets and sends them to itself so that it can measure network performance. No tester is needed during this process. RFC 2544 tests can be used before service cutover for customers to evaluate whether the network performance indicators are ready.
The NE20E-S supports IP FPM developed by Huawei to measure IP network performance. IP FPM directly measures IP service packets and monitors service changes online for fast fault locating. IP FPM provides highly-accurate measurements. It can be flexibly deployed and has no impact on services.
Specification
Attribute | NE20E-S2E | NE20E-S2F | NE20E-S4 | NE20E-S8 | NE20E-S16 |
---|---|---|---|---|---|
Switching capacity | 160 Gbps | 320 Gbps | 480 Gbps | 480 Gbps | 480 Gbps |
Forwarding performance | 70 Mpps | 150 Mpps | 180 Mpps | 360 Mpps | 360 Mpps |
Fixed port | 2*10GE ports and 24*GE ports | 4*10GE ports and 40*GE ports | - | - | - |
Number of slots | 2 PICs | 2 PICs | 2 MPUs 1 NSP 4 PICs | 2 MPUs 2 NSPs 8 PICs | 2 MPUs 2 NSPs 16 PICs |
Dimensions (H x W x D) | 89 mm x 442 mm x 220 mm (2 U) | 89 mm x 442 mm x 220 mm (2 U) | 132 mm x 442 mm x 220 mm (DC, 3 U) 178 mm x 442 mm x 220 mm (AC, 4 U) | 222 mm x 442 mm x 220 mm (DC, 5 U) 264 mm x 442 mm x 220 mm (AC, 6 U) | 353 mm x 442 mm x 220 mm (8 U) |
Power consumption in full configuration | 170 W | 220 W | 350 W | 570 W | 700 W |
Weight in full configuration | 9 kg | 9 kg | 13 kg | 22 kg | 34 kg |
Interface type | 40GE 10GE GE/FE OC-3c/STM-1c POS OC-12c/STM-4c POS Channelized OC-3/STM-1 POS E1/CE1 | ||||
Clock synchronization | Synchronous Ethernet and IEEE 1588v2 | ||||
Layer 2 features | IEEE 802.1q, IEEE 802.1p, IEEE 802.3ad, IEEE 802.1ab, and STP/RSTP/MSTP | ||||
IPv4/IPv6 routing protocols | IPv4 static routes and dynamic routing protocols, such as RIP, OSPF, IS-IS, and BGP IPv4/IPv6 dual stack Various IPv4-to-IPv6 transition technologies: manual tunnel, 6to4 tunnel, and 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, and IPv6 policy-based routing | ||||
L2/L3 VPN | LDP over TE, VPLS, H-VPLS, and VPN policy-based routing Martini MPLS L2VPN VLL/VPLS accessing L3VPN MPLS/BGP L3VPN and inter-AS VPN | ||||
Multicast | IGMPv1/v2/v3, IGMP snooping, IPv6 multicast, static multicast routing, PIM-SM, PIM-SSM, MBGP, and NG MVPN | ||||
QoS | WRED, five-level HQoS, and VLL/PWE3 QoS | ||||
Reliability | NSR for OSPF/RIP/LDP/RSVP-TE/PIM/MSDP/IGMP/ARP/L3VPN/ISIS/BGP/VLL/VRRP GR for BGP/OSPF/ISIS/LDP/VLL/VPLS/RSVP/L3VPN/PIM BFD for static route/fast reroute/VRRP/ISIS/OSPF/BGP/PIM/LSP/IPv6 Fast convergence of BGP/IGP/multicast routes IP/LDP FRR, TE FRR, VPN FRR, and VLL FRR Ethernet OAM, Y.1731, and PWE3 E2E protection ISSU and in-service patching for smooth software upgrades | ||||
Security | ACL-based packet filtering, AAA, SNMPv3 encryption and authentication, URPF, GTSM, DHCP snooping, ARP attack defense, and SSHv2 | ||||
Value-added services | NAT, IPSec, GRE, NetStream | ||||
OAM | Y.1731, IP FPM, MPLS OAM, 802.1ag, and 802.3ah | ||||
Operating temperature | 0°C to 45°C | 0°C to 45°C | –40°C to +65°C | –40°C to +65°C | 0°C to 45°C |
Operating humidity | 5% RH to 85% RH, non-condensing | ||||
Operating altitude | ≤ 3000 meters |