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Huawei NetEngine 8000E M4 router 2x 100GE or 8x 25GE + 16x 10GE, DC power supply
Marca: Huawei
Código de producto: HUA-NENGINE-8000E-M4
Número de catálogo: 11096
Garantía (meses):
We ship this product only to European Union countries and Switzerland!
Precio
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0,00IVA incluido
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Descripción

The Huawei NetEngine is a high-performance router housed in a 2U chassis. Depending on the configuration, it can handle up to 405 million packets per second (Mpps) while maintaining a maximum power consumption of 283.4 W. The available throughput and interface types depend on the installed license. The ports are divided into four sections, and the device is equipped with a total of 4 ports supporting 100G / 50G and 16 ports supporting 25G / 10G. With the appropriate expansion card and license, the system can also support 400G interfaces. The exact functionality depends on the selected configuration. The package includes the VSUP-100 board—a dedicated VAS (Value-Added Services) card that offloads the main processor and enables advanced, resource-intensive configurations. This board serves as the core of the entire system, handling functions such as NAT traffic processing.

Example Configuration

Below is an example of a popular configuration widely used by Internet service providers. If you would like to modify any of the components, please contact us. This is a project-based product intended for ISP deployments.

Interfaces: Combo group (selectable as 2 × 100G or 8 × 25G) + 16 × 10G ports.

Additional board: VSUP-100 (integrated Value-Added Services board).

Power supply: DC. An AC-powered version is also available. Please note that AC power supply modules occupy slots intended for service boards, limiting the maximum number of installed service boards to 2 instead of 4.

Licences:

100G port licenses (enable 100G interfaces)

N1-N8KEM4AP-LIC – N1-NetEngine 8000E M4 Series Advanced SW Function Package. This is the primary system license. The Advanced edition unlocks the full feature set without software restrictions.

N1-N8KM4BNG-LIC – N1-NetEngine 8000 M4 Series BNG Function. Enables L2TP, PPPoE, IPoE, EDSG, and DAA functionality. The default licensed capacity supports up to 32,000 subscribers.

N1-N8KM4NATS-LIC – N1-NetEngine 8000 M4 Series Integrated Service Card CGN Service 1M NAT Session. Each license adds 1 million NAT sessions. The example configuration includes six of these licenses, providing a total capacity of 6 million NAT sessions (licensed for the VSUP-100 board).

CR8SCGN10GC0 – Throughput license that adds 10 Gb/s of processing capacity to the VSUP board. Without additional licenses, the default throughput is limited to 20 Gb/s. The example configuration includes seven of these licenses, increasing the total throughput to 90 Gb/s.

Specifications

Huawei NetEngine 8000E M4
Switching Capacity 2.4 Tb/s
Forwarding Performance 405 Mp/s
Maximum Board Capability  400 GE
Interface types 400G / 100GE / 50E / 40GE / 25GE / 10GE / GE / FE / E1 / cPOS / POS
Main Control Board Single
M.2 Flash Storage 16 GB
Service Slots 4
Dimensions 442 mm x 220 mm x 88.9 mm (2U)
Typical Power Consumption 283.4 W
Voltage

DC: -48 / -60 V

AC: 200 V to 240 V/100 V to127 V dual live wires, support 240 V HVDC

Clock 1588v2, 1588 ATR, 1588 ACR, G.8275.1, Synchronous Ethernet
Temperature DC: –20°C to +60°; AC: –20°C to +55°C
Maximum Number of Routes
(FIBv4 / FIBv6) 
Up to 8M / 4M
Maximum Number of IPsec
Tunnels
20000
Features
System Management

LAD

LLDP

System Time

NTP

SNMP

NETCONF

BootLoader Management

Device Management

Information Management

Fault Management

Performance Management
Upgrade Maintenance

DCN

RMON

SAID

PADS

CUSP

KPI

VS

Clock and Time Synchronization

Physical-Layer Clock Synchronization

1588v2

G.8275.1

CU-106

SMPTE-2059-2

C37.238
1588 ACR

1588 ATR

CES ACR

Atom GPS

Atom GNSS

Atom GPS 3.0

Network Reliability

Intra-chassis High Availability

BFD

VRRP

VRRP6

Ethernet OAM

LPT

Dual-Device Backup

Bit-Error-Triggered Protection Switching

MPLS OAM

MPLS-TP OAM

Interface and Data Link

Interface Management

Port Extension

Fiber Health Care (FHC)

LAN Access and MAN Access

MAC

Ethernet Interface

Eth-Trunk Interface

GVRP, Layer 2 Protocol

Tunneling

VLAN

QinQ

EVC

ERPS (G.8032)

MAC Flapping-based Loop Detection

STP_RSTP_MSTP

RRPP

BPDU Tunneling

VXLAN

WAN Access

ATM IMA

E-Carrier Interface

CPOS Interface

FR

HDLC and IP-Trunk

LMSP

POS Interface

PPP

PRBS Testing

TDM

WDM Interface

Serial Interface

Delay Compensation

IP Services

ARP

ND

ACL

ACL6

DHCP

DHCPv6

DNS

IPv6 DNS

MTU

IPv4 Basic

IPv6 Basic

Load Balancing

IP Routing

Basic IP Routing

IPv4 Static Route

IPv6 Static Route

OSPF

OSPFv3

RIP

RIPng

IS-IS

BGP

BGP4+

Routing Policy

XPL

Route Monitoring Group

IP Multicast

IGMP

PIM

MSDP

MBGP

IPv4 Multicast Routing Management

IPv6 Multicast Routing Management

Rosen MVPN

NG MVPN

BIER

BIERv6

MLD

IPv6 PIM

User-side Multicast

Controllable Multicast

Multicast NAT

Layer 2 Multicast

Timestamp-Refresh

MPLS

Common MPLS

MPLS TE

MPLS LDP

Seamless MPLS

GMPLS UNI

Segment Routing

Segment Routing MPLS (SR MPLS)

Segment Routing IPv6 (SRv6)

Application Awareness APNv6
Path Control PCEP
VPN

VPN Tunnel Management

GRE

DSVPN

L2TPv3

BGP/MPLS IP VPN

BGP/MPL IPv6 VPN

VPLS

VPWS

IP Hard Pipe

L2VPN Accessing L2VPN

L2VPN Accessing L3VPN

EVPN

PBB-EVPN

PBB VPLS

Loop Detection

QoS

Traffic Policing

Traffic Shaping

Congestation Management

Congestation Avoidance

Class-based QoS

Policy-based Routing

QPPB

HQoS

MPLS DiffServ Mode

SRv6 DiffServ Mode

QoS User Access

Multicast QoS

VPN QoS

Deterministic IP Networking

Security

AAA and User Management

ARP Security

DHCP Snooping

DHCPv6 Snooping

GTSM

Keychain

TCP-AO

URPF

Local Attack Defense

MACsec

SOC

Packet Header

Obtaining

BGP Flow Specification

Xsec

IPsec

PKI

Mirroring

Layer 2 Traffic Suppression

MPAC

802.1X Port-based Authentication

Security Risk Query

SAVA-X

System Master Key

SSL

SSH

FIPS

HTTPS

HIPS

Weak Password Dictionary Maintenance

Weak Security Algorithm Disabling

Trusted System

EULA

System Monitoring

IP FPM

NetStream

NQA

Ping

Tracert

gRPC

Telemetry

TWAMP

TWAMP Light

STAMP

sFlow

IFIT

EMDI

ESQM

Flow Recognition

Intelligent Monitoring

In-depth Flow Analysis

Path Detecion

EVA

Remote Packet Header Obtaining

User Access

IPv4 Address Management

IPv6 Address Management

IPoE Access

PPPoE Access

802.1X Access

L2TP Access

User Access Multi-Device Backup

EP Escape

NAT and IPv6 Transition

NAT

L2NAT

DS-Lite

PCP

NAT64

CGN Reliability

MAP

IPv4 over IPv6 Tunnel

IPv6 over IPv4 Tunnel

Value-Added Services

BOD

DAA

EDSG

Data Redundancy Elimination