Huawei S7700 Series switch ES0B017712P0 Overview
Huawei S7700 Series switch ES0B017712P0 is a genuine core and distribution switching product from Huawei, a global ICT provider whose CloudEngine and S-Series platforms are widely deployed in campus and data-center environments. Belonging to the Huawei S7700 Series family, the ES0B017712P0 unit is built to the original factory specification, so it integrates with existing Huawei deployments predictably and behaves exactly as the platform documentation describes. In the network, it is positioned for campus core and distribution roles, aggregating traffic for large user populations with resilient failover behavior.
From a specification standpoint, packet forwarding up to 880 Mpps; 800 W PoE budget. These are the original factory figures for this model, giving administrators a clear picture of what the unit can deliver before it enters service. Standard mounting, cabling and management practices apply, so deployment follows the same procedures as other Huawei hardware already running in the environment.
Typical deployments include access-layer deployments for user, phone and AP connectivity, distribution and core aggregation in campus networks, and top-of-rack and end-of-row switching in data centers. Organizations commonly source it for refresh programs, capacity expansion and spares management, keeping a tested unit on hand so outages stay short and replacements are predictable. The factory detail for this unit reads: “S7712 POE Assembly Chassis”. This makes it a practical choice when original-spec hardware is required at a predictable cost.
Every unit at LinkNewNet is inspected and tested before dispatch, and stock is graded, cleaned and verified for correct operation, including port status, console access and firmware state. Our warranty coverage and responsive technical support protect the purchase after it arrives, and our team can confirm revision levels and software compatibility before you order. For volume requirements we also offer configuration checks and staged delivery options.
Contact our sales team for current availability, lead time and shipping options for the ES0B017712P0. We respond quickly with stock status and a firm quote, so you can plan the refresh or expansion with confidence.
Key Specifications
Applications
Enterprise Campus
High-density ports power users, phones and APs at the access layer.
Branch Office
Stackable units simplify branch deployment and management.
Wireless & IoT
PoE budget supports dense wireless and IoT endpoints.
Buying a Pre-Owned ES0B017712P0
Verify the unit is tested, firmware confirmed, and condition documented. Every unit is fully tested and warranty covered. Contact our team for current stock and availability.
ES0B017712P0 Specifications | |
Switching Capacity | 3.84 Tbit/s |
Forwarding Performance | 2,880 Mpps |
Service Slots | 12 |
Redundancy Design | Supervisors, power modules, CMUs, fans trays |
Wireless Network Management | Native AC |
AP access control, AP region management, and AP profile management | |
Radio profile management, uniform static configuration, and centralized dynamic management | |
Basic WLAN services, QoS, security, and user management | |
Deployment of ACs on different network layers | |
User Management | Unified user management |
802.1x, MAC address, and Portal authentication | |
Traffic- and time-based accounting | |
User authorization based on user groups, domains, and time ranges | |
VLAN | Three types of interfaces: access, trunk, and hybrid |
Default VLAN | |
VLAN switching | |
QinQ and selective QinQ | |
MAC address-based VLAN assignment | |
ARP | 256K ARP entries |
MAC Address | 1M MAC address entries |
MAC address learning and aging | |
Static, dynamic, and blackhole MAC address entries | |
Packet filtering based on source MAC addresses | |
Limit on the number of MAC addresses learned on ports and VLANs | |
Ring Protection | STP (IEEE 802.1d), RSTP (IEEE 802.1w), and MSTP (IEEE 802.1s) |
SEP | |
BPDU protection, root protection, and loop protection | |
BPDU tunnel | |
ERPS (G.8032) | |
IP Routing | 1M IPv4 routing entries |
IPv4 routing protocols, such as RIP v1/v2, OSPF, BGP, and IS-IS | |
IPv6 dynamic routing protocols, such as RIPng, OSPFv3, IS-ISv6, and BGP4+ | |
Multicast | 128,000 multicast routing entries |
IGMP v1/v2/v3 and IGMP v1/v2/v3 snooping | |
PIM-DM, PIM-SM, and PIM-SSM | |
MSDP and MBGP | |
Fast leave | |
Multicast traffic control | |
Multicast querier | |
Multicast packet suppression | |
Multicast CAC | |
Multicast ACL | |
MPLS | Basic MPLS functions |
MPLS OAM | |
MPLS-TE | |
MPLS VPN/VLL/VPLS | |
CSS Switch Fabric Clustering | CSS Switch Fabric Clustering (S7706 and S7712) |
Service Port Clustering | Service Port Clustering (S7706 and S7712) |
Reliability | LACP and E-Trunk between devices |
VRRP and BFD for VRRP | |
BFD for BGP/IS-IS/OSPF/static route | |
NSF and GR for BGP/IS-IS/OSPF/LDP | |
TE FRR and IP FRR | |
HSR | |
Ethernet OAM (IEEE 802.3ah and 802.1ag) | |
ITU-Y.1731 | |
DLDP | |
QoS | 256K ACLs |
Traffic classification based on Layer 2 protocol packet header, Layer 3 protocol information, Layer 4 protocol information, and 802.1p priority | |
ACL, CAR, re-marking, and scheduling | |
Queue scheduling algorithms including PQ, WRR, DRR, PQ + WRR, and PQ + DRR | |
Congestion avoidance mechanisms, such as WRED and tail drop | |
HQoS | |
Traffic shaping | |
Configuration and Maintenance | Zero-Touch Provisioning |
Console and SSH terminals | |
Network management protocols, such as SNMP v1/v2c/v3 | |
File uploading and downloading using FTP and TFTP | |
BootROM upgrade and remote upgrade | |
Hot patches | |
User operation logs | |
Security and Management | 802.1x authentication and portal authentication |
MACSec | |
NAC | |
RADIUS and HWTACACS authentication | |
Different user levels for commands, preventing unauthorized users from using certain commands | |
Defense against DoS attacks, TCP SYN Flood attacks, UDP Flood attacks, broadcast storms, and heavy traffic attacks | |
Ping and traceroute | |
RMON | |
Service Chain | |
Time synchronization | IEEE 1588v2 |
SyncE | |
Value-added Service* | Firewall |
NAT | |
NetStream | |
IPSec | |
Load balancing | |
IPS | |
Interoperability | Supports VBST (compatible with PVST/PVST+/RPVST) |
Supports LNP (similar to DTP) | |
Supports VCMP (similar to VTP) | |
Energy Conservation | IEEE 802.3az: Energy Efficient Ethernet (EEE) |
Dimensions (W x D x H) | 442 mm x 489 mm x 664 mm |
Chassis Weight (empty) | 37 kg |
Working Voltage | DC: –38.4V to –72V AC: 90V to 290V |
Maximum Power Consumption of the Entire Equipment | 4,200W |
Maximum PoE Power | 8,800W |
ES0B017712P0 - Deployment Notes
This ES0B017712P0 switch is suited to wiring-closet, distribution, or core roles depending on the port density and uplink options of the specific model. The port configuration is a key consideration when planning power budgets for attached devices such as IP phones and access points.
For a refresh or expansion, confirm the IOS/NX-OS software release supported by this specific SKU, the fan and power requirements, and the uplink modules that match your existing infrastructure. Our team can verify revision levels and software compatibility before you order.
Every unit at LinkNewNet is inspected and tested before dispatch, and this ES0B017712P0 variant is graded, cleaned and verified for correct operation, including port status, console access and firmware state. Volume requirements can be staged with configuration checks.
ES0B017712P0 - Huawei Series Notes
This listing is part of the Huawei enterprise networking product family, sourced and tested by LinkNewNet for enterprise deployment. Huawei switch is typically deployed in campus access, aggregation, or data-center roles. It provides reliable Layer 2/3 switching for user, server and uplink connectivity, and integrates with Huawei iMaster NCE or traditional CLI-based management.
Deployment guidance: When planning this ES0B017712P0 unit into a network, confirm the software image (VRP / iMaster NCE), the power and cooling profile, and the upstream/downstream interface types that match your existing infrastructure. For a like-for-like refresh, match the feature set of the units already in service so management and automation behave consistently.
Our Huawei reconditioning process: Every pre-owned Huawei unit at LinkNewNet passes a documented reconditioning flow before dispatch - visual inspection, internal cleaning, firmware verification, port-by-port testing, and configuration reset to factory defaults. This ensures the unit you receive operates reliably and integrates cleanly with your existing Huawei management tools.
Related models in this family: ES0ZB12ACS00, ES1BS7706S01, ES0B00770300, ES1B03SACM0P, ES0B00770600. Compare specifications to confirm the right port density, feature set and uplink options for your deployment.






