H3C S5580X-HI Series Switches
- Classification:Access layer switch
- Release time:2025-11-12
- Page views:0
H3C S5580X-HI Series Switches
- Classification:Access layer switch
- Release time:2025-11-12
- Page views:0

The H3C S5580X-HI series switches are a new generation of high-performance, high-port-density, and high-security Layer 3 Ethernet switches developed by H3C Technologies Co., Ltd. (hereinafter referred to as H3C) using industry-leading ASIC technology. They support IPv4/IPv6 dual-stack management and forwarding, static routing protocols, and routing protocols such as RIP, OSPF, BGP, and ISIS. They also support rich management and security features, making them gigabit Layer 3 Ethernet switch products designed for converged service networks. Based on industry-leading high-performance hardware architecture and H3C's advanced Commware software platform, the H3C S5580X-HI series switches can integrate wireless control functions (converged AC), enabling access layer wireless/wired local forwarding, eliminating wireless control bandwidth bottlenecks, expanding wireless deployment scale, and saving user investment costs.
In campus networks, the H3C S5580X-HI series switches can serve as aggregation layer devices or as the core for small and medium-sized enterprises. Downstream, they can provide high-density GE aggregation switches; upstream, they can aggregate to the core switch via 10G/25G fiber optic cables or link aggregation, working in conjunction with other H3C products to build high-performance end-to-end IP network solutions. The H3C S5580X-HI series Ethernet switches currently include the following models:
S5580X-32T4X4YC-HI: 32 10/100/1000BASE-T ports, 4 1G/10GE SFP+ ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 pluggable power supply slots, and 1 port expansion slot;
S5580X-48T4YC-HI: 48 10/100/1000BASE-T ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 hot-swappable power supply slots, and 1 port expansion slot;
S5580X-32P4X4YC-HI: 32 10/100/1000BASE-T PoE++ ports, 4 1/10GE SFP+ ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 pluggable power supply slots, and 1 port expansion slot;
S5580X-48P4YC-HI: 48 10/100/1000BASE-T PoE++ ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 pluggable power supply slots, and 1 port expansion slot;
S5580X-32S8T4X4YC-HI: 32 100/1000BASE-X SFP ports (including 8 10/100/1000BASE-T combo ports), 4 1/10GE SFP+ ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 pluggable power supply slots, and 1 port expansion slot;
S5580X-48S4YC-HI: 48 100/1000BASE-X SFP ports, 4 10/25GE SFP28 ports, 2 modular fan slots, 2 hot-swappable power supply slots, and 1 port expansion slot;
Features
Comware V9
Comware is a network operating system independently developed by H3C for use in network devices. It includes a wealth of network functions and supports a full range of network devices, from campus to data center, and from enterprise to carrier-grade. Comware not only breaks the monopoly of multinational corporations and the open-source community, but also drives the rapid development of the national basic network, and has broad application prospects and important strategic significance.
Based on Comware V7, Comware V9 has upgraded and adjusted its architecture to meet the needs of openness, containerization, programmability, and visualization, so as to better adapt to the current development trend of network operating systems.
Comware V9 has the following advantages:
Using the native Linux kernel, Comware V9's functionality is fully implemented in user space, making it easy to upgrade the kernel version.
It supports containerization, allowing Comware to be released as containers. It also supports deploying containers on devices running Comware V9 to run third-party applications, thus enhancing the openness of Comware.*。
By deepening the modular design concept, the business functions can be made independent of each other, and can be deployed independently or released as standalone software.
The architecture fully considers the needs of virtualized products, achieving a lightweight support architecture that makes the deployment of virtualized products more flexible and faster.
SmartMC (Intelligent Management Center)
As network scale increases, a large number of access devices are needed at the network edge, making the management of these devices extremely cumbersome. The main purpose of SmartMC is to solve the problem of centralized management of a large number of distributed network devices. It aims to address the maintenance tasks of small businesses primarily using switches. SmartMC achieves unified operation and management of the network through built-in device functionality and a graphical interface.
SmartMC's four business segments simplify the operation and management of small and medium-sized industrial parks:
Intelligent Management:
This mainly includes selecting device roles, configuring the FTP server, global configuration, and configuring the network management port.
Intelligent Operation and Maintenance:
This mainly includes group management, device or group upgrade and backup, monitoring, and device failure replacement.
Visualization:
This mainly includes network topology visualization and management, device list display, etc.
Intelligent Business:
This mainly includes user management: After creating and successfully activating network access users, these users can access the SmartMC network through the one-click armed port.
The H3C S5580X-HI series switches have built-in SmartMC, enabling vertical virtualization and unified management.
Highly available M-LAG architecture
The H3C S5580X-HI series switches support M-LAG (Multichassis Link Aggregation Group) cross-device link aggregation technology (formerly DRNI technology), which realizes cross-device link aggregation by virtualizing two physical devices into one device at the forwarding layer, maintaining the independence of the control layer and improving device-level reliability.
M-LAG decouples the control plane from the data plane, allowing each node device to be upgraded independently, ensuring zero interruption of user services.
The dual-active access of the device provides device-level redundancy protection and traffic load sharing, while improving system reliability.
Suitable for both overlay and traditional underlay scenarios, offering flexible networking options.
High-performance IPv4/IPv6 service capabilities
The H3C S5580X-HI series switches implement a hardware-based IPv4/IPv6 dual-stack platform, supporting various tunneling technologies, rich IPv4 and IPv6 Layer 3 routing protocols, multicast technology, and policy routing mechanisms, providing users with a complete IPv4/IPv6 solution.
Multi-service integration
The H3C S5580X-HI series switches are based on H3C's Open Services Architecture (OAA), which not only provides the functions of traditional switches, but also integrates security module cards such as FW, IPS, and load balancer, Eagle Vision scanner cards, and mini-iMC cards, making the S5580X-HI series switches a converged multi-service carrier platform.
IRF2 (Second Generation Intelligent Resilient Architecture)
The H3C S5580X-HI series switches support IRF2 (Intelligent Resilient Architecture 2) technology, which connects multiple physical devices together, virtualizing them as a single logical device. This means users can manage and use these multiple devices as a single unit. IRF offers the following benefits:
Simplify managementOnce the IRF architecture is established, it can connect to any port of any device to log in to a unified logical device. By configuring a single device, it can manage the entire intelligent elastic system and all member devices within the system, without having to physically connect to each member device to configure and manage them separately.
Simplify businessThe various control protocols running in the logical devices formed by IRF are also run as a single device. For example, the routing protocol is calculated as a single device. With the application of cross-device link aggregation technology, it can replace the original spanning tree protocol. This can save a lot of protocol message interaction between devices, simplify network operation, and shorten the convergence time when the network is unstable.
Elastic scalingIt can be flexibly expanded according to user needs, ensuring user investment. Furthermore, new devices can be hot-swapped when joining or leaving the IRF architecture, without affecting the normal operation of other devices.
High reliabilityIRF's high reliability is reflected in three aspects: links, devices, and protocols. Physical ports between member devices support aggregation, as do physical connections between the IRF system and upper/lower-layer devices. This multi-link backup improves link reliability. The IRF system consists of multiple member devices; if the Master device fails, the system quickly and automatically elects a new Master to ensure uninterrupted service flow, achieving device-level 1:N backup. The IRF system also features real-time protocol hot backup, backing up protocol configuration information to all other member devices, thus achieving 1:N protocol reliability.
high performanceFor high-end switches, performance and port density improvements are limited by hardware architecture. However, the performance and port density of an IRF system are the sum of the performance and number of ports of all devices within the IRF. Therefore, IRF technology can easily increase the switching capacity and user port density of a device several times over, thereby significantly improving device performance.
Comprehensive security control strategy
The H3C S5580X-HI series switches support EAD (Endpoint Admission Control) functionality. When used in conjunction with a backend system, endpoint security measures such as antivirus and patch repair can be integrated with network security measures such as network access control and access permission control into a unified security system. By inspecting, isolating, repairing, managing, and monitoring network access terminals, the entire network can be transformed from passive defense to active defense, from single-point defense to comprehensive defense, and from decentralized management to centralized policy management, thereby improving the network's overall defense capabilities against emerging security threats such as viruses and worms.
The H3C S5580X-HI series switches support centralized MAC address authentication, 802.1x authentication, and dynamic or static binding of user identification elements such as user accounts, IP addresses, MAC addresses, VLANs, and ports. They also enable dynamic distribution of user policies (VLANs, QoS, ACLs). Furthermore, they support real-time management of online users in conjunction with H3C's iMC system, enabling timely diagnosis and resolution of illegal network activities.
The H3C S5580X-HI series switches offer enhanced ACL control logic, supporting ultra-high-capacity ingress and egress port ACLs, and VLAN-based ACL deployment. This simplifies user configuration while avoiding wasted ACL resources. Furthermore, the H3C S5580X-HI series switches also support unicast reverse path lookup (uRPF) technology. This works by performing a reverse path lookup on an interface when a data packet is received, verifying the existence of a route from the receiving interface to the source address specified in the packet. If the route is not found, the packet is deleted, effectively preventing the increasingly prevalent source address spoofing in networks.
Multiple reliability protections
The H3C S5580X-HI series switches feature multiple reliability protections at both the device and link levels, employing overcurrent protection, overvoltage protection, and overheat protection technologies.
The H3C S5580X-HI series switches support pluggable AC/DC dual power supply modules and "1+1" power redundancy, allowing for flexible configuration of AC or DC power supply modules according to actual environmental needs. Additionally, the S5580X-HI series supports a pluggable dual-fan reliability design, allowing for flexible configuration of front-to-rear or rear-to-front ventilation. Furthermore, the S5580X-HI series switches support power supply and fan fault detection and alarms, and can automatically adjust fan speed based on temperature changes. These designs enhance the device's reliability.
In addition to device-level reliability, this product also supports a wide range of link-level reliability technologies, including protection protocols such as LACP/STP/RSTP/MSTP/Smart Link/RRPP/ERPS/PVST fast ring network protection mechanisms, IRF2 intelligent elastic architecture, 1:N redundancy backup, ring stacking, and cross-device link aggregation, which greatly improves network reliability. Even when the network carries multiple services and high traffic, it does not affect the network convergence time, ensuring the normal operation of services.
It supports dual boot at the hardware level, using two Flash chips to store the boot software (system boot program), achieving hardware-level boot redundancy backup and avoiding the switch failing to start due to Flash chip failure.
Support ISSU*(Uninterrupted service upgrades) and OAM (Operation, Management and Maintenance) fully meet the network's needs for high-performance, easy-to-manage and energy-saving equipment.
VxLAN features
The H3C S5580X-HI series switches support VxLAN (Virtual Extensible LAN) technology. VxLAN encapsulates data packets sent by virtual machines in UDP and uses the physical network's IP/MAC address as the outer header before transmitting them over the physical IP network. Upon arrival at the destination, the tunnel endpoint decapsulates the packets and sends the data to the target virtual machine. This solves the problem of long-distance virtual machine migration between geographically dispersed data centers and supports EVPN mode.
Telemetry visualization
The H3C S5580X-HI series switches support Telemetry technology, which can send real-time resource information and alarm information of the switches to the operation and maintenance platform via the gRPC protocol. The operation and maintenance platform analyzes the real-time data and can realize functions such as network quality backtracking, fault diagnosis, risk warning, and architecture optimization, so as to accurately protect the user experience.
Netstream Visualization
NetStream is a statistical technique based on network flow information. It defines a method for statistically analyzing network traffic output by devices. Devices perform statistical analysis on the data forwarded by them and report it to a network traffic analyzer. After merging and processing, the data is stored in a database for further analysis.
The H3C S5580X-HI series switches support Netstream network flow information statistics technology, which can analyze and count traffic, and create flow tables to realize one-way/two-way NetStream functions.
Rich QoS policies
The H3C S5580X-HI series switches support Layer 2 to Layer 4 packet filtering, providing flow classification based on source MAC address, destination MAC address, source IP address, destination IP address, TCP/UDP port number, protocol type, and VLAN. They offer flexible queue scheduling algorithms, allowing configuration based on both ports and queues, supporting Strict Priority (SP), Weighted Fair Queuing (WFQ), and SP+WFQ modes. They also support Committed Access Rate (CAR) functionality. Port mirroring is supported in both inbound and outbound directions, enabling monitoring of packets on specified ports and copying data packets from one port to the monitoring port for network detection and troubleshooting. Furthermore, the H3C S5580X-HI series switches support sFlow functionality, sampling network packets for precise monitoring of network traffic on gigabit/10-gigabit high-speed networks, facilitating statistical analysis and control of network traffic.
iNQA Intelligent Network Quality Analysis
H3C S5580X-HI series supports iNQA*(Intelligent Network Quality Analyzer) iNQA is a detection mechanism suitable for large-scale IP networks that can quickly measure network performance. The H3C S5580X-HI currently supports packet loss measurement, which can measure forward, reverse, and bidirectional packet loss (including the number of lost packets, packet loss rate, number of lost bytes, and byte loss rate). The measurement results can be used to quickly locate the time, location, and severity of packet loss.
eMDI Enhanced Media Transmission Quality
The H3C S5580X-HI series supports eMDI (Enhanced Media Delivery Index), a network quality monitoring and fault localization solution specifically designed for video and audio services. eMDI allows for real-time monitoring and analysis of specified service packets carried by TCP or RTP on various network nodes within an IP network. Network administrators can combine monitoring and analysis results from multiple network nodes to quickly pinpoint the location of faults.
Audio quality analysis
Multimedia audio and video services are widely used in daily life, with rich and diverse content, and users' demands for multimedia service experiences are constantly increasing. Traditional network equipment does not distinguish between multimedia traffic and other traffic during user traffic transmission. When network congestion occurs, multimedia audio and video services may experience stuttering, seriously affecting the user experience.
The H3C S5580X-HI series supports service quality analysis functions, which can identify user-based SIP-based services.*For multimedia traffic using the Session Initiation Protocol (SIP), this device will prioritize forwarding such traffic after enabling this function to ensure service quality. Furthermore, this device will analyze such traffic, collect and save traffic information and session information.
Excellent management
The H3C S5580X-HI series switches support a rich set of management interfaces, such as Console ports and out-of-band management ports. They support SNMPv1/v2/v3 (Simple Network Management Protocol) and are compatible with common network management platforms like OpenView and the iMC intelligent management center. CLI command line and TELNET are supported for easier device management, and SSH 2.0 and other encryption methods enhance security.
The H3C S5580X-HI series switches support SPAN/RSPAN mirroring and multiple mirror observation ports, enabling network traffic analysis to facilitate appropriate management and maintenance measures. This makes previously invisible network service application traffic readily apparent and provides users with various network flow analysis reports to help them optimize network structure and adjust resource deployment in a timely manner.
Professional lightning protection
The H3C S5580X-HI series switches employ professional built-in surge protection technology, supporting industry-leading 10KV service port surge protection capabilities, which can greatly reduce the damage rate of equipment caused by lightning strikes even in harsh working environments.
Networking applications
Applications at the access layer
In campus networks or enterprise networks, the S5580X-HI can directly connect to end users via gigabit speeds, and then uplink to aggregation switches and core devices via 10G/25G links.

Figure 1-1 Application in the access layer
Product Specifications
model | S5580X-32T4X4YC-HI | S5580X-48T4YC-HI | S5580X-32S8T4X4YC-HI | S5580X-48S4YC-HI | S5580X-32P4X4YC-HI | S5580X-48P4YC-HI | |
Switching capacity | 2.56Tbps/25.6Tbps | ||||||
Packet forwarding rate | 786Mpps/822Mpps | ||||||
Fully equipped weight | ≤6.6kg | ≤6.7kg | ≤6.6kg | ≤6.7kg | ≤7.9kg | ≤8.1kg | |
External dimensions (width × depth × height) (unit: mm) | 440×360×44 | 440×360×44 | 440×360×44 | 440×360×44 | 440×400×44 | 440×400×44 | |
Console port | 1 | ||||||
Management Ethernet port | 1 | ||||||
USB interface | 1 | ||||||
10/100/1000BASE-T Ethernet Port | 32 | 48 | 8 (Combo with Gigabit optical port) | - | 32 | 48 | |
100/1000BASE-X SFP optical port | - | - | 32 | 48 | - | - | |
1/10GE SFP+ Optical Port | 4 | - | 4 | 4 | - | ||
10/25GE SFP28 optical port | 4 | 4 | 4 | 4 | 4 | 4 | |
Expansion slots | 1 | ||||||
Expansion board | Firewall card Eagle Vision Card mini iMC card slot 2-port 10 Gigabit SFP Plus Ethernet optical interface module 4-port 10 Gigabit SFP Plus Ethernet optical interface module 8-port 10 Gigabit SFP Plus interface module 8-port 10 Gigabit SFP Plus with MACSec interface module 8-port 1/2.5/5G BASE-T Ethernet electrical interface module 8-port 1/2.5/5/10G BASE-T Ethernet electrical interface module 8-port 25G SFP28 Ethernet optical interface module 2-port 40G QSFP Plus interface module 2-port 100G QSFP28 interface module | ||||||
Power module slot | 2 | ||||||
Fan module slot | 2 | ||||||
PoE | - | Supports 802.3bt/PoE++, with a maximum of 90W PoE output per port, and is compatible with 802.3at/PoE+ and 802.3af/PoE. | |||||
Input voltage | comminicate | Rated voltage range: 100V~240V AC, 50/60Hz Maximum voltage range: 90V~290V AC, 47~63Hz | |||||
DC | Rated voltage range: -48V to -60V DC Maximum voltage range: -36V to -72V DC | ||||||
Static power consumption | Single AC: 32W | Single AC: 34W | Single AC: 29W | Single AC: 29W | Single AC: 48W | Single AC: 54W | |
Typical power consumption | Single AC: 50W | Single AC: 55W | Single AC: 54W | Single AC: 44W | Single AC: 69W | Single AC: 78W | |
Full load power consumption | Single AC: 90W | Single AC: 94 | Single AC: 108W | Single AC: 135W | Single AC: 1705W (1470W PoE output) For the total power consumption and PoE power consumption of each power supply combination, please refer to the hardware description manual. | Single AC: 1690W (1470W PoE output) For the total power consumption and PoE power consumption of each power supply combination, please refer to the hardware description manual. | |
Operating ambient temperature | -5ºC~50ºC | ||||||
Relative humidity of the working environment (non-condensing) | 5%~95% | ||||||
characteristic | Feature Description |
Port aggregation | Supports 1G port aggregation Supports 10G port aggregation Supports 25G port aggregation Support static aggregation Support dynamic aggregation |
Port characteristics | Supports IEEE 802.3x flow control Supports storm suppression based on port rate percentage Supports PPS-based storm suppression Supports bps-based storm suppression |
Jumbo Frame | Supports a maximum frame length of 10K |
MAC address table | Supports static, dynamic, and black hole MAC addresses. Supports source MAC address filtering Supports setting the maximum number of port MAC addresses to learn. |
VLAN | Supports 802.1Q VLANs Supports 4K VLANs Supports port-based VLANs Supports QinQ, flexible QinQ Supports Guest VLAN STP, RSTP, MSTP, PVST Support MVRP Supports Voice VLAN VLANs that support policies Supports VLANs based on IP subnets Supports protocol-based VLANs Supports MAC-based VLANs |
Layer 2 ring network protocol | Supports STP/RSTP/MSTP/PVST protocols Supports STP Root Protection Supports BPDU Protection Supports G.8032 Ethernet Ring Protection Protocol (ERPS), with a switching time of ≤50ms, and is compatible with other products that support this protocol. Supports SmartLink tree topology and SmartLink multi-instance, providing millisecond-level protection for primary and backup links. Supports RRPP ring topology and RRPP multi-instance support, including port single-pass detection, Root Protection, Loop Protection, Edge Port, and BPDU Protection. Supports RPR Light hard loop function, convergence time ≤1ms |
DHCP | DHCPv4/v6 Client DHCP Snooping、DHCPv6 Snooping DHCPv4/v6 Relay DHCPv4/v6 Server DHCP Snooping option82/DHCP Relay option82 |
Device virtualization | Supports IRF2 stacking, with a maximum of 9 units supported per stack. Supports distributed device management, distributed link aggregation, and distributed elastic routing. Supports stacking via standard Ethernet interfaces and other methods. Supports local stacking and remote stacking Supports cross-device link aggregation M-LAG |
IP Router | Supports IPv4/IPv6 static routing and dual-stack operation. Supports RIPv1/v2 and RIPng Supports OSPFv1/v2 and OSPFv3 Supports BGP4 and BGP4+ for IPv6 支持IS-IS,IS-IS V6 Supports equal-cost routing and policy-based routing. Supports VRRP/VRRPv3 Supports OSPF multi-process, MD5 encryption verification, and STUB/NSSA zones. Supports setting route cost and inter-area route filtering. |
IPv6 | Supports IPv4/IPv6 dual-stack protocol Supports Neighbor Discovery (ND) PMTU supported Supports IPv6-Ping, IPv6-Tracert, IPv6-Telnet, IPv6-TFTP, IPv6-ICMP, IPv6-DNS, IPv6-FTP, IPv6-NTP Supports manual tunneling and automatic tunneling. Supports IPv4 over IPv6 tunnels Supports 6to4 tunnels Supports ISATAP tunnel Supports GRE tunnel |
multicast | Supports IGMP Snooping v1/v2/v3, MLD Snooping v1/v2/v3 Support PIM Snooping Supports MLD Proxy Supports multicast VLANs Supports multicast load balancing with bundled ports Supports port-based multicast traffic statistics Supports controllable multicast Supports IGMP v1/v2/v3, MLD v1/v2 Supports PIM-DM, PIM-SM, and PIM-SSM. Supports MSDP, MSDP for IPv6 支持MBGP,MBGP for IPv6 |
Mirror | Support streaming mirroring Supports N:1 port mirroring Supports local and remote port mirroring Support ERSPAN |
ACLQoS | Supports L2 (Layer 2) to L4 (Layer 4) packet filtering functions, providing flow classification based on source MAC address, destination MAC address, source IP (IPv4/IPv6) address, destination IP (IPv4/IPv6) address, TCP/UDP port number, and VLAN. Supports Time Range ACLs Supports bidirectional ACL policies for both inbound and outbound directions. Supports issuing ACLs based on VLANs It supports limiting the rate at which packets are received and sent at a port. Support message redirection Supports 802.1p and DSCP priority remarking of messages. Supports CAR (Committed Access Rate) functionality It supports flexible queue scheduling algorithms, allowing configuration based on both port and queue, and supports three modes: SP, WFQ, and SP+WFQ. |
MPLS* | Support MPLS MCE Supports MPLS L3VPN Supports MPLS L2VPN Support MPLS SR |
VxLAN | Supports VXLAN Layer 2 switching Supports VXLAN routing and switching Supports VXLAN centralized gateways and distributed Anycast gateways. Supports BGP EVPN Supports OpenFlow+Netconf VxLAN centralized control plane and automated deployment |
Safety features | Supports hierarchical user management and password protection Supports centralized MAC authentication Supports 802.1X Supports Storm Constraint Support AAA certification Supports Portal authentication Supports RADIUS certification Support HWTACACS Supports SSH and SSH 2.0. Supports port isolation, port security, and Sticky MAC. Supports combined binding of IP, MAC, port, and VLAN. Supports blacklists and whitelists Support MFF Support EAD Support MACsec Supports SAVI and SAVA to ensure IPv6 environment security.* Supports DHCP Snooping and DHCPv6 Snooping to prevent spoofing DHCP servers. Supports Dynamic ARP Inspection (DAI) to prevent man-in-the-middle attacks and ARP denial-of-service attacks. Supports protection against DOS attacks Supports ARP attack prevention Supports protection against ICMP attacks Support CPU protection Supports BPDU guard and Root guard Supports IP+MAC+port binding Supports IP Source Guard Support HTTPS Supports SSL Supports PKI (Public Key Infrastructure). Supports dedicated basic network protection policies and CPU attack prevention. |
Management and maintenance | Supports command-line interface (CLI) configuration Supports Telnet remote configuration Supports converged AC, and can manage up to 2K APs. Supports configuration via Console port Supports scheduled jobs Supports standalone ISSU* Supports OAM 802.1AG and 802.3AH Support Y.1731 Supports hardware BFD for VRRP/IS-IS/BGP/RIP/OSPF/static routes, with a minimum detection interval of 3ms. 支持SNMP(Simple Network Management Protocol) Supports NetStream functionality, with a 1:1 sampling ratio for traffic analysis. Supports iMC network management system Supports Telemetry visualization Supports NETCONF network management protocol Supports Python script management and maintenance Support public cloud management Supports Syslog system logs Supports tiered alarms Supports NTP and PTP Supports power alarm function Supports fan and temperature alarms Supports debugging information output Supports Ping and Tracert Track support Supports Telnet remote maintenance Supports file upload and download via USB, and supports USB setup. Supports Xmodem protocol for loading and upgrading. Supports FTP (File Transfer Protocol) loading and upgrade. Supports TFTP (Trivial File Transfer Protocol) loading and upgrades. |
Green and energy-saving | Automatic Power Down Function for Ports Port scheduled down function (Schedule job) Supports EEE (802.3az) energy-saving standard |