QuickSpecs
HPE Networking Comware Switch Series 5550 HI QuickSpecs
Table of Contents
The HPE Networking Comware Switch Series 5550 HI is a family of stackable L3 access and aggregation switches powered by HPE Comware OS delivering scalability and resiliency for medium and large enterprise campus networks.
With 36 and 48 MACsec-256 enabled 1 GbE downlink ports, 10/25 GbE uplinks, combo ports, expansion slots for dual 100 GbE modules, and up to 90W of 802.3bt PoE per port, this flexible series delivers security, modularity, and performance for your network. Intelligent Resilient Fabric (IRF) stacking up to 9-members adds scale and high availability while Intelligent Network Quality Analyzer (iNQA) supports real-time visibility into network health and performance.
Overview
Network visibility, management, and operation tools for this series include standard CLI and the Smart Management Center (SmartMC), embedded and ready to use at no additional cost. The series integrates with HPE Aruba Networking IMC, delivering a centralized point of control for your entire network.
HPE NW CW Sw 48F 4Y 1-slot 5550HI (S5T55A)
HPE NW CW Sw 32G 4P 4Y 1-slot 5550HI (S5T56A)
HPE NW CW Sw 48G 4Y 1-slot 5550HI (S5T57A)
HPE NW CW Sw 32G PoE8 4P 4Y 1s 5550HI (S5T58A)
HPE NW CW Sw 48G PoE8 4Y 1-slot 5550HI (S5T59A)
Key Features
- – Stackable gigabit L3 access switches with 10/25 GbE uplinks, supporting MPLS, VPLS, L3 multicast, VXLAN/EVPN, OSPF, VRRP, VRRPE, RIP, and routed access. 802.3bt up to 90 watts per port on PoE models.
- – 36 and 48 port options with larger 128K MAC tables, up to 744 Gbps of switching capacity and 553 Mpps of forwarding. Scales up to 9-members with Intelligent Resilient Fabric (IRF) stacking. PoE+ for up to 30 Watts of PoE power per port on all ports simultaneously
- – Adds VXLAN and EVPN for isolation and scalability of L2/L3 overlay and multicast services, containerization for application hosting, and industry-standard MACsec 256 encryption.
- – Intelligent Network Quality Analyzer (iNQA) measures network packet loss performance and provides visibility into real-time application performance and health.
- – DRNI combines multiple physical switches into one virtual distributed-relay (DR) system for doubling aggregate bandwidth, faster forwarding, resiliency, and high availability.
- – Standard CLI and Smart Management Center (SmartMC) embedded and ready to use, delivering network visibility, management, and operations at no additional cost.
Standard Features
Software-defined networking
OpenFlow
Supports OpenFlow 1.3 specification to enable SDN by allowing separation of the data (packet forwarding) and control (routing decision) paths
Quality of Service (QoS)
Advanced classifier based QoS
Classifies traffic using multiple match criteria based on Layer 2, 3, and 4 information; applies QoS policies such as setting priority level and rate limit to selected traffic on a per-port or per-VLAN basis
VXLAN hardware support
VXLAN L2/L3 gateway support for up to 1024 unicast tunnels with 511 VXLAN/per tunnel.
EVPN support
Used as overlay control plane and provides virtual connectivity between different Layer 2/3 domains over an IP or MPLS network
Powerful QoS feature
Creates traffic classes based on access control lists (ACLs), IEEE 802.1p precedence, IP, and DSCP or Type of Service (ToS) precedence; supports filter, redirect, mirror, or remark; supports the following congestion actions: strict priority
(SP) queuing, weighted round robin (WRR), weighted fair queuing (WFQ), weighted random early discard (WRED), weighted deficit round robin (WDRR), SP+WDRR, and SP+WFQ Supports IPv6 and fully featured L3 functionality, including RIP, OSPF, ISIS, BGP, and PIM without additional software
licensing.
Storm restraint and Broadcast control
Allows limitations of broadcast, multicast, and unknown unicast traffic rate to reduce unwanted network broadcast traffic
Management
Friendly port names
Allows assignment of descriptive names to ports
sFlow
Provides scalable ASIC-based wire-speed network monitoring and accounting with no impact on network performance that allows network operators to gather a variety of sophisticated network statistics and information for capacity planning and real-time network monitoring
Complete session logging
Provides detailed information for problem identification and resolution
Remote configuration and management
Enables configuration and management through a CLI located on a remote device
Manager and operator privilege levels
Provides read-only (operator) and read/write (manager) access on CLI management interfaces
Management VLAN
Segments traffic to and from management interfaces, including CLI/Telnet and SNMP
Command authorization
Leverages RADIUS/HWTACACS to link a custom list of CLI commands to an individual network administrator's login; also provides an audit trail
Remote monitoring (RMON)
Uses standard SNMP to monitor essential network functions; supports events, alarm, history, and statistics group plus a private alarm extension group
Multiple configuration files
Stores easily to the flash image
Remote intelligent mirroring
Mirrors ingress/egress ACL-selected traffic from a switch port or VLAN to a local or remote switch port anywhere on the network
Network Management
SNMP v1/v2c/v3, MIB-II with Traps, and RADIUS Authentication Client MIB (RFC 2618); embedded HTML management tool with secure access
IPv6 management
Provides future-proof networking as the switch is capable of being managed whether the attached network is running IPv4 or IPv6; supports pingv6, tracertv6, Telnetv6, TFTPv6, DNSv6, syslogv6, FTPv6, SNMPv6, DHCPv6, and RADIUS for IPv6
Troubleshooting
Ingress and egress port monitoring enables network problem-solving; virtual cable tests provide visibility into cable problems
HPE Intelligent Management Center (IMC)
Integrates fault management, element configuration, and network monitoring from a central vantage point; built-in support for third-party devices enables network administrators to centrally manage all network elements with a variety of automated tasks, including discovery, categorization, baseline configurations, and software images; the software also provides configuration comparison tools, version tracking, change alerts, and more.
Connectivity
Auto-MDIX
Automatically adjusts for straight-through or crossover cables on all 10/100/1000 ports
Packet storm protection
Protects against broadcast, multicast, or unicast storms with user-defined thresholds
Ethernet operations, administration and maintenance (OAM)
Detects data link layer problems that occurred in the "last mile" using the IEEE 802.3ah OAM standard; monitors the status of the link between two devices
Flow control
Provides back pressure using standard IEEE 802.3x, reducing congestion in heavy traffic situations
Fixed 10 GbE ports
Provides four fixed SFP+ ports for a 20 GbE connection to the network without the need for additional extension interface modules
Jumbo packet support
Supports up to 10000-byte frame size to improve the performance of large data transfers
IEEE 802.3at Power over Ethernet (PoE+)
Provides up to 30 W per port that allows support of the latest PoE+-capable devices such as IP phones, wireless access points, and security cameras, as well as any IEEE 802.3af-compliant end device; eliminates the cost of additional electrical cabling and circuits that would otherwise be necessary in IP phone and WLAN deployments.
Performance
Supports Equal-Cost Multipath
Enables multiple equal-cost links in a routing environment to increase link redundancy and scale bandwidth.
Hardware-based wirespeed access control lists (ACLs)
Help provide high levels of security and ease of administration without impacting network performance with a feature-rich TCAM-based ACL implementation
Intelligent Network Quality Analyzer (iNQA)
Helps in advanced packet loss and delay measurement, measures network packet loss performance, forward, reverse, and two-way packet loss, including lost Number of messages and bytes, message loss and byte loss rate
Nonblocking architecture
Delivers up to 336 Gb/s of wire-speed switching with a nonblocking switching fabric and up to 180 million pps throughput
Virtual Private Network (VPN)
Generic Routing Encapsulation (GRE)
Transports Layer 2 connectivity over a Layer 3 path in a secured way; enables the segregation of traffic from site to site
Resiliency and High Availability
Separate data and control paths
Separate control from services and keeps service processing isolated; increases security and performance
Distributed Resilient Network Interconnection (DRNI)
Enables link aggregation from multiple switches to implement device-level link backup for node redundancy. DRNI also simplifies network topology by virtualizing multiple physical devices into one logical device.
Device Link Detection Protocol (DLDP)
Monitors link connectivity and shuts down ports at both ends if unidirectional traffic is detected, preventing loops in STP-based networks
Intelligent Resilient Fabric (IRF)
Creates virtual resilient switching fabrics, where up to nine switches perform as a single L2 switch and L3 router; switches do not have to be co-located and can be part of a disaster-recovery system; servers or switches can be attached using standard LACP for automatic load balancing and high availability; can eliminate need for complex protocols like Spanning Tree Protocol, Equal-Cost Multipath (ECMP), or VRRP, thereby simplifying network operation
Rapid Ring Protection Protocol (RRPP)
Connects multiple switches in a high-performance ring using standard Ethernet technology; traffic can be rerouted around the ring in less than 50 ms, reducing the impact on traffic and applications
Smart Link
Allows under 100ms failover between links
Virtual Router Redundancy Protocol (VRRP)
Allows groups of two routers to dynamically back each other up to create highly available routed environments
IRF Capability
Provides single IP address management for a resilient virtual switching fabric of up to nine switches with stacking bandwidth of up to 160 Gbps to enhance performance and reliability with uninterrupted L2 switching and L3 forwarding. It delivers simpler, flatter, and more agile networks by reducing the need for complex protocols.
Spanning Tree, PVST+, MSTP, RSTP
Provides redundant links while preventing network loops
Internal Dual Redundant Power Supply
Provides high reliability by keeping network up while delivering up to 1440 Watts of PoE+
Manageability
Dual flash images
Provides independent primary and secondary operating system files for backup while upgrading
Multiple configuration files
Allow multiple configuration files to be stored to a flash image
Troubleshooting
Allows ingress and egress port monitoring, enabling network problem solving; virtual cable tests provide visibility into cable problems
IPv6 management
Future-proofs networking, as the switch is capable of being managed whether the attached network is running IPv4 or IPv6; supports pingv6, tracertv6, Telnetv6, SSH2 v6 and SFTP v6
Layer 2 Switching
IP multicast snooping and data-driven IGMP
Automatically prevents flooding of IP multicast traffic
Internet Group Management Protocol (IGMP) and Multicast Listener Discovery (MLD) protocol snooping
Controls and manages the flooding of multicast packets in a Layer 2 network
32K MAC addresses
Provide access to many Layer 2 devices
IEEE 802.1ad QinQ and selective QinQ
Increase the scalability of an Ethernet network by providing a hierarchical structure; connect multiple LANs on a high-speed campus or metro network
10GbE port aggregation
Allows grouping of ports to increase overall data throughput to a remote device Spanning Tree/MSTP, RSTP, and STP root guard Prevent network loops
64 MSTP instances
Allow multiple configurations of STP per VLAN group
Isolation at data link layer with private VLANs
Provides, through a two-tier VLAN structure, an additional layer of protection, simplifying network configuration while saving VLAN resources
VLAN support and tagging
Supports the IEEE 802.1Q (4K VLAN IDs)
Layer 3 Services
Longest Prefix Match (LPM)
Helps in enabling and scaling multipathing, larger switch route forwarding table, faster destination resolution
Address Resolution Protocol (ARP)
Determines the MAC address of another IP host in the same subnet; supports static ARPs; gratuitous ARP allows detection of duplicate IP addresses; proxy ARP allows normal ARP operation between subnets or when subnets are separated by a Layer 2 network
Dynamic Host Configuration Protocol (DHCP)
Simplifies the management of large IP networks; supports client, DHCP Relay enables DHCP operation across subnets
Loopback interface address
Defines an address that can always be reachable, improving diagnostic capability
User Datagram Protocol (UDP) helper function
Allows UDP broadcasts to be directed across router interfaces to specific IP unicast or subnet broadcast addresses and prevents server spoofing for UDP services such as DHCP
Route maps
Provide more control during route redistribution; allow filtering and altering of route metrics
DHCP server
Centralizes and reduces the cost of the IPv4 address management
Layer 3 Routing
IPv4 routing protocols
Support static routes, RIP, OSPF, ISIS, and BGP
IPv6 routing protocols
Provide routing of IPv6 at wire speed; support static routes, RIPng, OSPFv3, IS-ISv6, and BGP4+ for IPv6
PIM-SSM, PIM-DM, and PIM-SM (for IPv4 and IPv6)
Support IP Multicast address management and inhibition of DoS attacks
MPLS support
Provides extended support of MPLS, including MPLS VPNs and MPLS Traffic Engineering (MPLS TE)
Virtual Private LAN Service (VPLS)
Establishes point-to-multipoint Layer 2 VPNs across a provider network
Bidirectional Forwarding Detection (BFD)
Enables link connectivity monitoring and reduces network convergence time for RIP, OSPF, BGP, IS-IS, VRRP, MPLS, and IRF.
Policy-based routing
Makes routing decisions based on policies set by the network administrator
Equal-Cost Multipath (ECMP)
Enables multiple equal-cost links in a routing environment to increase link redundancy and scale bandwidth
IPv6 tunneling
Allows a smooth transition from IPv4 to IPv6 by encapsulating IPv6 traffic over an existing IPv4 infrastructure
Security
Access control lists (ACLs)
Provide IP Layer 2 to Layer 4 traffic filtering; support global ACL, 4K VLAN ACL table size, port ACL, and IPv6 ACL; up to 2K ingress ACLs and 512 egress ACLs are supported
IEEE 802.1X
Defines an industry-standard method of user authentication using an IEEE 802.1X supplicant on the client in conjunction with a RADIUS server
MACsec encryption
Secures connected devices by establishing bi-directional encrypted links after an exchange and verification of security keys. Increased demand for PoE connected devices and a dramatic growth in sophistication and frequency of cyber security threats makes this feature highly relevant
Supports IPSec VPN for secure communications at the network layer
MAC-based authentication
Client is authenticated with the RADIUS server based on the client's MAC address
Identity-driven security and access control
- – Per-user ACLs
- Permits or denies user access to specific network resources based on user identity and time of day, allowing multiple types of users on the same network to access specific network services without risking network security or providing unauthorized access to sensitive data
- – Automatic VLAN assignment
- Automatically assigns users to the appropriate VLAN based on their identities
Port security
Allows access only to specified MAC addresses, which can be learned or specified by the administrator
Secure FTP/ SCP
Allows secure file transfer to and from the switch; protects against unwanted file downloads or unauthorized copying of a switch configuration file
STP BPDU port protection
Blocks Bridge Protocol Data Units (BPDUs) on ports that do not require BPDUs, preventing forged BPDU attacks
DHCP protection
Blocks DHCP packets from unauthorized DHCP servers, preventing denial-of-service attacks
DHCP snooping
Helps ensure that DHCP clients receive IP addresses from authorized DHCP servers and maintain a list of DHCP entries for trusted ports; prevents reception of fake IP addresses and reduces ARP attacks, improving security
DHCPv6 snooping
Ensures that DHCPv6 clients obtain IPv6 addresses from authorized DHCPv6 servers and record IP-to-MAC mappings of DHCPv6 clients
Dynamic ARP protection
Blocks ARP broadcasts from unauthorized hosts, preventing eavesdropping or theft of network data
STP root guard
Protects the root bridge from malicious attacks or configuration mistakes
Guest VLAN
Provides a browser-based environment to authenticated clients similar to IEEE 802.1X
Port isolation
Secures and adds privacy, and prevents malicious attackers from obtaining user information
Endpoint Admission Defense (EAD)
Provides security policies to users accessing a network
RADIUS/HWTACACS
Eases switch management security administration by using a password authentication server
Simplified and Secure Management
Management access is provided via CLI, SNMP, Netconf, Yang and RestAPIs
Unicast Reverse Path Forwarding (URPF)
Allows normal packets to be forwarded correctly, but discards the attaching packet due to lack of reverse path route or incorrect inbound interface; prevents source spoofing and distributed attacks; supports distributed URPF
IP source guard
Helps prevent IP spoofing attacks
IPv6 source guard
Help prevent IPv6 spoofing attacks using ND Snooping as well as DHCPv6 Snooping
ND Snooping
Allows only packets with a legally obtained IPv6 address to pass
Convergence
LLDP-MED (Media Endpoint Discovery)
Defines a standard extension of LLDP that stores values for parameters such as QoS and VLAN to automatically configure network devices such as IP phones
Internet Group Management Protocol (IGMP)
Utilizes Any-Source Multicast (ASM) or Source-Specific Multicast (SSM) to manage IPv4 multicast networks; supports
IGMPv1, v2, and v3
IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
Facilitates easy mapping using network management applications with LLDP automated device discovery protocol
Multicast Source Discovery Protocol (MSDP)
Allows multiple PIM-SM domains to interoperate; is used for inter-domain multicast applications
Multicast VLAN
Allows multiple VLANs to receive the same IPv4 or IPv6 multicast traffic, lessening network bandwidth demand by reducing or eliminating multiple streams to each VLAN
Link Layer Discovery Protocol (LLDP)
It is vendor-neutral and enables the use of heterogenous network devices by advertising their identity, capabilities, and neighbors on a local area network based on IEEE 802 technology
IEEE 802.3at Power over Ethernet (PoE+)
Provides up to 30 W per port that allows support of the latest PoE+-capable devices such as IP phones, wireless access points, and security cameras, as well as any IEEE 802.3af-compliant end device; eliminates the cost of additional electrical cabling and circuits that would otherwise be necessary in IP phone and WLAN deployments
PoE allocations
Supports multiple methods (automatic, IEEE 802.3af class, LLDP-MED, or user-specified) to allocate PoE power for more efficient energy savings
Voice VLAN
Automatically assigns VLAN and priority for IP phones, simplifying network configuration and maintenance
IP multicast snooping (data-driven IGMP)
Prevents flooding of IP multicast traffic
Additional Information
Green IT and power
Improves energy efficiency through the use of the latest advances in silicon development; shuts off unused ports and utilizes variable-speed fans, reducing energy costs
Unified Hewlett Packard Enterprise Comware operating system with modular architecture
Provides an easy-to-enhance-and-extend feature set, which doesn't require whole-scale changes; all switching, routing, and security platforms leverage the Comware OS, a common unified modular operating system
Energy Efficient Ethernet (EEE) support
Reduces power consumption in accordance with IEEE 802.3az
Warranty and support
Limited Lifetime Warranty
See HPE Aruba Networking Support Servicesfor warranty and support information included with your product purchase.
Software releases
To find software for your product, refer to http://www.hpe.com/networking/support; for details on the software releases available with your product purchase, refer to HPE Aruba Networking Support Services.
Configuration Information
BTO Models | ||
| | Switch Chassis | |
| Rule # | Description | SKU |
| 1, 2, 3 | HPE Networking Comware Switch 48p SFP 1G 4p SFP28 10G/25G 1-slot 5550HI | S5T55A |
| |
| |
| 1, 2, 3 | HPE Networking Comware Switch 32p 10M/100M/1G 4p SFP+ 1G/10G 4p SFP28 10G/25G 1-slot 5550HI | S5T56A |
| |
| |
| 2, 3 | HPE Networking Comware Switch 48p 10M/100M/1G 4p SFP28 10G/25G 1-slot 5550HI | S5T57A |
| |
| |
| 1, 2, 3 | HPE Networking Comware Switch 32p 10M/100M/1G PoE8 4p SFP+ 1G/10G 4p SFP28 10G/25G 1-slot 5550HI | S5T58A |
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| |
| 2, 3 | HPE Networking Comware Switch 48p 10M/100M/1G PoE8 4p SFP28 10G/25G 1-slot 5550HI | S5T59A |
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| | Configuration Rules | |
| Rule # | Description | |
| 1 | The following Transceivers install into this Switch: (SFP Ports) | |
| | HPE Networking X120 1G SFP LC SX Transceiver | JD118B |
| | HPE Networking X120 1G SFP LC LX Transceiver | JD119B |
| | HPE Networking X120 1G SFP RJ45 T Transceiver | JD089B |
| | HPE Networking X120 1G SFP LC BX 10-U Transceiver | JD098B |
| | HPE Networking X120 1G SFP LC BX 10-D Transceiver | JD099B |
| | HPE Networking X120 1G SFP LC LH100 Transceiver | JD103A |
| 2 | The following Transceivers install into this Switch: (SFP+ Ports) | |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Downlink Transceiver | JL740A |
| | HPE Networking X130 10G SFP+ LC ER 40km Transceiver | JG234A |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Uplink Transceiver | JL739A |
| | HPE Networking X130 10G SFP+ LC LH 80km Transceiver | JG915A |
| | HPE Networking X130 10G SFP+ LC SR Transceiver | JD092B |
| | HPE Networking X130 10G SFP+ LC LR Transceiver | JD094B |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Uplink Transceiver | JL737A |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Downlink Transceiver | JL738A |
| | HPE Networking X240 10G SFP+ SFP+ 3m DAC Cable | JD097C |
| | HPE Networking X240 10G SFP+ SFP+ 5m DAC Cable | JG081C |
| | HPE Networking X240 10G SFP+ SFP+ 0.65m DAC Cable | JD095C |
| | HPE Networking X240 10G SFP+ SFP+ 1.2m DAC Cable | JD096C |
| | HPE Networking X2A0 10G SFP+ to SFP+ 7m Active Optical Cable | JL290A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 10m Active Optical Cable | JL291A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 20m Active Optical Cable | JL292A |
| 3 | The following 25G Transceivers install into this Switch: (SFP28 Ports) | |
| | HPE Networking X190 25G SFP28 LC SR 100m MM Transceiver | JL293A |
| | HPE Networking 25G SFP28 LC LR 10km SMF Transceiver | JL855A |
| | HPE Networking X240 25G SFP28 to SFP28 1m DAC Cable | JL294A |
| | HPE Networking X240 25G SFP28 to SFP28 3m DAC Cable | JL295A |
| | HPE Networking X240 25G SFP28 to SFP28 5m DAC Cable | JL296A |
| | HPE Networking X2A0 25G SFP28 to SFP28 3m Active Optical Cable | JH955A |
| | HPE Networking X2A0 25G SFP28 to SFP28 5m Active Optical Cable | JH956A |
| | HPE Networking X2A0 25G SFP28 to SFP28 7m Active Optical Cable | JL297A |
| | HPE Networking X2A0 25G SFP28 to SFP28 10m Active Optical Cable | JL298A |
| | HPE Networking X2A0 25G SFP28 to SFP28 20m Active Optical Cable | JL299A |
| Notes: | OCA Only Model Selection Form - HPE Aruba Networking > Switches > HPE Networking Comware > Campus > 5550 HI Switch Series | |
Modules | ||
| Rule # | Description | SKU |
| 2, 5 | HPE Networking Comware Module 2p QSFP28 100G 5550HI | S5T60A |
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| 1, 4 | HPE Networking Comware Module 8p SFP28 25G 5550HI | S5T61A |
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| 1, 3 | HPE Networking Comware Module MACsec 8p SFP+ 1G/10G 5XX0HI | S6C30A |
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| 2 | HPE Networking Comware Module 2-port 40G QSFP+ 5520HI/5600HI | JH155A |
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| 6 | HPE Networking Comware Module 2p 10GBASE-T MACsec 5140/5520 | R9L65A |
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| 1, 6 | HPE Networking Comware Module 10GbE SFP+MACsec128 2p 5140HI/5520HI | JH157A |
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| 1, 3 | HPE Networking Comware Module 4-port 10/100/1000Base-T 6-port SFP (2P Combo) 5140HI/5520HI/5600HI | S0T02A |
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| 1 | HPE Networking Comware Module 8 Port SFP+ 5520HI/5600HI | S0T03A |
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| 1, 3 | HPE Networking Comware Module 4-port 1/10G SFP+ 5140HI/5520HI/5600HI | S0T04A |
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| | HPE Networking Comware Module 8-port 1/2.5/5/10GBASE-T 5140HI/5520HI/5600HI | S0T05A |
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| 4 | HPE Networking Comware Module 2-port SFP28 5140HI/5520HI/5600HI | S0T06A |
| |
| |
| | Configuration Rules | |
| Rule # | Description | |
| 1 | The following Transceivers install into this Switch: (SFP+ Ports) | |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Downlink Transceiver | JL740A |
| | HPE Networking X130 10G SFP+ LC ER 40km Transceiver | JG234A |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Uplink Transceiver | JL739A |
| | HPE Networking X130 10G SFP+ LC LH 80km Transceiver | JG915A |
| | HPE Networking X130 10G SFP+ LC SR Transceiver | JD092B |
| | HPE Networking X130 10G SFP+ LC LR Transceiver | JD094B |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Uplink Transceiver | JL737A |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Downlink Transceiver | JL738A |
| | HPE Networking X240 10G SFP+ SFP+ 3m DAC Cable | JD097C |
| | HPE Networking X240 10G SFP+ SFP+ 5m DAC Cable | JG081C |
| | HPE Networking X240 10G SFP+ SFP+ 0.65m DAC Cable | JD095C |
| | HPE Networking X240 10G SFP+ SFP+ 1.2m DAC Cable | JD096C |
| | HPE Networking X2A0 10G SFP+ to SFP+ 7m Active Optical Cable | JL290A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 10m Active Optical Cable | JL291A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 20m Active Optical Cable | JL292A |
| 2 | The following 40G Transceivers install into this Module: (Use #0D1 or #B01 if switch is CTO) | |
| | HPE Networking X140 40G QSFP+ LC LR4 SM 10km 1310nm Transceiver | JG661A |
| | HPE Networking X140 40G QSFP+ CSR4 300m Transceiver | JG709A |
| | HPE Networking X140 40G QSFP+ MPO SR4 Transceiver | JG325B |
| | HPE Networking X140 40G QSFP+ LC BiDi 100m MM Transceiver | JL251A |
| | HPE Networking X140 40G QSFP+ LC LR4L 2km SM Transceiver | JL286A |
| | HPE Networking X140 40G QSFP+ LC ER4 40km SM Transceiver | JL306A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 1m Direct Attach Copper Cable | JG326A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 3m Direct Attach Copper Cable | JG327A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 5m Direct Attach Copper Cable | JG328A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 1m Direct Attach Copper Splitter Cable | JG329A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable | JG330A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 5m Direct Attach Copper Splitter Cable | JG331A |
| | HPE Networking X2A0 40G QSFP+ to QSFP+ 7m Active Optical Cable | JL287A |
| | HPE Networking X2A0 40G QSFP+ to QSFP+ 10m Active Optical Cable | JL288A |
| 3 | The following 100M Transceivers install into this Module: (Use #0D1 or #B01 if switch is CTO) | |
| | HPE Networking X115 100M SFP LC FX Transceiver | JD102B |
| | HPE Networking X110 100M SFP LC LX Transceiver | JD120B |
| | HPE Networking X115 100M SFP LC BX 10-U Transceiver | JD100A |
| | HPE Networking X115 100M SFP LC BX 10-D Transceiver | JD101A |
| 4 | The following 25G Transceivers install into this Switch: (SFP28 Ports) | |
| | HPE Networking X190 25G SFP28 LC SR 100m MM Transceiver | JL293A |
| | HPE Networking 25G SFP28 LC LR 10km SMF Transceiver | JL855A |
| | HPE Networking X240 25G SFP28 to SFP28 1m DAC Cable | JL294A |
| | HPE Networking X240 25G SFP28 to SFP28 3m DAC Cable | JL295A |
| | HPE Networking X240 25G SFP28 to SFP28 5m DAC Cable | JL296A |
| | HPE Networking X2A0 25G SFP28 to SFP28 3m Active Optical Cable | JH955A |
| | HPE Networking X2A0 25G SFP28 to SFP28 5m Active Optical Cable | JH956A |
| | HPE Networking X2A0 25G SFP28 to SFP28 7m Active Optical Cable | JL297A |
| | HPE Networking X2A0 25G SFP28 to SFP28 10m Active Optical Cable | JL298A |
| | HPE Networking X2A0 25G SFP28 to SFP28 20m Active Optical Cable | JL299A |
| 5 | The following 100G Transceivers install into this Module: (Use #0D1 or #B01 if switch is CTO) | |
| | HPE Networking X150 100G QSFP28 MPO SR4 100m MM Transceiver | JL274A |
| | HPE Networking X150 100G QSFP28 eSR4 300m MM Transceiver | JH672A |
| | HPE Networking X150 100G QSFP28 LC LR4 10km SM Transceiver | JL275A |
| | HPE Networking X150 100G QSFP28 PSM4 500m SM Transceiver | JH420A |
| | HPE Networking X150 100G QSFP28 CWDM4 2km SM Transceiver | JH673A |
| | HPE Networking X150 100G QSFP28 LC SWDM4 100m MM Transceiver | JH419A |
| | HPE Networking X240 100G QSFP28 1m DAC Cable | JL271A |
| | HPE Networking X240 100G QSFP28 3m DAC Cable | JL272A |
| | HPE Networking X240 QSFP28 4xSFP28 1m Direct Attach Copper Cable | JL282A |
| | HPE Networking X240 QSFP28 4xSFP28 3m Direct Attach Copper Cable | JL283A |
| | HPE Networking X240 QSFP28 4xSFP28 5m Direct Attach Copper Cable | JL284A |
| | HPE Networking X240 100G QSFP28 5m DAC Cable | JL273A |
| | HPE Networking X2A0 100G QSFP28 5m Active Optical Cable | JL796A |
| | HPE Networking X2A0 100G QSFP28 to QSFP28 7m Active Optical Cable | JL276A |
| 6 | MACsec supported on last 8 ports of Modules R9L65A-AES256 and JH157A-AES128. | |
Transceivers | ||
| | FE Transceivers | |
| Rule # | Description | SKU |
| | HPE Networking X115 100M SFP LC FX Transceiver | JD102B |
| | HPE Networking X110 100M SFP LC LX Transceiver | JD120B |
| | HPE Networking X115 100M SFP LC BX 10-U Transceiver | JD100A |
| | HPE Networking X115 100M SFP LC BX 10-D Transceiver | JD101A |
| | SFP Transceivers | |
| Rule # | Description | SKU |
| | HPE Networking X120 1G SFP LC SX Transceiver | JD118B |
| | HPE Networking X120 1G SFP LC LX Transceiver | JD119B |
| | HPE Networking X120 1G SFP RJ45 T Transceiver | JD089B |
| | HPE Networking X120 1G SFP LC BX 10-U Transceiver | JD098B |
| | HPE Networking X120 1G SFP LC BX 10-D Transceiver | JD099B |
| | HPE Networking X120 1G SFP LC LH100 Transceiver | JD103A |
| | SFP+ Transceivers | |
| Rule # | Description | SKU |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Downlink Transceiver | JL740A |
| | HPE Networking X130 10G SFP+ LC ER 40km Transceiver | JG234A |
| | HPE Networking X130 10G SFP+ LC BiDi 40km-Uplink Transceiver | JL739A |
| | HPE Networking X130 10G SFP+ LC LH 80km Transceiver | JG915A |
| | HPE Networking X130 10G SFP+ LC SR Transceiver | JD092B |
| | HPE Networking X130 10G SFP+ LC LR Transceiver | JD094B |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Uplink Transceiver | JL737A |
| | HPE Networking X130 10G SFP+ LC BiDi 10km-Downlink Transceiver | JL738A |
| | HPE Networking X240 10G SFP+ SFP+ 0.65m DAC Cable | JD095C |
| | HPE Networking X240 10G SFP+ SFP+ 1.2m DAC Cable | JD096C |
| | HPE Networking X240 10G SFP+ SFP+ 3m DAC Cable | JD097C |
| | HPE Networking X240 10G SFP+ SFP+ 5m DAC Cable | JG081C |
| | HPE Networking X2A0 10G SFP+ to SFP+ 7m Active Optical Cable | JL290A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 10m Active Optical Cable | JL291A |
| | HPE Networking X2A0 10G SFP+ to SFP+ 20m Active Optical Cable | JL292A |
| | SFP28 Transceiver | |
| Rule # | Description | SKU |
| | HPE Networking X190 25G SFP28 LC SR 100m MM Transceiver | JL293A |
| | HPE Networking 25G SFP28 LC LR 10km SMF Transceiver | JL855A |
| | HPE Networking X240 25G SFP28 to SFP28 1m DAC Cable | JL294A |
| | HPE Networking X240 25G SFP28 to SFP28 3m DAC Cable | JL295A |
| | HPE Networking X240 25G SFP28 to SFP28 5m DAC Cable | JL296A |
| | HPE Networking X2A0 25G SFP28 to SFP28 3m Active Optical Cable | JH955A |
| | HPE Networking X2A0 25G SFP28 to SFP28 5m Active Optical Cable | JH956A |
| | HPE Networking X2A0 25G SFP28 to SFP28 7m Active Optical Cable | JL297A |
| | HPE Networking X2A0 25G SFP28 to SFP28 10m Active Optical Cable | JL298A |
| | HPE Networking X2A0 25G SFP28 to SFP28 20m Active Optical Cable | JL299A |
| | QSFP+ Transceivers | |
| Rule # | Description | SKU |
| | HPE Networking X140 40G QSFP+ LC LR4 SM 10km 1310nm Transceiver | JG661A |
| | HPE Networking X140 40G QSFP+ CSR4 300m Transceiver | JG709A |
| | HPE Networking X140 40G QSFP+ MPO SR4 Transceiver | JG325B |
| | HPE Networking X140 40G QSFP+ LC BiDi 100m MM Transceiver | JL251A |
| | HPE Networking X140 40G QSFP+ LC LR4L 2km SM Transceiver | JL286A |
| | HPE Networking X140 40G QSFP+ LC ER4 40km SM Transceiver | JL306A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 1m Direct Attach Copper Cable | JG326A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 3m Direct Attach Copper Cable | JG327A |
| | HPE Networking Comware X240 40G QSFP+ QSFP+ 5m Direct Attach Copper Cable | JG328A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 1m Direct Attach Copper Splitter Cable | JG329A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable | JG330A |
| | HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 5m Direct Attach Copper Splitter Cable | JG331A |
| | HPE Networking X2A0 40G QSFP+ to QSFP+ 7m Active Optical Cable | JL287A |
| | HPE Networking X2A0 40G QSFP+ to QSFP+ 10m Active Optical Cable | JL288A |
| | QSFP28 Transceiver Cables | |
| Rule # | Description | SKU |
| | HPE Networking X150 100G QSFP28 MPO SR4 100m MM Transceiver | JL274A |
| | HPE Networking X150 100G QSFP28 eSR4 300m MM Transceiver | JH672A |
| | HPE Networking X150 100G QSFP28 LC LR4 10km SM Transceiver | JL275A |
| | HPE Networking X150 100G QSFP28 PSM4 500m SM Transceiver | JH420A |
| | HPE Networking X150 100G QSFP28 CWDM4 2km SM Transceiver | JH673A |
| | HPE Networking X150 100G QSFP28 LC SWDM4 100m MM Transceiver | JH419A |
| | HPE Networking X240 100G QSFP28 1m DAC Cable | JL271A |
| | HPE Networking X240 100G QSFP28 3m DAC Cable | JL272A |
| | HPE Networking X240 QSFP28 4xSFP28 1m Direct Attach Copper Cable | JL282A |
| | HPE Networking X240 QSFP28 4xSFP28 3m Direct Attach Copper Cable | JL283A |
| | HPE Networking X240 QSFP28 4xSFP28 5m Direct Attach Copper Cable | JL284A |
| | HPE Networking X240 100G QSFP28 5m DAC Cable | JL273A |
| | HPE Networking X2A0 100G QSFP28 5m Active Optical Cable | JL796A |
| | HPE Networking X2A0 100G QSFP28 to QSFP28 7m Active Optical Cable | JL276A |
| | HPE Networking X2A0 100G QSFP28 to QSFP28 10m Active Optical Cable | JL277A |
| | HPE Networking X2A0 100G QSFP28 to QSFP28 20m Active Optical Cable | JL278A |
Internal Power Supplies | ||
| Rule # | Description | SKU |
| 1 | HPE Networking Comware 5X50 180W DC Power Supply | S5Z23A |
| 1, 3, 4, 5 | HPE Networking Comware 5550HI 180W Back-to-Front AC Power Supply | S5Z21A |
| | HPE Networking Comware 5550HI 180W Back-to-Front AC Power Supply PDU | S5Z21A#B2B |
| | HPE Networking Comware 5550HI 180W Back-to-Front AC Power Supply PDU | S5Z21A#B2C |
| | HPE Networking Comware 5550HI 180W Back-to-Front AC Power Supply 220v | S5Z21A#B2E |
| | HPE Networking Comware 5550HI 180W Back-to-Front AC Power Supply No Loc | S5Z21A#AC3 |
| 1, 3, 4, 5 | HPE Networking Comware 5550HI 180W Front-to-Back AC Power Supply | S5Z22A |
| | HPE Networking Comware 5550HI 180W Front-to-Back AC Power Supply PDU | S5Z22A#B2B |
| | HPE Networking Comware 5550HI 180W Front-to-Back AC Power Supply PDU | S5Z22A#B2C |
| | HPE Networking Comware 5550HI 180W Front-to-Back AC Power Supply 220v | S5Z22A#B2E |
| | HPE Networking Comware 5550HI 180W Front-to-Back AC Power Supply No Loc | S5Z22A#AC3 |
| 2, 3, 4, 5 | HPE Networking Comware 5x50HI 920W AC PoE Power Supply | S5Z24A |
| | HPE Networking Comware 5550HI 920W AC PoE Power Supply PDU | S5Z24A#B2B |
| | HPE Networking Comware 5550HI 920W AC PoE Power Supply PDU | S5Z24A#B2C |
| | HPE Networking Comware 5550HI 920W AC PoE Power Supply 220v | S5Z24A#B2E |
| 2, 3, 4, 5 | HPE Networking Comware 5x50HI 1600W AC PoE Power Supply | S5Z25A |
| | HPE Networking Comware 5550HI 1600W AC PoE Power Supply PDU | S5Z25A#B2B |
| | HPE Networking Comware 5550HI 1600W AC PoE Power Supply PDU | S5Z25A#B2C |
| | HPE Networking Comware 5550HI 1600W AC PoE Power Supply 220v | S5Z25A#B2E |
| | Configuration Rules | |
| Rule # | Description | |
| 1 | This power supply is only supported on S5T56A, S5T57A, S5T55A | |
| 2 | This power supply is only supported on S5T58A and S5T59A, | |
| 3 | Localization (Wall Power Cord) required on orders without #B2B, #B2C (PDU Power Cord) . (See Localization Menu) REMARK: When Switches/Routers are Factory Racked, Then #B2B, or #B2C should be the Defaulted Power Cable option on the Switches/Routers. | |
| 4 | If #B2E is selected Then replace Localized option with #B2E for power supply and with #B2E for switch. (Offered only in North America, Mexico Taiwan, and Japan) | |
| 5 | Unbuildable/FAN required, generates CFGU: If order is quoted for India and contains "#B2C" Option, then Display the following: – For BTO shipments to India: Please replace #B2C option with #AC3 in the Bill of Materials and add the appropriate INDIA PDU Power Cord below via Ad-Hoc: | |
| | HPE Networking 2.0m C13 to C14 PDU India Power Cord | JL671A |
| | HPE Networking 2.5m C15 to C14 PDU India Power Cord | JL672A |
| | HPE Networking 2.5m C19 to C20 PDU India Power Cord | JL673A |
| Notes: | – Drop down under power supply should offer the following options and results:
– DC Power Supply does not require Localization (CLIC Rule does not require looking for Localization) – Mixing of power supplies is supported | |
Accessories | ||
| | Fan Trays | |
| Rule # | Description | SKU |
| 1, 2 | HPE Networking Comware 5550HI Front-to-Back Fan Tray | S5Z28A |
| 1, 3 | HPE Networking Comware 5550HI Back-to-Front Fan Tray | S5Z29A |
| | Configuration Rules | |
| Rule # | Description | |
| 1 | No mixing allowed | |
| 2 | If BF Power Supply S5Z21A was selected in PSU section, then this FB Fan Tray cannot be selected | |
| 3 | If FB Power Supply S5Z22A was selected in PSU section, then this BF Fan Tray cannot be selected | |
Technical Specifications
HPE Networking Comware Switch Series 5550 HI | |||
|---|---|---|---|
| Specifications | S5T55A NW CW Sw 48F 4Y 1-slot 5550HI | S5T56A NW CW Sw 32G 4P 4Y 1-slot 5550HI | S5T57A NW CW Sw 48G 4Y 1-slot 5550HI |
| Fixed Ports | 48x 100/1000Base-X SFP ports 4x 10G/25GBase-X SFP28 ports | 32x 10/100/1000Base-T ports 4x 1G/10GBase-X SFP+ ports 4x 10G/25GBase-X SFP28 ports | 48x 10/100/1000Base-T ports 4x 10G/25GBase-X SFP28 ports |
| Additional Ports | 1x RJ45 console 1x USB 1x OOBM | 1x RJ45 console 1x USB 1x OOBM | 1x RJ45 console 1x USB 1x OOBM |
| Expansion slots | 1 slot | 1 slot | 1 slot |
| Power supplies | 1+1, hot swappable | 1+1, hot swappable | 1+1, hot swappable |
| Fans | 1+1, hot swappable | 1+1, hot swappable | 1+1, hot swappable |
| Physical Characteristics | |||
| Dimensions | 44cm(W) × 36cm(D) × 4.4cm(H) | 44cm(W) × 36cm(D) ×-4.4cm(H) | 44cm(W) × 36cm(D) × 4.4cm(H) |
| Weight | ≤6.7kg | ≤6.6kg | ≤6.7kg |
| CPU | ARM,2GHz @ Quard Core | ARM,2GHz @ Quard Core | ARM,2GHz @ Quard Core |
| Memory and Flash | 4GB RAM 4GB Flash | 4GB RAM 4GB Flash | 4GB RAM 4GB Flash |
| Packet Buffer | 8M | 8M | 8M |
| Performance | |||
| Forwarding Capacity | 696Gbps | 744Gbps | 696Gbps |
| Throughput | 518Mpps | 554Mpps | 518Mpps |
| Average Latency | GE: <5us 25GE: <3us | GE: <5us 25GE: <3us | GE: <5us 25GE: <3us |
| Stacking Members | 9 | 9 | 9 |
| Stacking Bandwidth | 200Gbps | 200Gbps | 200Gbps |
| Switched virtual interface | 1K | 1K | 1K |
| Mac Address Table | 128K | 128K | 128K |
| IPv4 Routes | 266K | 266K | 266K |
| IPv4 host table (ARP) | 80K | 80K | 80K |
| IPv6 Routes | 133K | 133K | 133K |
| IPv6 Host Table (ND) | 58K | 58K | 58K |
| IPv4/v6 Multicast Routes | 1000/1000 | 1000/1000 | 1000/1000 |
| IGMP groups | 4000 | 4000 | 4000 |
| MLD groups | 2718 | 2718 | 2718 |
| ACL (Ingress/Egress) | 4864/512 | 4864/512 | 4864/512 |
| VRF | 4095 | 4095 | 4095 |
| Environment | |||
| Operating Temperature | 23°F to 122°F (–5°C to 50°C) | 23°F to 122°F (–5°C to 50°C) | 23°F to 122°F (–5°C to 50°C) |
| Operating Relative Humidity | 5% to 95%, noncondensing | 5% to 95%, noncondensing | 5% to 95%, noncondensing |
| Non-operating Temperature | –40°F to 158°F (–40°C to 70°C) | –40°F to 158°F (–40°C to 70°C) | –40°F to 158°F (–40°C to 70°C) |
| Non-operating storage humidity | 5% to 95%, noncondensing | 5% to 95%, noncondensing | 5% to 95%, noncondensing |
| Acoustic (ISO7779) | 41.5/55dB | 40.3/55dB | 44.9/55dB |
| Electric Characteristics | |||
| Max Heat Dissipation | Ranges from 98 BTU/hr to 477 BTU/hr depending on power supply configuration | Ranges from 109 BTU/hr to 324 BTU/hr depending on power supply configuration | Ranges from 116 BTU/hr to 341 BTU/hr depending on power supply configuration |
| Power Rating | AC: 90V to 290V DC: -36V to -72V | AC: 90V to 290V DC: -36V to -72V | AC: 90V to 290V DC: -36Vto -72V |
| Power Consumption | Idle: Single AC: 29W Dual AC: 36W Single DC: 34W Dual DC: 39W Full Load: Single AC: 135W Dual AC: 139W Single DC: 135W Dual DC: 140W | Idle: Single AC: 32W Dual AC: 39W Single DC: 34W Dual DC: 39W Full Load: Single AC: 90W Dual AC: 96W Single DC: 90W Dual DC: 95W | Idle: Single AC: 34W Dual AC: 42W Single DC: 35W Dual DC: 41W Full Load: Single AC: 90W Dual AC: 100W Single DC: 95W Dual DC: 100W |
| PoE Power | - | - | - |
| Safety | UL 60950-1; EN 60825-1 Safety of Laser Products-Part 1; EN 60825-2 Safety of Laser Products-Part 2; IEC 60950-1; IEC 62368-1; CAN/CSA-C22.2 No. 60950-1; EN 62368-1/A11; FDA 21 CFR Subchapter J; RoHS Compliance | UL 60950-1; EN 60825-1 Safety of Laser Products-Part 1; EN 60825-2 Safety of Laser Products-Part 2; IEC 60950-1; IEC 62368-1; CAN/CSA-C22.2 No. 60950-1; EN 62368-1/A11; FDA 21 CFR Subchapter J; RoHS Compliance | UL 60950-1; EN 60825-1 Safety of Laser Products-Part 1; EN 60825-2 Safety of Laser Products-Part 2; IEC 60950-1; IEC 62368-1; CAN/CSA-C22.2 No. 60950-1; EN 62368-1/A11; FDA 21 CFR Subchapter J; RoHS Compliance |
| Emissions | EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-3/2012.04; EN 61000-3-2:2006+A1:2009+A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29: 2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A | EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-3/2012.04; EN 61000-3-2:2006+A1:2009+A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29: 2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A | EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-3/2012.04; EN 61000-3-2:2006+A1:2009+A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29: 2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A |
| Immunity | EN 55024 EN 300 386 | EN 55024 EN 300 386 | EN 55024 EN 300 386 |
| Mounting and Enclosure | Mounts in an EIA standard 19 inch telco rack or equipment cabinet (hardware included) | ||
| Management | IMC - Intelligent Management Center; Command-line interface; SNMP manager; SmartMC GUI | ||
| Warranty | Limited lifetime warranty. See the warranty duration guide | ||
| Services | See the HPE website at http://www.hpe.com/networking/services for details on the service-level descriptions and product numbers. For details about services and response times in your area, contact your local HPE sales office. | ||
HPE Networking Comware Switch Series 5550 HI (continued) | ||
|---|---|---|
| Specifications | S5T58A NW CW Sw 32G PoE8 4P 4Y 1s 5550HI | S5T59A NW CW Sw 48G PoE8 4Y 1-slot 5550HI |
| Fixed Ports | 32x 10/100/1000Base-T PoE++ ports 4x 1G/10GBase-X SFP+ ports 4x 10G/25GBase-X SFP28 ports | 48x 10/100/1000Base-T PoE++ ports 4x 10G/25GBase-X SFP28 ports |
| Additional Ports | 1x RJ45 console 1x USB 1x OOBM | 1x RJ45 console 1x USB 1x OOBM |
| Expansion slots | 1 slot | 1 slot |
| Power supplies | 1+1, hot swappable | 1+1, hot swappable |
| Fans | 1+1, hot swappable | 1+1, hot swappable |
| Phsyical Characteristics | ||
| Dimensions | 44cm(W) × 40cm(D) × 4.4cm(H) | 44cm(W) ×40cm(D) × 4.4cm(H) |
| Weight | ≤7.9kg | ≤8.1kg |
| CPU | ARM,2GHz @ Quard Core | ARM,2GHz @ Quard Core |
| Memory and Flash | 4GB RAM 4GB Flash | 4GB RAM 4GB Flash |
| Packet Buffer | 8M | 8M |
| Performance | ||
| Forwarding Capacity | 744Gbps | 696Gbps |
| Throughput | 554Mpps | 518Mpps |
| Average Latency | GE: <5us 25GE: <3us | GE: <5us 25GE: <3us |
| Stacking Members | 9 | 9 |
| Stacking Bandwidth | 200Gbps | 200Gbps |
| Switched virtual interface | 1K | 1K |
| Mac Address Table | 128K | 128K |
| IPv4 Routes | 266K | 266K |
| IPv4 host table (ARP) | 80K | 80K |
| IPv6 Routes | 133K | 133K |
| IPv6 Host Table (ND) | 58K | 58K |
| IPv4/v6 Multicast Routes | 1000/1000 | 1000/1000 |
| IGMP groups | 4000 | 4000 |
| MLD groups | 2718 | 2718 |
| ACL (Ingress/Egress) | 4864/512 | 4864/512 |
| VRF | 4095 | 4095 |
| Environment | ||
| Operating Temperature | 23°F to 122°F (–5°C to 50°C) | 23°F to 122°F (–5°C to 50°C) |
| Operating Relative Humidity | 5% to 95%, noncondensing | 5% to 95%, noncondensing |
| Non-operating Temperature | –40°F to 158°F (–40°C to 70°C) | –40°F to 158°F (–40°C to 70°C) |
| Non-operating storage humidity | 5% to 95%, noncondensing | 5% to 95%, noncondensing |
| Acoustic (ISO7779) | 35/65.3dB | 35/65.3dB |
| Electric Characteristics | ||
| Max Heat Dissipation | Ranges from 163 BTU/hr to 10922 BTU/hr depending on power supply configuration | Ranges from 184 BTU/hr to 10901 BTU/hr depending on power supply configuration |
| Power Rating | AC: 90V to 290V | AC: 90V to 290V |
| Power Consumption | Idle: Single AC: 48W Dual AC: 59W Full Load: Single AC: 1705W Dual AC: 3201W | Idle: Single AC: 54W Dual AC: 66W Full Load: Single AC: 1690W Dual AC: 3195W |
| PoE Power | 2870W PoE++(90W PoE8) | 2870W PoE++(90W PoE8) |
| Safety | UL 60950-1; EN 60825-1 Safety of Laser Products-Part 1; EN 60825-2 Safety of Laser Products-Part 2; IEC 60950-1; IEC 62368-1; CAN/CSA-C22.2 No. 60950-1; EN 62368-1/A11; FDA 21 CFR Subchapter J; RoHS Compliance | UL 60950-1; EN 60825-1 Safety of Laser Products-Part 1; EN 60825-2 Safety of Laser Products-Part 2; IEC 60950-1; IEC 62368-1; CAN/CSA-C22.2 No. 60950-1; EN 62368-1/A11; FDA 21 CFR Subchapter J; RoHS Compliance |
| Emissions | EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-3/2012.04; EN 61000-3-2:2006+A1:2009+A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29: 2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A | EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-3/2012.04; EN 61000-3-2:2006+A1:2009+A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29: 2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A |
| Immunity | EN 55024 EN 300 386 | EN 55024 EN 300 386 |
| Mounting and Enclosure | Mounts in an EIA standard 19 inch telco rack or equipment cabinet (hardware included) | |
| Management | IMC - Intelligent Management Center; Command-line interface; SNMP manager; SmartMC GUI | |
| Warranty | Limited lifetime warranty. See the warranty duration guide | |
| Services | See the HPE website at https://www.hpe.com/networking/services for details on the service-level descriptions and product numbers. For details about services and response times in your area, contact your local HPE sales office. | |
© Copyright 2026 Hewlett Packard Enterprise Development LP. The information contained herein is subject to change without notice. The only warranties for Hewlett Packard Enterprise products and services are set forth in the express warranty statements accompanying such products and services. Nothing herein should be construed as constituting an additional warranty. Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein.
To learn more, visit: http://www.hpe.com/networking
a50009241enw, 17273 - Worldwide - V3 - 05-January-2026