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HPE 5500 HI Switch Series: технические характеристики и документация

В архиве
HPE 5500 HI Switch Series

Overview

HPE 5500 HI Switch Series

 

 

 

Models

HP 5500-24G-4SFP HI Switch with 2 Interface Slots

JG311A

HP 5500-48G-4SFP HI Switch with 2 Interface Slots

JG312A

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots

JG541A

HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots

JG542A

HP 5500-24G-SFP HI Switch with 2 Interface Slots

JG543A


Key features

  • High expandability for investment protection
  • Premium resiliency and integrated management
  • SDN readiness with OpenFlow support
  • Full-featured IPv4/IPv6 dual stack
  • 1440 W of PoE+ power using dual power supplies for high resiliency

Product overview

The HPE 5500 HI Switch Series comprises Gigabit Ethernet switches that deliver outstanding resiliency, security, and multiservice support capabilities at the edge layer of data center, large campus, and metro Ethernet networks. The switches can also be used in the core layer of SMB networks.

With Intelligent Resilient Fabric (IRF) support and available dual power supplies, the HPE 5500 HI Switch Series can deliver the highest levels of resiliency and manageability. In addition, the PoE+ models provide up to 1440 W of PoE+ power with the dual power supply configuration.

Designed with two fixed 10GbE ports and extension module flexibility, these switches can provide up to six 10GbE uplink or 70 GbE ports. With complete IPv4/IPv6, OpenFlow, and MPLS/VPLS features, the series provides investment protection with an easy transition from IPv4 to IPv6 networks.


Features and benefits

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
  • Traffic policing
    supports Committed Access Rate (CAR) and line rate
  • 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.
  • Storm restraint
    allows limitation of broadcast, multicast, and unknown unicast traffic rate to reduce unwanted broadcast traffic on the network

Management

  • Friendly port names
    allow assignment of descriptive names to ports
  • sFlow (RFC 3176)
    provides scalable ASIC-based wirespeed network monitoring and accounting with no impact on network performance; this allows network operators to gather a variety of sophisticated network statistics and information for capacity planning and real-time network monitoring purposes
  • Complete session logging
    provides detailed information for problem identification and resolution
  • Remote configuration and management
    enables configuration and management through a secure Web browser or a CLI located on a remote device
  • Manager and operator privilege levels
    provides read-only (operator) and read/write (manager) access on CLI and Web browser management interfaces
  • Management VLAN
    segments traffic to and from management interfaces, including CLI/Telnet, a Web browser interface, and SNMP
  • Command authorization
    leverages RADIUS to link a custom list of CLI commands to an individual network administrator's login; an audit trail documents activity
  • Secure web GUI
    provides a secure, easy-to-use graphical interface for configuring the module via HTTPS
  • SNMPv1, v2c, and v3
    facilitate centralized discovery, monitoring, and secure management of networking devices
  • Remote monitoring (RMON)
    uses standard SNMP to monitor essential network functions; supports events, alarm, history, and statistics group plus a private alarm extension group
  • 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
  • In-service software upgrade (ISSU)
    enables operators to perform upgrades in the shortest possible amount of time with minimal risk to network operations or traffic disruptions

Connectivity

  • Auto-MDIX
    provides automatic adjustments for straight-through or crossover cables on all 10/100 and 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 10GbE ports
    provides two fixed SFP+ ports for a 20 GbE connection to the network without the need for additional extension interface
    modules
  • Optional 10GbE ports
    deliver, through the use of optional modules, additional 10GbE connections, which are available for uplinks or high-bandwidth server connections; flexibly support copper, XFP, SFP+, or CX4 local connections
  • Optional 8-port SFP module
    adds up to eight additional wirespeed Gigabit Ethernet ports for unprecedented Gigabit density in a single 1U enclosure
  • Jumbo packet support
    supports up to 12288-byte frame size to improve the performance of large data transfers
  • High-bandwidth CX4 local stacking
    achieves 12 Gbps per connection when using local CX4 stacking, allowing for up to 96 Gbps total stacking bandwidth (full duplex) in a resilient stacking configuration
  • 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

  • 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
  • Nonblocking architecture
    delivers up to 224 Gb/s of wire-speed switching with a nonblocking switching fabric and up to 167 million pps throughput

Resiliency and high availability

  • Separate data and control paths
    separates control from services and keeps service processing isolated; increases security and performance
  • 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 two or more 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 the 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 50 ms failover between links
  • Virtual Router Redundancy Protocol (VRRP)
    allows groups of two routers to back each other up dynamically to create highly available routed environments

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
  • IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
    facilitates easy mapping using network management applications with LLDP automated device discovery protocol
  • 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, TFTPv6, DNSv6, and ARPv6

Layer 2 switching

  • GARP VLAN Registration Protocol
    allows automatic learning and dynamic assignment of VLANs
  • 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
  • 32 MSTP instances
    allow multiple configurations of STP per VLAN group

Layer 3 services

  • Loopback interface address
    defines an address in Routing Information Protocol (RIP) and Open Standard Path First (OSPF), improving diagnostic capability
  • 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 and supports client and server; DHCP Relay enables DHCP operation across subnets
  • 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

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, VLAN ACL, port ACL, and IPv6 ACL; up to 6144 ingress ACLs and 1024 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
  • MAC-based authentication
    authenticates the client with the RADIUS server based on the client's MAC address
  • Identity-driven security and access control
    • Per-user ACLs
      permit or deny 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
      assigns users automatically 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
    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 that is similar to IEEE 802.1X
  • Port isolation
    secures and adds privacy, and prevents malicious attackers from obtaining user information
  • 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
  • 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
  • Secure management access
    delivers secure encryption of all access methods (CLI, GUI, or MIB) through SSHv2 and SNMPv3
  • 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 UFPF

Convergence

  • LLDP-MED (Media Endpoint Discovery)
    defines a standard extension of LLDP that stores values for parameters such as QoS and VLAN to configure automatically 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
  • Multicast Source Discovery Protocol (MSDP)
    allows multiple PIM-SM domains to interoperate; is used for inter-domain multicast applications
  • Multicast Border Gateway Protocol (MBGP)
    allows multicast traffic to be forwarded across BGP networks and kept separate from unicast traffic
  • 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
  • LLDP-CDP compatibility
    receives and recognizes CDP packets from Cisco's IP phones for seamless interoperation

Additional information

  • Green initiative support
    provides support for RoHS and WEEE regulations
  • 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

Warranty and support

· Limited Lifetime Warranty
see
http://www.hpe.com/networking/warrantysummary for 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 http://www.hpe.com/networking/warrantysummary

Configuration

 

Build To Order:

BTO is a standalone unit with no integration. BTO products ship standalone are not part of a CTO or Rack-Shippable solution.

 

Switch Chassis

 

HP 5500-24G-4SFP HI Switch with 2 Interface Slots

JG311A

  • 24 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

HP 5500-24G-SFP HI Switch with 2 Interface Slots

JG543A

  • 4 RJ-45 autosensing 10/100/1000 ports
  • 24 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=24 SFP Transceivers)
  • 2 fixed SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 open module slots, or a combination
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2

 

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots

JG541A

  • 24 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2 

 

HP 5500-48G-4SFP HI Switch with 2 Interface Slots

JG312A

  • 48 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2

 

HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots

JG542A

  • 48 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2

 

 

Configuration Rules:

 

 

 

 

Note 1

The following Transceivers install into this Switch: (SFP Ports)

 

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE X115 100M SFP LC BX 10-D Transceiver

JD101A

 

HPE X110 100M SFP LC LH80 Transceiver

JD091A

 

HPE X115 100M SFP LC FX Transceiver

JD102B

 

HPE X110 100M SFP LC LX Transceiver

JD120B

 

 

 

Note 2

The following Transceivers install into this Switch: (SFP Ports)

 

 

HPE X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

 

HPE X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

 

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

 

Box Level Integration CTO Models

 

CTO Solution Sku

 

HP 55xx CTO Switch Solution

 

  • SSP trigger sku

JG506A

 

 

CTO Switch Chassis

 

 

 

HP 5500-24G-4SFP HI Switch with 2 Interface Slots

JG311A

  • 24 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

HP 5500-24G-SFP HI Switch with 2 Interface Slots

JG543A

  • 4 RJ-45 autosensing 10/100/1000 ports
  • 24 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=24 SFP Transceivers)
  • 2 fixed SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 open module slots, or a combination
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots

JG541A

  • 24 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

HP 5500-48G-4SFP HI Switch with 2 Interface Slots

JG312A

  • 48 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots

JG542A

  • 48 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

Configuration Rules:

 

 

 

 

Note 1

The following Transceivers install into this Switch: (SFP Ports) (Use #0D1 quoted to switch if switch is CTO) - if applicable

 

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE X115 100M SFP LC BX 10-D Transceiver

JD101A

 

HPE X110 100M SFP LC LH80 Transceiver

JD091A

 

HPE X115 100M SFP LC FX Transceiver

JD102B

 

HPE X110 100M SFP LC LX Transceiver

JD120B

 

 

 

Note 2

The following Transceivers install into this Switch: (SFP Ports) (Use #0D1 quoted to switch if switch is CTO) - if applicable

 

 

HPE X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

 

HPE X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

 

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

 

 

Note 10

If the Switch Chassis is to be Factory Integrated (CTO), Then the #0D1 is required on the Switch Chassis and integrated to the JG506A - HP 55xx CTO Switch Solution. (Min 1/Max 1 Switch per SSP)

 

 

Rack Level Integration CTO Models

 

 

 

Switch Chassis

 

 

 

HP 5500-24G-4SFP HI Switch with 2 Interface Slots

JG311A

  • 24 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

HP 5500-24G-SFP HI Switch with 2 Interface Slots

JG543A

  • 4 RJ-45 autosensing 10/100/1000 ports
  • 24 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=24 SFP Transceivers)
  • 2 fixed SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 open module slots, or a combination
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots

JG541A

  • 24 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

HP 5500-48G-4SFP HI Switch with 2 Interface Slots

JG312A

  • 48 RJ-45 autosensing 10/100/1000 ports
  • 4 fixed Gigabit Ethernet SFP ports(min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports(min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots

JG542A

  • 48 RJ-45 autosensing 10/100/1000 PoE+ ports
  • 4 SFP fixed Gigabit Ethernet SFP ports (min=0 \ max=4 SFP Transceivers)
  • 2 SFP+ ports (min=0 \ max=2 SFP+ Transceivers)
  • 2 port expansion module slots
  • Must select min 1 power supply
  • 1U - Height

See Configuration NOTE:1, 2, 10

 

 

Configuration Rules:

 

 

 

Note 1

The following Transceivers install into this Switch: (SFP Ports) (Use #0D1 quoted to switch if switch is CTO) - if applicable

 

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE X115 100M SFP LC BX 10-D Transceiver

JD101A

 

HPE X110 100M SFP LC LH80 Transceiver

JD091A

 

HPE X115 100M SFP LC FX Transceiver

JD102B

 

HPE X110 100M SFP LC LX Transceiver

JD120B

 

 

 

Note 2

The following Transceivers install into this Switch: (SFP+ Ports) (Use #0D1 or #B01 quoted to switch if switch is CTO) - if applicable

 

 

HPE X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

 

HPE X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

 

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

 

 

Note 10

If HP CTO Switch Chassis is selected for Rack Level Integration, Then the Switch needs to integrate (with #0D1) to the Rack.

 

 

Remarks:

No Rail Kit required

 

 

Enter the following menu selections as integrated to the CTO Model X above if order is factory built.

 

 

Internal Power Supplies

 

 

 

System (std 0 // max 2) User Selection (min 1 // max 2) per switch enclosure

 

 

 

HPE FlexNetwork 5500 150WDC Power Supply

JD366A

 

See Configuration NOTE:1

 

 

HPE X361 150W 48-60VDC to 12VDC Power Supply

JD366B

 

See Configuration NOTE:1

 

 

 

 

HP 5500 150WAC Power Supply

JD362A

  • includes 1 x c13, 150w

See Configuration NOTE:1, 2

 

 

PDU Cable NA/MEX/TW/JP

JD362A#B2B

  • C15 PDU Jumper Cord (NA/MEX/TW/JP)

 

 

 

PDU Cable ROW

JD362A#B2C

  • C15 PDU Jumper Cord (ROW)

 

 

 

HPE X361 150W 100-240VAC to 12VDC Power Supply

JD362B

  • includes 1 x c13,  910w

See Configuration NOTE:1, 2, 3

 

 

PDU Cable NA/MEX/TW/JP

JD362B #B2B

  • C13 PDU Jumper Cord (NA/MEX/TW/JP)

 

 

 

PDU Cable ROW

JD362B #B2C

  • C13 PDU Jumper Cord (ROW)

 

 

 

High Volt Switch to Wall Power Cord

JD362B #B2E

  • HPE 2.3M C13 to NEMA L6-20P Power Cord (J9936A)

 

 

 

No Power Cord

JD362B #AC3

  • No Localized Power Cord Selected

 

 

 

HPE X362 720W 100-240VAC to 56VDC PoE Power Supply

JG544A

  • includes 1 x c13, 720w

See Configuration NOTE:2, 3, 4

 

PDU Cable NA/MEX/TW/JP

JG544A#B2B

  • C15 PDU Jumper Cord (NA/MEX/TW/JP)

 

PDU Cable ROW

JG544A#B2C

  • C15 PDU Jumper Cord (ROW)

 

High Volt Switch to Wall Power Cord

JG544A#B2E

  • NEMA L6-20P Cord (NA/MEX/JP/TW)

 

HPE X362 1110W 115-240VAC to 56VDC PoE Power Supply

JG545A

  • includes 1 x c13, 1100w

See Configuration
NOTE:2, 3, 4

 

PDU Cable NA/MEX/TW/JP

JG545A#B2B

  • C15 PDU Jumper Cord (NA/MEX/TW/JP)

 

PDU Cable ROW

JG545A#B2C

  • C15 PDU Jumper Cord (ROW)

 

High Volt Switch to Wall Power Cord

JG545A#B2E

  • NEMA L6-20P Cord (NA/MEX/JP/TW)

 

Configuration Rules:

 

 

 

 

Note 1

This power supply only supported on JG311x, JG312x, JG543x and JG681A Only.

 

 

 

Note 2

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.

 

 

 

Note 3

If #B2E is selected Then replace Localized option with #B2E for power supply and with #B2E for switch . (Offered only in AMS, Taiwan, and Japan)

 

 

 

 

Note 4

This power supply only supported on JG541x, JG542x, JG679A and JG680A Only.

 

 

 

 

Remarks:

Drop down under power supply should offer the following options and results:
Switch/Router/Power Supply to PDU Power Cord - #B2B in North America, Mexico, Taiwan, and Japan or #B2C ROW. (Watson Default B2B or B2C for Rack Level CTO)
Switch/Router/Power Supply to Wall Power Cord - Localized Option (Watson Default for BTO and Box Level CTO)
High Volt Switch/Router/Power Supply to Wall Power Cord - #B2E Option. (Offered only in North America, Mexico, Taiwan, and Japan)

NOTE* DC Power Supply does not require Localization (CLIC Rule to not require looking for Localization)
NOTE* Mixing of power supplies is supported

 

 

 

Modules

 

 

 

System (std 0 // max 2) User Selection (min 0 // max 2)

 

 

 

HP 5500 2-port 10GbE XFP Module

JD359B

  • min=0 \ max=2 XFP Transceivers

See Configuration
NOTE:2, 6, 7

 

 

HP 5500 2-port 10GbE Local Connect Module

JD360B

  • min=0 \ max=2 CX4 Cables

See Configuration
NOTE:4, 6, 7

 

HP 5500 1-port 10GbE XFP Module

JD361B

  • min=0 \ max=2 SFP+ Transceivers

See Configuration
NOTE:2, 6, 7

 

HPE FlexNetwork 5500/5120 2-port 10GbE SFP+ Module

JD368B

  • min=0 \ max=2 SFP+ Transceivers

See Configuration
NOTE:1, 6, 7

 

 

HPE FlexNetwork 5500/4800 2-port GbE SFP Module

JD367A

  • min=0 \ max=2 SFP Transceivers

See Configuration
NOTE:3, 6, 7

 

HPE FlexNetwork 5500 8-port Gig-T Module

JG313A

No Transceivers

See Configuration
NOTE:5, 6, 7

 

HPE FlexNetwork 5500 8-port SFP Module

JG314A

  • min=0 \ max=8 SFP Transceivers

See Configuration
NOTE:3, 5, 6, 7

 

 

HPE FlexNetwork 5500/5120 2-port 10GBASE-T Module

JG535A

  • No Transceivers

See Configuration NOTE:6, 7

 

 

Configuration Rules:

 

 

 

Note 1

The following Transceivers install into this Module:

 

 

HPE X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

 

HPE X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

 

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X125 1G SFP LC LH70 Transceiver

JD063B

 

 

 

Note 2

The following Transceivers install into this Module:

 

 

HPE X135 10G XFP LC ER Transceiver

JD121A

 

HPE X130 10G XFP LC LR Single Mode 10km 1310nm Transceiver

JD108B

 

HPE X130 10G XFP LC SR Transceiver

JD117B

 

HPE X130 10G XFP LC ZR Single Mode 80km 1550nm Transceiver

JD107A

 

 

 

Note 3

The following Transceivers install into this Module:

 

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X125 1G SFP LC LH70 Transceiver

JD063B

 

HPE X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE X115 100M SFP LC BX 10-D Transceiver

JD101A

 

HPE X110 100M SFP LC LH80 Transceiver

JD091A

 

HPE X115 100M SFP LC FX Transceiver

JD102B

 

HPE X110 100M SFP LC LX Transceiver

JD120B

 

 

 

Note 4

The following Cables install into this Module: (Use #B01 if switch is CTO)

 

 

HPE X230 Local Connect 50cm CX4 Cable

JD363B

 

HPE X230 Local Connect 100cm CX4 Cable

JD364B

 

HPE X230 CX4 to CX4 3m Cable

JD365A

 

 

 

Note 5

If this module is installed in the JG311A, JG543A, or JG541A, or JG680A Then the max = 1. Installs in Slot 1.

 

 

 

 

Note 6

If factory intergrated into the switch, This Module must be ordered as #0D1 when the switch is not Factory Racked.

 

 

 

 

Note 7

If factory intergrated into the switch, This Module must be ordered as #B01 when the switch is Factory Racked (Rack Level Integration CTO).

 

 

 

Transceivers

 

 

 

SFP Transceivers

 

 

 

HPE X120 1G SFP LC SX Transceiver

JD118B

 

HPE X120 1G SFP LC LX Transceiver

JD119B

 

HPE X125 1G SFP LC LH70 Transceiver

JD063B

 

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

 

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE X115 100M SFP LC FX Transceiver

JD102B

 

HPE X110 100M SFP LC LX Transceiver

JD120B

 

HPE X115 100M SFP LC BX 10-D Transceiver

JD101A

 

HPE X110 100M SFP LC LH80 Transceiver

JD091A

 

 

SFP+ Transceivers

 

 

 

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

 

HPE X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

 

HPE X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

 

 

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

 

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

XFP Transceivers

 

 

 

HPE X130 10G XFP LC ZR Single Mode 80km 1550nm Transceiver

JD107A

 

 

HPE X130 10G XFP LC LR Single Mode 10km 1310nm Transceiver

JD108B

 

HPE X130 10G XFP LC SR Transceiver

JD117B

 

HPE X135 10G XFP LC ER Transceiver

JD121A

 

 

Cables

 

 

 

Local Connect Cables

 

 

 

HPE X230 Local Connect 50cm CX4 Cable

JD363B

 

HPE X230 Local Connect 100cm CX4 Cable

JD364B

 

HPE X230 CX4 to CX4 3m Cable

JD365A

 

Multi-Mode Cables

 

HPE LC to LC Multi-mode OM3 2-Fiber 0.5m 1-Pack Fiber Optic Cable

AJ833A

 

HPE LC to LC Multi-mode OM3 2-Fiber 1.0m 1-Pack Fiber Optic Cable

AJ834A

 

HPE LC to LC Multi-mode OM3 2-Fiber 2.0m 1-Pack Fiber Optic Cable

AJ835A

 

HPE LC to LC Multi-mode OM3 2-Fiber 5.0m 1-Pack Fiber Optic Cable

AJ836A

 

HPE LC to LC Multi-mode OM3 2-Fiber 15.0m 1-Pack Fiber Optic Cable

AJ837A

 

HPE LC to LC Multi-mode OM3 2-Fiber 30.0m 1-Pack Fiber Optic Cable

AJ838A

 

HPE LC to LC Multi-mode OM3 2-Fiber 50.0m 1-Pack Fiber Optic Cable

AJ839A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 1m Cable

QK732A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 2m Cable

QK733A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 5m Cable

QK734A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 15m Cable

QK735A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 30m Cable

QK736A

 

 

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 50m Cable

QK737A

 

 

Switch Enclosure Options

 

 

 

Opacity Shield Kit

 

 

 

System (std 0 // max 1) User Selection (min 0 // max 1)

 

 

 

HPE 5500 24G 4SFP HI 2-slot Switch Opacity Shield Kit

JG716A

  • Supported on JG681A

See Configuration NOTE:1

 

 

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots Opacity Shield Kit

JG891A

  • Supported on JG679A, JG680A

See Configuration NOTE:1

 

 

Configuration Rules:

 

 

 

 

Note 1

If selected with a CTO Switch Solution, Quantity 1 of JG585A#B01 must also be ordered.

 

 

Tamper Evidence Labels

 

 

 

System (std 0 // max 1) User Selection (min 0 // max 1)

 

 

 

HPE 12mm x 60mm Tamper Evidence (30) Labels

JG585A

  • Supported on JG716A or JG891A

See Configuration NOTE:1

 

 

Configuration Rules:

 

 

 

 

Note 1

If selected with a CTO Switch Solution, Quantity 1 of JG719A#B01 or JG891A#B01 must also be ordered.

 

 

Remarks

Each JG716A or JG891A would use 1 of JG585A.

 

Technical Specifications

 

HP 5500-24G-4SFP HI Switch with 2 Interface Slots (JG311A)

I/O ports and slots

24 RJ-45 autosensing 10/100/1000 ports (IEEE 802.3 Type 10BASE-T, IEEE 802.3u Type 100BASE-TX, IEEE 802.3ab Type 1000BASE-T); Media Type: Auto-MDIX; Duplex: 10BASE-T/100BASE-TX: half or full;
1000BASE-T: full only

4 fixed Gigabit Ethernet SFP ports

2 SFP+ 10GbE ports

2 port expansion module slots

Supports a maximum of 38 autosensing 100/1000 ports, with optional module

Additional ports and slots

1 RJ-45 serial console port

1 RJ-45 out-of-band management port

Power supplies

2 power supply slots
1 minimum power supply required (ordered separately)

Physical characteristics

Dimensions

17.32(w) x 14.17(d) x 1.72(h) in (44.00 x 36.00 x 4.37 cm) (1U height)

Weight

16.53 lb (7.5 kg), Fully loaded

Memory and processor

1 GB SDRAM; Packet buffer size: 3 MB, 512 MB flash

Mounting and enclosure

Mounts in an EIA standard 19-inch telco rack or equipment cabinet (hardware included)

Performance

1000 Mb Latency

< 5 µs

10 Gbps Latency

< 3 µs

Throughput

up to 130.9 Mpps

Routing/Switching capacity

176 Gbps

Routing table size

12000 entries (IPv4), 6000 entries (IPv6)

MAC address table size

32000 entries

Environment

Operating temperature

32°F to 122°F (0°C to 50°C)

Operating relative humidity

5% to 95%, noncondensing

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 47.9 dB, High-speed fan: 51.1 dB; ISO 7779

Electrical characteristics

Frequency

50/60 Hz

Maximum heat dissipation

481 BTU/hr (507.46 kJ/hr)

Voltage

100 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Maximum power rating

141 W

Notes

Maximum power rating and maximum heat dissipation are the worst-case theoretical maximum numbers provided for planning the infrastructure with fully loaded PoE (if equipped), 100% traffic, all ports plugged in, and all modules populated.

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; EN 60950-1; CAN/CSA-C22.2 No. 60950-1; FDA 21 CFR Subchapter J; ROHS Compliance; AS/NZS 60950-1; GB 4943

Emissions

EN 55022 Class A; CISPR 22 Class A; EN 55024; ICES-003 Class A; CISPR 24; AS/NZS CISPR 22 Class A; EN
61000-3-2; EN 61000-3-3; GB9254; VCCI-3 CLASS A; VCCI-4 CLASS A; ETSI EN 300 386; FCC Part 15 (CFR 47) CLASS A; YD/T993

Notes

8-port Gig-T and SFP modules (JG313A and JG314A) are supported only in slot 1 of this switch.

Services

Refer to the Hewlett Packard Enterprise 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, please contact your local Hewlett Packard Enterprise sales office.


HP 5500-48G-4SFP HI Switch with 2 Interface Slots (JG312A)

I/O ports and slots

48 RJ-45 autosensing 10/100/1000 ports (IEEE 802.3 Type 10BASE-T, IEEE 802.3u Type 100BASE-TX, IEEE 802.3ab Type 1000BASE-T); Media Type: Auto-MDIX; Duplex: 10BASE-T/100BASE-TX: half or full;
1000BASE-T: full only

4 fixed Gigabit Ethernet SFP ports

2 SFP+ 10GbE ports

2 port expansion module slots

Supports a maximum of 70 autosensing 100/1000 ports, with optional module

Additional ports and slots

1 RJ-45 serial console port
1 RJ-45 out-of-band management port

Power supplies

2 power supply slots
1 minimum power supply required (ordered separately)

Physical characteristics

Dimensions

17.32(w) x 16.54(d) x 1.72(h) in (44.0 x 42.0 x 4.37 cm) (1U height)

Weight

18.74 lb (8.5 kg)

Memory and processor

1 GB SDRAM; Packet buffer size: 6 MB, 512 MB flash

Mounting and enclosure

Mounts in an EIA standard 19-inch telco rack or equipment cabinet (hardware included)

Performance

1000 Mb Latency

< 5 µs

10 Gbps Latency

< 3 µs

Throughput

up to 166.6 Mpps

Routing/Switching capacity

224 Gbps

Routing table size

12000 entries (IPv4), 6000 entries (IPv6)

 

MAC address table size

32000 entries

Environment

Operating temperature

32°F to 122°F (0°C to 50°C)

Operating relative humidity

5% to 95%, noncondensing

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 48.6 dB, High-speed fan: 57.6 dB; ISO 7779

Electrical characteristics

Frequency

50/60 Hz

Maximum heat dissipation

651 BTU/hr (686.81 kJ/hr)

Voltage

100 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Maximum power rating

191 W

Notes

Maximum power rating and maximum heat dissipation are the worst-case theoretical maximum numbers provided for planning the infrastructure with fully loaded PoE (if equipped), 100% traffic, all ports plugged in, and all modules populated.

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; EN 60950-1; CAN/CSA-C22.2 No. 60950-1; FDA 21 CFR Subchapter J; ROHS Compliance; AS/NZS 60950-1; GB 4943

Services

Refer to the Hewlett Packard Enterprise 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, please contact your local Hewlett Packard Enterprise sales office.


HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots (JG541A)

I/O ports and slots

24 RJ-45 autosensing 10/100/1000 PoE+ ports (IEEE 802.3 Type 10BASE-T, IEEE 802.3u Type 100BASE-TX, IEEE 802.3ab Type 1000BASE-T, IEEE 802.3at PoE+); Media Type: Auto-MDIX; Duplex: 10BASE-T/100BASE-TX: half or full; 1000BASE-T: full only

4 fixed Gigabit Ethernet SFP ports

2 SFP+ 10GbE ports

2 port expansion module slots

Supports a maximum of 38 autosensing 100/1000
ports, with optional module

Additional ports and slots

1 RJ-45 serial console port

1 RJ-45 out-of-band management port

Power supplies

2 power supply slots
1 minimum power supply required (ordered separately)

Physical characteristics

Dimensions

17.32(w) x 18.11(d) x 1.72(h) in (43.99 x 46 x 4.37 cm) (1U height)

Weight

22.05 lb (10 kg) shipping weight

Memory and processor

1 GB SDRAM; Packet buffer size: 3 MB, 512 MB flash

Mounting and enclosure

Mounts in an EIA-standard 19-inch telco rack or equipment cabinet (hardware included)

Performance

1000 Mb Latency

< 5 µs

10 Gbps Latency

< 3 µs

Throughput

up to 130.9 Mpps

Routing/Switching capacity

176 Gbps

Routing table size

12000 entries (IPv4), 6000 entries (IPv6)

MAC address table size

32000 entries

Environment

Operating temperature

32°F to 113°F (0°C to 45°C)

Operating relative humidity

5% to 95%, noncondensing

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 41.0 dB, High-speed fan: 64.0 dB; ISO 7779

Electrical characteristics

Frequency

50/60 Hz

Maximum heat dissipation

460 BTU/hr (485.3 kJ/hr)

Voltage

100 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Maximum power rating

150 W

PoE power

740 W PoE+

Notes

Maximum power rating and maximum heat dissipation are the worst-case theoretical maximum numbers provided for planning the infrastructure with fully loaded PoE (if equipped), 100% traffic, all ports plugged in, and all modules populated.
PoE power is the maximum power available from the required power supply or supplies. Device supports 1 or 2 internal modular power supplies. JG544A will supply up to 435 watts of PoE+ power per installed unit. JG545A will supply up to 800 watts of PoE+ power per installed unit to the extent needed by the installation.

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; EN 60950-1; CAN/CSA-C22.2 No. 60950-1; FDA 21 CFR Subchapter J; ROHS Compliance; AS/NZS 60950-1; GB 4943

Emissions

EN 55022 Class A; CISPR 22 Class A; EN 55024; ICES-003 Class A; CISPR 24; AS/NZS CISPR 22 Class A; EN 61000-3-2; EN 61000-3-3; GB9254; VCCI-3 CLASS A; VCCI-4 CLASS A; ETSI EN 300 386; FCC Part 15 (CFR 47) CLASS A; YD/T993

Notes

8-port Gig-T and SFP modules (JG313A and JG314A) are supported only in slot 1 of this switch.

Services

Refer to the Hewlett Packard Enterprise 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, please contact your local Hewlett Packard Enterprise sales office.


HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots (JG542A)

I/O ports and slots

48 RJ-45 autosensing 10/100/1000 PoE+ ports; Duplex: 10BASE-T/100BASE-TX: half or full; 1000BASE-T: full only

4 fixed Gigabit Ethernet SFP ports

2 SFP+ 10GbE ports

2 port expansion module slots

Supports a maximum of 70 autosensing 100/1000 ports, with optional module

Additional ports and slots

1 RJ-45 serial console port

1 RJ-45 out-of-band management port

Power supplies

2 power supply slots
1 minimum power supply required (ordered separately)

Physical characteristics

Dimensions

17.32(w) x 18.11(d) x 1.72(h) in (43.99 x 46 x 4.37 cm) (1U height)

Weight

23.15 lb (10.5 kg)

Memory and processor

1 GB SDRAM; Packet buffer size: 6 MB, 512 MB flash

Mounting and enclosure

Mounts in an EIA-standard 19-inch telco rack or equipment cabinet (hardware included)

Performance

1000 Mb Latency

< 5 µs

10 Gbps Latency

< 3 µs

Throughput

up to 166.6 Mpps

Routing/Switching capacity

224 Gbps

Routing table size

12000 entries (IPv4), 6000 entries (IPv6)

MAC address table size

32000 entries

Environment

Operating temperature

32°F to 113°F (0°C to 45°C)

Operating relative humidity

5% to 95%, noncondensing

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 43.1 dB, High-speed fan: 66.1 dB; ISO 7779

Electrical characteristics

Frequency

50/60 Hz

Maximum heat dissipation

666 BTU/hr (702.63 kJ/hr)

Voltage

100 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Maximum power rating

195 W

PoE power

1440 W PoE+

Notes

Maximum power rating and maximum heat dissipation are the worst-case theoretical maximum numbers provided for planning the infrastructure with fully loaded PoE (if equipped), 100% traffic, all ports plugged in, and all modules populated.
PoE power is the power supplied by the internal power supply. It is dependent on the type and quantity of power supplies. Device supports 1 or 2 internal modular power supplies. JG544A will supply 435 watts of PoE+ power per installed unit. JG545A will supply up to 800 watts of PoE+ power per installed unit.

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; EN 60950-1; CAN/CSA-C22.2 No. 60950-1; FDA 21 CFR Subchapter J; ROHS Compliance; AS/NZS 60950-1; GB 4943

Emissions

EN 55022 Class A; CISPR 22 Class A; EN 55024; ICES-003 Class A; CISPR 24; AS/NZS CISPR 22 Class A; EN
61000-3-2; EN 61000-3-3; GB9254; VCCI-3 CLASS A; VCCI-4 CLASS A; ETSI EN 300 386; FCC Part 15 (CFR 47) CLASS A; YD/T993

Services

Refer to the Hewlett Packard Enterprise 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, please contact your local Hewlett Packard Enterprise sales office.


HP 5500-24G-SFP HI Switch with 2 Interface Slots (JG543A)

Ports

24 fixed Gigabit Ethernet SFP ports

4 RJ-45 autosensing 10/100/1000 ports (IEEE 802.3 Type 10BASE-T, IEEE 802.3u Type
100BASE-TX, IEEE 802.3ab Type 1000BASE-T); Duplex: 10BASE-T/100BASE-TX: half or full; 1000BASE-T: full only

2 SFP+ 10GbE ports

2 port expansion module slots

Supports a maximum of 12 autosensing 10/100/1000 ports, with optional module

Additional ports and slots

1 RJ-45 serial console port

1 RJ-45 out-of-band management port

Power supplies

2 power supply slots
1 minimum power supply required (ordered separately)

Physical characteristics

Dimensions

17.32(w) x 14.17(d) x 1.72(h) in (43.99 x 35.99 x 4.37 cm) (1U height)

Weight

16.53 lb (7.5 kg)

Memory and processor

1 GB SDRAM; Packet buffer size: 3 MB, 512 MB flash

Mounting and enclosure

Mounts in an EIA-Standard 19-inch telco rack or equipment cabinet (hardware included)

Performance

1000 Mb Latency

< 5 µs

10 Gbps Latency

< 3 µs

Throughput

up to 130.9 Mpps

Routing/Switching capacity

176 Gbps

Routing table size

12000 entries (IPv4), 6000 entries (IPv6)

MAC address table size

32000 entries

Environment

Operating temperature

32°F to 122°F (0°C to 50°C)

Operating relative humidity

5% to 95%, noncondensing

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 48.3 dB, High-speed fan: 54.0 dB; ISO 7779

Electrical characteristics

Frequency

50/60 Hz

Maximum heat dissipation

460 BTU/hr (485.3 kJ/hr)

Voltage

100 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Maximum power rating

135 W

Notes

Maximum power rating and maximum heat dissipation are the worst-case theoretical maximum numbers provided for planning the infrastructure with fully loaded PoE (if equipped), 100% traffic, all ports plugged in, and all modules populated.

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; EN 60950-1; CAN/CSA-C22.2 No. 60950-1; FDA 21 CFR Subchapter J; ROHS Compliance; AS/NZS 60950-1; GB 4943

Emissions

EN 55022 Class A; CISPR 22 Class A; EN 55024; ICES-003 Class A; CISPR 24; AS/NZS CISPR 22 Class A; EN
61000-3-2; EN 61000-3-3; GB9254; VCCI-3 CLASS A; VCCI-4 CLASS A; ETSI EN 300 386; FCC Part 15 (CFR 47) CLASS A; YD/T993

Notes

8-port Gig-T and SFP modules (JG313A and JG314A) are supported only in slot 1 of this switch.

Services

Refer to the Hewlett Packard Enterprise 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, please contact your local Hewlett Packard Enterprise sales office.


Standards and protocols
(applies to all products in series)

BGP
RFC 1657 Definitions of Managed Objects for BGPv4
RFC 1771 BGPv4
RFC 2385 BGP Session Protection via TCP MD5
RFC 2858 BGP-4 Multi-Protocol Extensions

Device management
RFC 1157 SNMPv1/v2c
RFC 1305 NTPv3
RFC 1901 (Community based SNMPv2)
RFC 2452 MIB for TCP6
RFC 2454 MIB for UDP6
RFC 2573 (SNMPv3 Applications)
RFC 2576 (Coexistence between SNMP V1, V2, V3)
RFC 2819 (RMON groups Alarm, Event, History and
Statistics only)
RFC 3410 (Management Framework)
RFC 3416 (SNMP Protocol Operations v2)
RFC 3417 (SNMP Transport Mappings)
HTML and telnet management
Multiple Configuration Files
SNMP v3 and RMON RFC support
SSHv1/SSHv2 Secure Shell

General protocols
IEEE 802.1ad Q-in-Q
IEEE 802.1ak Multiple Registration Protocol (MRP) and Multiple VLAN Registration Protocol (MVRP)
IEEE 802.1D MAC Bridges
IEEE 802.1p Priority
IEEE 802.1Q (GVRP)
IEEE 802.1v VLAN classification by Protocol and Port
IEEE 802.1w Rapid Reconfiguration of Spanning Tree
IEEE 802.3ab 1000BASE-T
IEEE 802.3ac (VLAN Tagging Extension)
IEEE 802.3ad Link Aggregation (LAG)
IEEE 802.3ae 10-Gigabit Ethernet
IEEE 802.3af Power over Ethernet
IEEE 802.3at PoE+
IEEE 802.3az Energy Efficient Ethernet
IEEE 802.3i 10BASE-T
IEEE 802.3u 100BASE-X
IEEE 802.3x Flow Control
IEEE 802.3z 1000BASE-X
RFC 768 UDP
RFC 791 IP
RFC 792 ICMP
RFC 793 TCP
RFC 854 TELNET
RFC 925 Multi-LAN Address Resolution
RFC 950 Internet Standard Subnetting Procedure
RFC 951 BOOTP
RFC 1058 RIPv1
RFC 1122 Host Requirements
RFC 1141 Incremental updating of the Internet checksum
RFC 1191 Path MTU discovery
RFC 1213 Management Information Base for Network Management of TCP/IP-based internets
RFC 1256 ICMP Router Discovery Protocol (IRDP)
RFC 1305 NTPv3
RFC 1350 TFTP Protocol (revision 2)
RFC 1519 CIDR
RFC 1542 BOOTP Extensions
RFC 1723 RIP v2
RFC 1812 IPv4 Routing
RFC 1887 An Architecture for IPv6 Unicast Address Allocation
RFC 2131 DHCP
RFC 2138 Remote Authentication Dial In User Service (RADIUS)
RFC 2236 IGMP Snooping
RFC 2338 VRRP
RFC 2375 IPv6 Multicast Address Assignments
RFC 2616 Hypertext Transfer Protocol -- HTTP/1.1
RFC 2644 Directed Broadcast Control
RFC 2711 IPv6 Router Alert Option
RFC 2784 Generic Routing Encapsulation (GRE)
RFC 2865 Remote Authentication Dial In User Service (RADIUS)
RFC 2866 RADIUS Accounting
RFC 3209 RSVP-TE Extensions to RSVP for LSP Tunnels
RFC 3246 Expedited Forwarding PHB
RFC 3410 Applicability Statements for SNMP
RFC 3414 User-based Security Model (USM) for version 3 of the Simple Network Management Protocol (SNMPv3)
RFC 3415 View-based Access Control Model (VACM) for the Simple Network Management Protocol (SNMP)
RFC 3417 Transport Mappings for the Simple Network Management Protocol (SNMP)
RFC 3484 Default Address Selection for Internet Protocol version 6 (IPv6)
RFC 3493 Basic Socket Interface Extensions for IPv6
RFC 3542 Advanced Sockets Application Program Interface (API) for IPv6
RFC 3587 IPv6 Global Unicast Address Format
RFC 3596 DNS Extensions to Support IP Version 6
RFC 3623 Graceful OSPF Restart
RFC 3704 Unicast Reverse Path Forwarding (URPF)
RFC 3768 Virtual Router Redundancy Protocol (VRRP)
RFC 3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6
RFC 3812 Multiprotocol Label Switching (MPLS) Traffic Engineering (TE) Management Information Base (MIB)
RFC 4090 Fast Reroute Extensions to RSVP-TE for LSP Tunnels
RFC 4113 Management Information Base for the User Datagram Protocol (UDP)
RFC 4213 Basic IPv6 Transition Mechanisms
RFC 4250 The Secure Shell (SSH) Protocol Assigned Numbers
RFC 4251 The Secure Shell (SSH) Protocol Architecture
RFC 4252 The Secure Shell (SSH) Authentication Protocol
RFC 4253 The Secure Shell (SSH) Transport Layer Protocol
RFC 4254 The Secure Shell (SSH) Connection Protocol
RFC 4364 BGP/MPLS IP Virtual Private Networks (VPNs)
RFC 4443 Internet Control Message Protocol (ICMPv6) for the Internet Protocol Version 6 (IPv6) Specification
RFC 4447 Pseudowire Setup and Maintenance Using the Label Distribution Protocol (LDP)
RFC 4594 Configuration Guidelines for DiffServ Service Classes
RFC 4762 Virtual Private LAN Service (VPLS) Using Label Distribution Protocol (LDP) Signaling
802.1r - GARP Proprietary Attribute Registration Protocol (GPRP)

IP multicast
RFC 2236 IGMPv2
RFC 2710 Multicast Listener Discovery (MLD) for IPv6
RFC 2858 Multiprotocol Extensions for BGP-4
RFC 3376 IGMPv3
RFC 3569 An Overview of Source-Specific Multicast
(SSM)
RFC 3618 Multicast Source Discovery Protocol (MSDP)
RFC 3973 PIM Dense Mode
RFC 4601 PIM Sparse Mode

IPv6
RFC 1881 IPv6 Address Allocation Management
RFC 1887 IPv6 Unicast Address Allocation Architecture
RFC 1981 IPv6 Path MTU Discovery
RFC 2080 RIPng for IPv6
RFC 2373 IPv6 Addressing Architecture
RFC 2375 IPv6 Multicast Address Assignments
RFC 2460 IPv6 Specification
RFC 2461 IPv6 Neighbor Discovery
RFC 2462 IPv6 Stateless Address Auto-configuration
RFC 2463 ICMPv6
RFC 2464 Transmission of IPv6 over Ethernet Networks
RFC 2473 Generic Packet Tunneling in IPv6
RFC 2475 IPv6 DiffServ Architecture
RFC 2710 Multicast Listener Discovery (MLD) for IPv6
RFC 2740 OSPFv3 for IPv6
RFC 2893 Transition Mechanisms for IPv6 Hosts and Routers
RFC 2925 Definitions of Managed Objects for Remote
Ping, Traceroute, and Lookup Operations (Ping only)
RFC 3162 RADIUS and IPv6
RFC 3306 Unicast-Prefix-based IPv6 Multicast Addresses
RFC 3307 IPv6 Multicast Address Allocation
RFC 3315 DHCPv6 (client and relay)
RFC 3484 Default Address Selection for IPv6
RFC 3493 Basic Socket Interface Extensions for IPv6
RFC 3513 IPv6 Addressing Architecture
RFC 3542 Advanced Sockets API for IPv6
RFC 3587 IPv6 Global Unicast Address Format
RFC 3596 DNS Extension for IPv6
RFC 3810 MLDv2 for IPv6
RFC 4113 MIB for UDP
RFC 4443 ICMPv6
RFC 4541 IGMP & MLD Snooping Switch
RFC 5340 OSPFv3 for IPv6

MIBs
RFC 1212 Concise MIB Definitions
RFC 1213 MIB II
RFC 1493 Bridge MIB
RFC 1657 BGP-4 MIB
RFC 1724 RIPv2 MIB
RFC 1757 Remote Network Monitoring MIB
RFC 1850 OSPFv2 MIB
RFC 2011 SNMPv2 MIB for IP
RFC 2012 SNMPv2 MIB for TCP
RFC 2013 SNMPv2 MIB for UDP
RFC 2096 IP Forwarding Table MIB
RFC 2233 Interface MIB
RFC 2452 IPV6-TCP-MIB
RFC 2454 IPV6-UDP-MIB
RFC 2465 IPv6 MIB
RFC 2466 ICMPv6 MIB
RFC 2571 SNMP Framework MIB
RFC 2572 SNMP-MPD MIB
RFC 2573 SNMP-Target MIB
RFC 2574 SNMP USM MIB
RFC 2618 RADIUS Authentication Client MIB
RFC 2620 RADIUS Accounting Client MIB
RFC 2665 Ethernet-Like-MIB
RFC 2674 Definitions of Managed Objects for Bridges with Traffic Classes, Multicast Filtering, and Virtual Extensions
RFC 2737 Entity MIB (Version 2)
RFC 2787 VRRP MIB
RFC 2819 RMON MIB
RFC 2863 The Interfaces Group MIB
RFC 2925 Ping MIB
RFC 3414 SNMP-User based-SM MIB
RFC 3415 SNMP-View based-ACM MIB
RFC 3621 Power Ethernet MIB
RFC 4113 UDP MIB

Network management
IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
IEEE 802.1D (STP)
RFC 1157 SNMPv1
RFC 1212 Concise MIB definitions
RFC 1215 Convention for defining traps for use with the SNMP
RFC 1757 RMON 4 groups: Stats, History, Alarms and Events
RFC 1901 SNMPv2 Introduction
RFC 1918 Private Internet Address Allocation
RFC 2373 Remote Network Monitoring Management Information Base for High Capacity Networks
RFC 2571 An Architecture for Describing SNMP Management Frameworks
RFC 2572 Message Processing and Dispatching for the Simple Network Management Protocol (SNMP)
RFC 2573 SNMP Applications
RFC 2574 SNMPv3 User-based Security Model (USM)
RFC 2575 SNMPv3 View-based Access Control Model (VACM)
RFC 2576 Coexistence between SNMP versions
RFC 2578 SMIv2
RFC 2581 TCP6
RFC 2819 Remote Network Monitoring Management Information Base
RFC 2925 Definitions of Managed Objects for Remote Ping, Traceroute, and Lookup Operations
RFC 3176 sFlow
RFC 3410 Introduction to Version 3 of the Internet-standard Network Management Framework
RFC 3413 Simple Network Management Protocol (SNMP) Applications
RFC 3414 SNMPv3 User-based Security Model (USM)
RFC 3415 SNMPv3 View-based Access Control Model VACM)
ANSI/TIA-1057 LLDP Media Endpoint Discovery (LLDP-MED)
SNMPv1/v2c/v3

OSPF
RFC 1587 OSPF NSSA
RFC 1850 OSPFv2 Management Information Base (MIB), traps
RFC 2328 OSPFv2
RFC 2370 OSPF Opaque LSA Option

QoS/CoS
IEEE 802.1P (CoS)
RFC 2474 DSCP DiffServ
RFC 2475 DiffServ Architecture
RFC 2597 DiffServ Assured Forwarding (AF)
RFC 2598 DiffServ Expedited Forwarding (EF)
RFC 2697 A Single Rate Three Color Marker
RFC 2698 A Two Rate Three Color Marker
RFC 4594 Configuration Guidelines for DiffServ Service Classes

Security
IEEE 802.1X Port Based Network Access Control
RFC 1492 TACACS+
RFC 1918 Address Allocation for Private Internets
RFC 2865 RADIUS Authentication
RFC 2866 RADIUS Accounting
RFC 3579 RADIUS Support For Extensible Authentication Protocol (EAP)
Access Control Lists (ACLs)
MAC Authentication
Port Security
SSHv2 Secure Shell

MPLS
RFC 2961 RSVP Refresh Overhead Reduction Extensions
RFC 3031 Multiprotocol Label Switching Architecture
RFC 3032 MPLS Label Stack Encoding
RFC 3036 LDP Specification
RFC 4762 Virtual Private LAN Service (VPLS) Using Label Distribution Protocol (LDP) Signaling

Network management
IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
IEEE 802.1D (STP)
RFC 1157 SNMPv1
RFC 1212 Concise MIB definitions
RFC 1215 Convention for defining traps for use with the SNMP
RFC 1757 RMON 4 groups: Stats, History, Alarms and Events
RFC 1901 SNMPv2 Introduction
RFC 1918 Private Internet Address Allocation
RFC 2373 Remote Network Monitoring Management Information Base for High Capacity Networks
RFC 2571 An Architecture for Describing SNMP Management Frameworks
RFC 2572 Message Processing and Dispatching for the Simple Network Management Protocol (SNMP)
RFC 2573 SNMP Applications
RFC 2574 SNMPv3 User-based Security Model (USM)
RFC 2575 SNMPv3 View-based Access Control Model (VACM)
RFC 2576 Coexistence between SNMP versions
RFC 2578 SMIv2
RFC 2581 TCP6
RFC 2819 Remote Network Monitoring Management Information Base
RFC 2925 Definitions of Managed Objects for Remote Ping, Traceroute, and Lookup Operations
RFC 3176 sFlow
RFC 3410 Introduction to Version 3 of the Internet-standard Network Management Framework
RFC 3413 Simple Network Management Protocol (SNMP) Applications
RFC 3414 SNMPv3 User-based Security Model (USM)
RFC 3415 SNMPv3 View-based Access Control Model VACM)
ANSI/TIA-1057 LLDP Media Endpoint Discovery (LLDP-MED)
SNMPv1/v2c/v3

OSPF
RFC 1587 OSPF NSSA
RFC 1850 OSPFv2 Management Information Base (MIB), traps
RFC 2328 OSPFv2
RFC 2370 OSPF Opaque LSA Option

QoS/CoS
IEEE 802.1p (CoS)
RFC 2474 DSCP DiffServ
RFC 2475 DiffServ Architecture
RFC 2597 DiffServ Assured Forwarding (AF)
RFC 2598 DiffServ Expedited Forwarding (EF)
RFC 2697 A Single Rate Three Color Marker
RFC 2698 A Two Rate Three Color Marker
RFC 4594 Configuration Guidelines for DiffServ Service Classes

Security
IEEE 802.1X Port Based Network Access Control
RFC 1492 TACACS+
RFC 1918 Address Allocation for Private Internets
RFC 2865 RADIUS Authentication
RFC 2866 RADIUS Accounting
RFC 3579 RADIUS Support For Extensible Authentication Protocol (EAP)
Access Control Lists (ACLs)
MAC Authentication
Port Security
SSHv2 Secure Shell

Accessories

 

HPE 5500 HI Switch Series accessories

 

 

 

Modules

 

HPE 5500 2-port 10GbE XFP Module

JD359B

HPE 5500 2-port 10GbE Local Connect Module

JD360B

HPE 5500 1-port 10GbE XFP Module

JD361B

HPE FlexNetwork 5500/4800 2-port GbE SFP Module

JD367A

HPE FlexNetwork 5500/5120 2-port 10GbE SFP+ Module

JD368B

HPE FlexNetwork 5500 8-port Gig-T Module

JG313A

HPE FlexNetwork 5500 8-port SFP Module

JG314A

HPE FlexNetwork 5500/5120 2-port 10GBASE-T Module

JG535A

 

 

Transceivers

 

HPE X115 100M SFP LC FX Transceiver

JD102B

HPE X110 100M SFP LC LH80 Transceiver

JD091A

HPE X110 100M SFP LC LX Transceiver

JD120B

HPE X120 1G SFP RJ45 T Transceiver

JD089B

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

HPE X120 1G SFP LC SX Transceiver

JD118B

HPE X120 1G SFP LC LX Transceiver

JD119B

HPE X125 1G SFP LC LH40 1310nm Transceiver

JD061A

HPE X120 1G SFP LC LH40 1550nm Transceiver

JD062A

HPE X125 1G SFP LC LH70 Transceiver

JD063B

HPE X130 10G SFP+ LC SR Transceiver

JD092B

HPE X130 10G SFP+ LC LRM Transceiver

JD093B

HPE X130 10G SFP+ LC LR Transceiver

JD094B

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

HPE X130 10G XFP LC LR Single Mode 10km 1310nm Transceiver

JD108B

HPE X130 10G XFP LC SR Transceiver

JD117B

HPE X130 10G XFP LC ZR Single Mode 80km 1550nm Transceiver

JD107A

HPE X135 10G XFP LC ER Transceiver

JD121A

HPE FlexNetwork X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Cable

JD095C

HPE FlexNetwork X240 10G SFP+ to SFP+ 1.2m Direct Attach Copper Cable

JD096C

HPE FlexNetwork X240 10G SFP+ to SFP+ 3m Direct Attach Copper Cable

JD097C

HPE FlexNetwork X240 10G SFP+ to SFP+ 5m Direct Attach Copper Cable

JG081C

HPE FlexNetwork X240 10G SFP+ SFP+ 7m Direct Attach Copper Cable

JC784C

 

 

Cables

 

HPE LC to LC Multi-mode OM3 2-Fiber 0.5m 1-Pack Fiber Optic Cable

AJ833A

HPE LC to LC Multi-mode OM3 2-Fiber 1.0m 1-Pack Fiber Optic Cable

AJ834A

HPE LC to LC Multi-mode OM3 2-Fiber 2.0m 1-Pack Fiber Optic Cable

AJ835A

HPE LC to LC Multi-mode OM3 2-Fiber 5.0m 1-Pack Fiber Optic Cable

AJ836A

HPE LC to LC Multi-mode OM3 2-Fiber 15.0m 1-Pack Fiber Optic Cable

AJ837A

HPE LC to LC Multi-mode OM3 2-Fiber 30.0m 1-Pack Fiber Optic Cable

AJ838A

HPE LC to LC Multi-mode OM3 2-Fiber 50.0m 1-Pack Fiber Optic Cable

AJ839A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 1m Cable

QK732A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 2m Cable

QK733A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 5m Cable

QK734A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 15m Cable

QK735A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 30m Cable

QK736A

HPE Premier Flex LC/LC Multi-mode OM4 2 fiber 50m Cable

QK737A

HPE X230 Local Connect 50cm CX4 Cable

JD363B

HPE X230 Local Connect 100cm CX4 Cable

JD364B

HPE X230 CX4 to CX4 3m Cable

JD365A

 

 

HP 5500-24G-4SFP HI Switch with 2 Interface Slots (JG311A)

 

HPE 5500 150WAC Power Supply

JD362A

HPE FlexNetwork 5500 150WDC Power Supply

JD366A

HPE X361 150W 100-240VAC to 12VDC Power Supply

JD362B

HPE X361 150W 48-60VDC to 12VDC Power Supply

JD366B

 

 

HP 5500-48G-4SFP HI Switch with 2 Interface Slots (JG312A)

 

HPE 5500 150WAC Power Supply

JD362A

HPE FlexNetwork 5500 150WDC Power Supply

JD366A

HPE X361 150W 100-240VAC to 12VDC Power Supply

JD362B

HPE X361 150W 48-60VDC to 12VDC Power Supply

JD366B

 

 

HP 5500-24G-PoE+-4SFP HI Switch with 2 Interface Slots (JG541A)

 

HPE X362 720W 100-240VAC to 56VDC PoE Power Supply

JG544A

HPE X362 1110W 115-240VAC to 56VDC PoE Power Supply

JG545A

 

 

HP 5500-48G-PoE+-4SFP HI Switch with 2 Interface Slots (JG542A)

 

HPE X362 720W 100-240VAC to 56VDC PoE Power Supply

JG544A

HPE X362 1110W 115-240VAC to 56VDC PoE Power Supply

JG545A

 

 

HP 5500-24G-SFP HI Switch with 2 Interface Slots (JG543A)

 

HPE 5500 150WAC Power Supply

JD362A

HPE FlexNetwork 5500 150WDC Power Supply

JD366A

HPE X361 150W 100-240VAC to 12VDC Power Supply

JD362B

HPE X361 150W 48-60VDC to 12VDC Power Supply

JD366B


 

 

Summary of Changes

Date

Version History

Action

Description of Change:

03-Oct-2016

From Version 27 to 28

Added

SKUs added: JD362B, JD366B

Changed

Updates made on Overview and Technical Specifications

01-Dec-2015

From Version 25 to 26

Changed

Overview and Technical Specifications updated

30-Mar-2015

From Version 24 to 25

Added

New transceiver added: JG915A

Changed

Changes made on Technical Specifications

01-Dec-2014

From Version 23 to 24

Changed

Warranty and support updated

18-Aug-2014

From Version 22 to 23

Changed

Technical Specifications updated, Transceivers updated

03-Jul-2014

From Version 21 to 22

Changed

Configuration menu updated.

10-Jun-2014

From Version 20 to 21

Added

Added Switch Enclosure Options to Configuration.

15-Apr-2014

From Version 19 to 20

Changed

Notes section for Modules was revised in Configuration.

19-Mar-2014

From Version 18 to 19

Changed

Transceivers were revised in Configuration.

16-Jan-2014

From Version 17 to 18

Changed

Key features, Product overview, and Features and benefits were revised.

17-Dec-2013

From Version 16 to 17

Changed

Modules was revised in Configuration.

09-Dec-2013

From Version 15 to 16

Changed

Notes for Modules was revised in Configuration.

12-Nov-2013

From Version 14 to 15

Changed

Box Level Integration CTO Models, Rack Level Integration CTO Models, Internal Power Supplies, Modules, and Cables were revised in Configuration.

30-Sep-2013

From Version 13 to 14

Removed

HP X110 100M SFP LC FX Dual Mode Transceiver and HP X110 100M SFP LX LC Dual Mode Transceiver were removed from Configuration

27-Sep-2013

From Version 11 to 13

Changed

Configuration was revised.

26-Jul-2013

From Version 10 to 11

Changed

Changes made in the Features and benefits and Standards and protocols sections.

05-Jul-2013

From Version 9 to 10

Changed

Changes made in the Configuration section.

27-Jun-2013

From Version 8 to 9

Changed

Standards and protocols was revised

21-Jun-2013

From Version 7 to 8

Changed

Layer 2 switching and Security were revised in Features and Benefits

Standards and protocols was revised in Technical Specifications

10-Jun-2013

From Version 6 to 7

Added

Models and Specifications: Several new models were added.

Changed

Updates were made to Configuration, Features and Benefits, the specifications for each model, and the Accessories.

22-Apr-2013

From Version 5 to 6

Added

Overview: Added images.

25-Mar-2013

From Version 4 to 5

Added

Added the Configuration section.

06-Jul-2012

From Version 3 to 4

Changed

Updates were made to Features and Benefits, the specifications for each model, and the Accessories.

30-Mar-2012

From Version 2 to 3

Changed

Additions were made to the specifications for each model.

13-Feb-2012

From Version 1 to 2

Changed

QuickSpecs were reposted for the proper announcement date.

 

 

 

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