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HPE FlexFabric 7900 Switch Series: технические характеристики и документация

В архиве
HPE FlexFabric 7900 Switch Series

Overview

HPE FlexFabric 7900 Switch Series

 

Models

HPE FlexFabric 7904 Switch Chassis

JG682A

HPE FlexFabric 7910 Switch Chassis

JG841A


Key features

  • Nonblocking and lossless Clos architecture
  • Large Layer 2 scaling with TRILL and HPE IRF
  • VxLAN support for virtualized and cloud deployments
  • SDN-enabled with OpenFlow1.3 support
  • High 10GbE, 40GbE and 100GbE density across 9.6 Tbps switch fabric

Product overview

HPE FlexFabric 7900 Switch Series is the next-generation compact modular data center core switch designed to support virtualized data centers and evolution needs of private and public clouds deployments.

The 7900 delivers unprecedented levels of performance, buffering, scale, and availability with high-density 10GbE, 40GbE and 100GbE interfaces using only a fraction of the foot print used by traditional chassis.

The switch supports full Layer 2 and 3 features along with advanced data center features including TRILL, IRF, VxLAN and open standards-based programmability with OpenFlow support


Features and benefits

Product architecture

  • Modern scalable system architecture
    provides nonblocking, lossless Clos architecture with VOQs and large buffers with the flexibility and scalability for future growth
  • Distributed architecture with separation of data and control planes
    delivers enhanced fault tolerance and facilitates continuous operation and zero service disruption during planned or unplanned control-plane events
  • Advanced Comware modular operating system
    brings native high stability, independent process monitoring, and restart through the modular design and multiple processes of Hewlett Packard Enterprise Comware v7 software; supports enhanced serviceability functions

 

Performance

  • High-performance fully distributed architecture
    delivers up to 9.6 Tb/s switching capacity and 5.94 Bpps throughput with nonblocking wirespeed performance
  • High-density 1/10GbE, 40GbE and 100GbE interface connectivity
    offers up to 10 interface module slots to scale up to 120 40GbE or 20 100GbE or 480 10GbE or 240 1/10GbE interface or a combination
  • Low latency and consistent performance
    under 5 microsecond latency (64-byte packets) and consistent performance for broad range of applications typical of a data center including mixed traffic loads of real-time, multicast, and storage traffic
  • Distributed scalable fabric architecture
    with integrated fabric and management modules to deliver more than 1 Tb per slot bandwidth

Data center optimized

  • Virtual Extensible LAN (VxLAN)
    VXLAN Routing/Bridging provides wire-rate support to build overlay networks enabling virtual machine mobility and cloud deployments
  • Scalable Layer 2 fabric functionality
    builds flexible, resilient, and scalable Layer 2 fabrics with TRILL and Hewlett Packard Enterprise IRF
  • Hewlett Packard Enterprise Ethernet Virtual Interconnect (EVI)
    is an Hewlett Packard Enterprise Virtual Application Network innovation that provides a Layer 2 extension across the data center to simplify the interconnectivity of geographically disperse data centers
  • Front-to-back airflow design
    accommodates deployment in data centers utilizing hot-cold aisles

Resiliency and high availability

  • Intelligent Resilient Fabric (IRF)
    creates virtual resilient switching fabrics, where two or more switches perform as a single L2 switch and L3 router; servers or switches can be attached using standard LACP for automatic load balancing and high availability there by eliminating the need for complex protocols and simplifying network operations
  • Redundant/load-sharing fabrics, management, fan assemblies and power supplies
    increase total performance and power availability while providing hitless, stateful failover
  • Hot-swappable modules
    allows replacement of modules without any impact on other modules
  • Graceful restart
    allows routers to indicate to others their capability to maintain a routing table during a temporary shutdown, which significantly reduces convergence times upon recovery; supports OSPF, BGP, and IS-IS
  • Virtual Router Redundancy Protocol (VRRP)
    allows groups of two routers to dynamically back each other up to create highly available routed environments
  • 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
  • IEEE 802.3ad Link Aggregation Control Protocol (LACP)
    supports up to 1024 trunk groups and up to 16 members per trunk; supports static or dynamic groups and a user-selectable hashing algorithm
  • Mid-plane free chassis design
    delivers increased system reliability and optimal airflow as the chassis has no mid-plane and line cards connect directly to the onboard fabric card
  • Bidirectional Forwarding Detection (BFD)
    ultrafast sub second protocol convergence with standards based failure detection which enables link connectivity monitoring and reduces network convergence time for RIP, OSPF, BGP, IS-IS and VRRP

Layer 2 switching

  • VLAN
    supports up to 4,094 port-based or IEEE 802.1Q-based VLANs
  • Port mirroring
    duplicates port traffic (ingress and egress) to a local or remote monitoring port; supports four mirroring groups, with an unlimited number of ports per group
  • Port isolation
    increases security by isolating ports within a VLAN while still allowing them to communicate with other VLANs
  • 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
  • Spanning Tree Protocol (STP)
    supports standard IEEE 802.1D STP, IEEE 802.1w Rapid Spanning Tree Protocol (RSTP) for faster convergence, and IEEE 802.1s Multiple Spanning Tree Protocol (MSTP)

Layer 3 routing

  • Open shortest path first (OSPF)
    delivers faster convergence; uses this link-state routing Interior Gateway Protocol (IGP), which supports ECMP, NSSA, and MD5 authentication for increased security and graceful restart for faster failure recovery
  • Intermediate system to intermediate system (IS-IS)
    uses a path vector Interior Gateway Protocol (IGP), which is defined by the ISO organization for IS-IS routing and extended by IETF RFC 1195 to operate in both TCP/IP and the OSI reference model (Integrated IS-IS)
  • Border Gateway Protocol 4 (BGP-4)
    delivers an implementation of the Exterior Gateway Protocol (EGP) utilizing path vectors; uses TCP for enhanced reliability for the route discovery process; reduces bandwidth consumption by advertising only incremental updates; supports extensive policies for increased flexibility; scales to very large networks
  • Dual IP stack
    maintains separate stacks for IPv4 and IPv6 to ease the transition from an IPv4-only network to an IPv6-only network design
  • Multiprotocol Label Switching (MPLS) Layer 3 VPN
    allows Layer 3 VPNs across a provider network; uses MP-BGP to establish private routes for increased security; supports RFC 2547bis multiple autonomous system VPNs for added flexibility
  • Equal-Cost Multipath (ECMP)
    enables multiple equal-cost links in a routing environment to increase link redundancy and scale bandwidth
  • Unicast Reverse Path Forwarding (uRPF)
    limits erroneous or malicious traffic in accordance with RFC 3074
  • Routing Information Protocol (RIP)
    uses a distance vector algorithm with UDP packets for route determination; supports RIPv1 and RIPv2 routing; includes loop protection
  • IP performance optimization
    provides a set of tools to improve the performance of IPv4 networks; includes directed broadcasts, customization of TCP parameters, support of ICNP error packets, and extensive display capabilities
  • Unicast Reverse Path Forwarding (uRPF) for IPv4
    limits erroneous or malicious traffic in accordance with RFC 3074 for IPv4 traffic
  • BGP+
    extends BGP-4 to support Multiprotocol BGP (MBGP), including support for IPv6 addressing
  • IPv6 tunneling
    allows a smooth transition from IPv4 to IPv6 by encapsulating IPv6 traffic over an existing IPv4 infrastructure
  • IS-IS for IPv6
    extends IS-IS to support IPv6 addressing
  • OSPFv3
    provides OSPF support for IPv6
  • Routing Information Protocol (RIP)
    uses a distance vector algorithm with UDP packets for route determination; supports RIPv1 and RIPv2 routing; includes loop protection
  • RIPng
    extends RIPv2 to support IPv6 addressing
  • Static IPv4 routing
    provides simple manually configured IPv4 routing
  • Static IPv6 routing
    provides simple manually configured IPv6 routing

Quality of Service (QoS)

  • IEEE 802.1p prioritization
    delivers data to devices based on the priority and type of traffic
  • Flexible classification
    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, remark, and logging
  • Bandwidth shaping

- Port-based rate limiting
provides per-port ingress-/egress-enforced increased bandwidth

- Classifier-based rate limiting
uses an access control list (ACL) to enforce increased bandwidth for ingress traffic on each port

- Reduced bandwidth
provides per-port, per-queue egress-based reduced bandwidth

  • Broad QoS feature set
    provides support for Strict Priority Queuing (SP), Weighted Fair Queuing (WFQ), Weighted Deficit Round Robin(WDRR), SP+WDRR together, configurable buffers and Explicit Congestion Notification (ECN)
  • Traffic policing
    supports Committed Access Rate (CAR) and line rate

Layer 3 services

  • 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
  • User Datagram Protocol (UDP) helper
    redirects UDP broadcasts to specific IP subnets to prevent server spoofing
  • Dynamic Host Configuration Protocol (DHCP)
    simplifies the management of large IP networks and supports client and server; DHCP Relay enables DHCP operation across subnets

Management

  • Management interface control
    enables or disables each of the following interfaces depending on security preferences: console port, Telnet port, or reset button
  • Industry-standard CLI with a hierarchical structure
    reduces training time and expenses, and increases productivity in multivendor installations
  • SNMPv1, v2, and v3
    provide complete support of SNMP; provide full support of industry-standard Management Information Base (MIB) plus private extensions; SNMPv3 supports increased security using encryption
  • 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
  • Remote monitoring (RMON)
    uses standard SNMP to monitor essential network functions; supports events, alarm, history, and statistics group plus a private alarm extension group
  • Debug and sampler utility
    supports ping and traceroute for both IPv4 and IPv6
  • Network Time Protocol (NTP)
    synchronizes timekeeping among distributed time servers and clients; keeps timekeeping consistent among all clock dependent devices within the network so that the devices can provide diverse applications based on the consistent time
  • Network Quality Analyzer (NQA)
    analyzes network performance and service quality by sending test packets, and provides network performance and service quality parameters such as jitter, TCP, or FTP connection delays and file transfer rates; allows a network manager to determine overall network performance and to diagnose and locate network congestion points or failures
  • IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
    advertises and receives management information from adjacent devices on a network, facilitating easy mapping by network management applications

Connectivity

  • Jumbo frames
    allows high-performance backups and disaster-recovery systems with a maximum frame size of 12288 bytes
  • Loopback
    supports internal loopback testing for maintenance purposes and an increase in availability; loopback detection protects against incorrect cabling or network configurations and can be enabled on a per-port or per-VLAN basis for added flexibility
  • Monitor link
    collects statistics on performance and errors on physical links, increasing system availability
  • Packet storm protection
    protects against unknown broadcast, unknown multicast, or unicast storms with user-defined thresholds
  • Flow control
    provides back pressure using standard IEEE 802.3x, reducing congestion in heavy traffic situations

Security

  • Access control list (ACL)
    supports powerful ACLs for both IPv4 and IPv6; filters traffic to prevent unauthorized users from accessing the network, or controls network traffic to save resources; rules can either deny or permit traffic to be forwarded; rules can be based on Layer 2 header or Layer 3 protocol header; rules can be set to operate on specific dates or times
  • Remote Authentication Dial-In User Service (RADIUS)
    eases switch security access administration by using a password authentication server
  • Secure shell (SSHv2)
    uses external servers to securely log in to a remote device; with authentication and encryption, it protects against IP spoofing and plain-text password interception; increases the security of Secure FTP (SFTP) transfers
  • 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
  • IP Source Guard
    filters packets on a per-port basis, which prevents illegal packets from being forwarded
  • ARP attack protection
    protects against attacks that use a large number of ARP requests, using a host-specific, user-selectable threshold

Multicast support

  • 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
  • Protocol Independent Multicast (PIM)
    defines modes of multicasting to allow one-to-many and many-to-many transmission of information; PIM Dense Mode (DM), Sparse Mode (SM), and Source-Specific Mode (SSM) are supported

Warranty and support

  • 1-year 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

 

 

 

HPE FlexFabric 7910 Switch Chassis

JG841A

  • Must select min 1 Power Supply
  • Must select min 1 Fan Tray
  • Must select Min 1 Ethernet Module
  • Must select Min 1 Fabric/Management Module
  • 5U - Height

 

 

 

HPE FlexFabric 7904 Switch Chassis

JG682A

  • Must select min 1 Power Supply
  • Must select min 1 Fan Tray
  • Must select Min 1 Ethernet Module
  • 2U - Height

 

 

Remarks:

OCA Only Model Selection Form -

HPE Offering > DataCenter Networking > FlexFabric Switches - Core:

HPE FlexFabric 7900 Switch Series

 

 

 

 

Modules

 

 

 

Fabric/Management Modules

 

JG841A (std 0 // max 2) User Selection (min 1 // max 2) per enclosure

 

 

 

HPE FlexFabric 7910 7.2Tbps Fabric/Main Processing Unit

JG842A

 

See Configuration NOTE: 1, 3

 

 

HPE FlexFabric 7910 2.4Tbps Fabric/Main Processing Unit

JH001A

 

See Configuration NOTE: 1, 3

Configuration Rules:

 

 

 

Note 1

No mixing of any type of Fabric/Management Modules.  Must all be the same sku

 

 

Note 3

If Qty 2X of JG843A HPE FF 7910 Frt(Prt)-Bck(Pwr) Fan Tray is selected, then Fabric/Management Modules is Min 2 / Max 2

 

 

Remarks:

These modules can only be inserted into Slots 10 and 11.

 

 

Ethernet Modules

 

JG682A - System (std 0 // max 4) User Selection (min 1 // max 4) per enclosure

 

JG841A - System (std 0 // max 10) User Selection (min 1 // max 10) per enclosure

 

 

 

HPE FlexFabric 7900 12-port 40GbE QSFP+ FX Module

JG683B

  • min=0 \ max=12 QSFP+ Transceivers

See Configuration NOTE: 1

 

HPE FlexFabric 7900 24-port 1/10GbE SFP+ FX Module

JG845A

  • min=0 \ max=24 SFP+  Transceivers

See Configuration NOTE: 2, 3, 6

 

 

HPE FlexFabric 7900 2-port 100GbE CXP/6-port 40GbE QSFP+/4-port 10GbE SFP+ FX Module

JH002A

  • min=0 \ max=2 CXP Transceivers
  • min=0 \ max=6 QSFP+ Transceivers
  • min=0 \ max=4 SFP+ Transceivers

See Configuration NOTE: 1, 2, 3, 4, 6, 7

 

 

Configuration Rules:

Note 1

The following 40G QSFP+Transceivers install into this Module:

HPE X140 40G QSFP+ LC LR4 SM 10km 1310nm Transceiver

JG661A

HPE X140 40G QSFP+ LC BiDi 100m MM Transceiver

JL251A

HPE X140 40G QSFP+ MPO SR4 Transceiver

JG325B

HPE X140 40G QSFP+ MPO MM 850nm CSR4 300m Transceiver

JG709A

HPE X140 40G QSFP+ LC ER4 40km SM Transceiver

JL306A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 1m Direct Attach Copper Cable

JG326A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 3m Direct Attach Copper Cable

JG327A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 5m Direct Attach Copper Cable

JG328A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 1m Direct Attach Copper Splitter Cable

JG329A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable

JG330A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 5m Direct Attach Copper Splitter Cable

JG331A

HPE X140 40G QSFP+ MPO SR4 Campus-Transceiver

JH679A

HPE X140 40G QSFP+ LC LR4 SM 10km 1310nm Campus-Transceiver

JH677A

HPE X240 40G QSFP+ to QSFP+ 1m Direct Attach Copper Campus-Cable

JH697A

HPE X240 40G QSFP+ to QSFP+ 3m Direct Attach Copper Campus-Cable

JH698A

HPE X240 40G QSFP+ to QSFP+ 5m Direct Attach Copper Campus-Cable

JH699A

HPE X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Campus-Cable

JH700A

HPE X140 40G QSFP+ LC BiDi 100m MM Campus-Transceiver

JH678A

HPE X140 40G QSFP+ MPO MM 850nm CSR4 300m Campus-Transceiver

JH681A

 

 

 

Note 2

The following SFP Transceivers install into this Module:

 

HPE X170 1G SFP LC LH70 1550 Transceiver

JD109A

HPE X170 1G SFP LC LH70 1570 Transceiver

JD110A

HPE X170 1G SFP LC LH70 1590 Transceiver

JD111A

HPE X170 1G SFP LC LH70 1610 Transceiver

JD112A

HPE X170 1G SFP LC LH70 1510 Transceiver

JD115A

HPE X120 1G SFP LC LH100 Transceiver

JD103A

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 X125 1G SFP LC LH70 Transceiver

JD063B

HPE X120 1G SFP LC BX 10-U Transceiver

JD098B

HPE X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE X120 1G SFP RJ45 T Transceiver

JD089B

 

 

 

Note 3

The following SFP+ 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 SR Data Center Transceiver

JL437A

HPE X130 10G SFP+ LC LRM Data Center Transceiver

JL438A

HPE X130 10G SFP+ LC LR Data Center Transceiver

JL439A

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 X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Campus-Cable

JH693A

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

JH694A

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

JH695A

HPE X240 10G SFP+ to SFP+ 7m Direct Attach Copper Campus-Cable

JH696A

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

JC784C

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

 

 

Note 4

The following CXP Transceivers install into this Module:

 

HPE X150 100G CXP MPO SR 100m Multimode Transceiver

JG881A

HPE X2A0 100G CXP CXP 10m Active Optical Cable

JG882A

HPE X2A0 100G CXP CXP 30m Active Optical Cable

JG883A

 

 

 

Note 6

The following Transceivers install into this Module:

 

 

HPE X130 10G SFP+ LC LH80 tunable Transceiver

JL250A

 

HPE X2A0 10G SFP+ to SFP+ 7m Active Optical Cable

JL290A

 

HPE X2A0 10G SFP+ to SFP+ 10m Active Optical Cable

JL291A

 

HPE X2A0 10G SFP+ to SFP+ 20m Active Optical Cable

JL292A

 

 

 

Note 7

The following 40G Transceivers install into this Module:

 

 

HPE X2A0 40G QSFP+ to QSFP+ 7m Active Optical Cable

JL287A

 

HPE X2A0 40G QSFP+ to QSFP+ 10m Active Optical Cable

JL288A

 

HPE X2A0 40G QSFP+ to QSFP+ 20m Active Optical Cable

JL289A

 

 

Transceivers

 

 

 

SFP Transceivers

 

 

 

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 LH100 Transceiver

JD103A

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 X125 1G SFP LC LH40 1310nm Transceiver

JD061A

HPE X125 1G SFP LC LH70 Transceiver

JD063B

HPE X170 1G SFP LC LH70 1550 Transceiver

JD109A

HPE X170 1G SFP LC LH70 1570 Transceiver

JD110A

HPE X170 1G SFP LC LH70 1590 Transceiver

JD111A

HPE X170 1G SFP LC LH70 1610 Transceiver

JD112A

HPE X170 1G SFP LC LH70 1510 Transceiver

JD115A

 

 

SFP+ Transceivers

 

 

 

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 SR Data Center Transceiver

JL437A

HPE X130 10G SFP+ LC LRM Data Center Transceiver

JL438A

HPE X130 10G SFP+ LC LR Data Center Transceiver

JL439A

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

HPE X130 10G SFP+ LC LH80 tunable Transceiver

JL250A

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 X240 10G SFP+ to SFP+ 0.65m Direct Attach Copper Campus-Cable

JH693A

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

JH694A

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

JH695A

HPE X240 10G SFP+ to SFP+ 7m Direct Attach Copper Campus-Cable

JH696A

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

JC784C

HPE X2A0 10G SFP+ to SFP+ 7m Active Optical Cable

JL290A

HPE X2A0 10G SFP+ to SFP+ 10m Active Optical Cable

JL291A

HPE X2A0 10G SFP+ to SFP+ 20m Active Optical Cable

JL292A

 

 

 

 

QSFP+ Transceivers

 

 

 

HPE X140 40G QSFP+ LC LR4 SM 10km 1310nm Transceiver

JG661A

HPE X140 40G QSFP+ LC BiDi 100m MM Transceiver

JL251A

HPE X140 40G QSFP+ MPO SR4 Transceiver

JG325B

HPE X140 40G QSFP+ MPO MM 850nm CSR4 300m Transceiver

JG709A

HPE X140 40G QSFP+ LC ER4 40km SM Transceiver

JL306A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 1m Direct Attach Copper Cable

JG326A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 3m Direct Attach Copper Cable

JG327A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 5m Direct Attach Copper Cable

JG328A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 1m Direct Attach Copper Splitter Cable

JG329A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable

JG330A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 5m Direct Attach Copper Splitter Cable

JG331A

HPE X2A0 40G QSFP+ to QSFP+ 7m Active Optical Cable

JL287A

HPE X2A0 40G QSFP+ to QSFP+ 10m Active Optical Cable

JL288A

HPE X2A0 40G QSFP+ to QSFP+ 20m Active Optical Cable

JL289A

HPE X140 40G QSFP+ MPO SR4 Campus-Transceiver

JH679A

HPE X140 40G QSFP+ MPO MM 850nm CSR4 300m Campus-Transceiver

JH681A

HPE X140 40G QSFP+ LC LR4 SM 10km 1310nm Campus-Transceiver

JH677A

HPE X140 40G QSFP+ LC BiDi 100m MM Campus-Transceiver

JH678A

HPE X240 40G QSFP+ to QSFP+ 1m Direct Attach Copper Campus-Cable

JH697A

HPE X240 40G QSFP+ to QSFP+ 3m Direct Attach Copper Campus-Cable

JH698A

HPE X240 40G QSFP+ to QSFP+ 5m Direct Attach Copper Campus-Cable

JH699A

HPE X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Campus-Cable

JH700A

 

 

CXP Transceivers

 

 

 

HPE X150 100G CXP MPO SR 100m Multimode Transceiver

JG881A

HPE X2A0 100G CXP CXP 10m Active Optical Cable

JG882A

HPE X2A0 100G CXP CXP 30m Active Optical Cable

JG883A

 

 

Cables

 

 

 

MPO Cables

 

HPE Multi Fiber Push On to 4 x Lucent Connector 5m Cable

K2Q46A

HPE Multi Fiber Push On to 4 x Lucent Connector 15m Cable

K2Q47A

 

 

Internal Power Supplies

 

 

 

JG682A - System (std 0 // max 2) User Selection (min 1 // max 2)

 

 

 

JG841A - System (std 0 // max 4) User Selection (min 1 // max 4)

 

 

HPE FlexFabric 7900 1800w AC Power Supply Unit

JG840A

  • includes 1 x c15, 1800w

See Configuration NOTE: 1

 

 

PDU Cable NA/MEX/TW/JP

JG840A#B2B

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

 

 

 

PDU Cable ROW

JG840A#B2C

  • C15 PDU Jumper Cord (ROW)

 

 

High Volt Switch to Wall Power Cord

JG840A#B2E

  • NEMA L6-20P Cord (NA/MEX/JP/TW)

 

 

 

Configuration Rules:

 

 

 

Note 1

Localization (Wall Power Cord) required on orders without #B2B, #B2C (PDU Power Cord) or #B2E. (See Localization Menu)

Remarks:

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

 

 

Switch Enclosure Options

 

 

 

Fan Trays

 

 

 

JG682A, JG841A - System (std 0 // max 2) User Selection (min 1 // max 2) per switch

 

 

 

HPE FlexFabric 7904 Front (Port Side) to Back (Power Side) Airflow Fan Tray

JG684A

 

See Configuration NOTE: 1, 3

 

 

HPE FlexFabric 7904 Back (Power Side) to Front (Port Side) Airflow Fan Tray

JG839A

 

See Configuration NOTE: 1, 3

 

 

HPE FlexFabric 7910 Front (Port Side) to Back (Power Side) Airflow Fan Tray

JG843A

 

See Configuration NOTE: 2, 4, 5

 

 

HPE FlexFabric 7910 Back (Power Side) to Front (Port Side) Airflow Fan Tray

JG844A

 

See Configuration NOTE: 2, 4, 5

 

 

 

Configuration Rules:

 

 

 

Note 1

Only supported on JG682A

 

 

 

Note 2

Only supported on JG841A

 

 

 

 

Note 3

The JG684A and JG839A cannot be mixed in the same chassis.

 

 

 

 

Note 4

If 2x 7910 Fabrics/Management Modules are selected then 7910 Fan Trays is Min2/Max2

 

 

 

Note 5

The JG843A and JG844A cannot be mixed in the same chassis.

 

 

 

 

Mounting Kit

 

 

 

HPE X421 Chassis Universal 4-post Rackmount Kit

JC665A

 

See Configuration NOTE: 1

 

 

HPE FlexFabric 7910 Bottom Support Rails

JH042A

 

See Configuration NOTE: 2

Configuration Rules:

 

 

 

Note 1

This item is optional and used by customers to allow the chassis to slide in and out of the rack

 

 

 

Note 2

Only supported on JG841A

 

 

 

 

Remarks:

Default a quantity of 1 JC665A when Switch JG682A is selected.
Default a quantity of 1 JH042A when Switch JG841 is selected.
Configurator Blue Text:
JH042A is recommended for JG841A. JC665A is also supported with JG841A but takes additional 2 RUs rack space.

 

 

 

 

Cable Management Kit

 

 

 

HPE FlexFabric 7910 Cable Management Frame

JH041A

 

 

See Configuration NOTE: 1

Configuration Rules:

 

 

 

Note 1

Only supported on JG841A

 

 

 

Remarks:

Default a quantity of 1 when Switch is selected.

 

Technical Specifications

HPE FlexFabric 7904 Switch Chassis (JG682A)

 

I/O ports and slots

4 I/O module slots
Supports a maximum of 48 40GbE ports or 192 10GbE ports or 96 1/10GbE ports or 8 100GbE ports, or a combination

 

Power supplies

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

 

Fan tray

2 fan tray slots
JG684A for Front to Back airflow

 

Physical characteristics

Dimensions

17.32(w) x 28.35(d) x 3.47(h) in (44 x 72 x 8.81 cm) (2U height)

 

Weight

39.46 lb (17.9 kg)

 

Full configuration weight

87.7 lb (39.78 kg)

 

Memory and processor

Management module

Dual Core MIPS64 @ 1.2 GHz, 512 MB flash, 4 GB DDR2 SDRAM

 

Mounting and enclosure

Mounts in an EIA standard 19-inch rack or other equipment cabinet (hardware included); Horizontal surface mounting only

 

Performance

Throughput

up to 2.3 Bpps (64-byte packets)

 

Switching capacity

3.8 Tbps

 

Routing table size

32768 entries (IPv4), 8192 entries (IPv6)

 

MAC address table size

262144 entries

 

Reliability

Availability

99.999%

 

Environment

Operating temperature

32°F to 104°F (0°C to 40°C)

 

Operating relative humidity

10% to 95%, noncondensing

 

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

 

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

 

Altitude

up to 13,123 ft (4 km)

 

Acoustic

Low-speed fan: 59.8 dB, High-speed fan: 76.3 dB

 

 

Airflow direction

Front-to-back or back-to-front (Determined by fan installed fans)

 

Electrical characteristics

Voltage

100 - 120 / 200 - 240 VAC, rated

 

Current

16/60 A

 

Power output

1800 W

 

Frequency

50/60 Hz

 

Notes

Based on a common power supply of 1,800 W (AC)

 

Safety

UL 60950-1; CAN/CSA 22.2 No. 60950-1; IEC 60950-1; EN 60950-1; FDA 21 CFR Subchapter J; AS/NZS 60950-1; RoHS Compliance EN 50581

 

Emissions

VCCI Class A; EN 55022 Class A; CISPR 22 Class A; IEC/EN 61000-3-2; IEC/EN 61000-3-3; ICES-003 Class A; AS/NZS CISPR 22 Class A; FCC (CFR 47, Part 15) Class A; ETSI EN 300
386

 

Immunity

Generic

EN 55024

 

Management

IMC - Intelligent Management Center; command-line interface; out-of-band management (serial RS-232C); SNMP Manager; Telnet; terminal interface (serial RS-232C); modem interface; IEEE 802.3 Ethernet MIB; Ethernet Interface MIB

 

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.

 

 


HPE FlexFabric 7910 Switch Chassis (JG841A)

 

I/O ports and slots

10 I/O module slots
Supports a maximum of 120 40GbE ports or 480 10GbE ports or 240 1/10GbE ports or 20 100GbE ports, or a combination

 

Power supplies

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

 

Fan tray

2 fan tray slots
JG843A for Front to Back airflow OR JG844A for Back to Front airflow

 

Physical characteristics

Dimensions

17.32(w) x 29.92(d) x 8.66(h) in (43.99 x 76 x 22 cm) (5U height)

 

Weight

63.49 lb (28.8 kg)

 

Full configuration weight

156.97 lb (71.2 kg)

 

Memory and processor

Management module

Dual Core MIPS64 @ 1.0 GHz, 1 GB flash, 8 GB DDR2 SDRAM

 

Mounting and enclosure

Mounts in an EIA standard 19-inch rack or other equipment cabinet (hardware included); Horizontal surface mounting only

 

Performance

Throughput

up to 5.8 Bpps (64-byte packets)

 

Switching capacity

9.6 Tbps

 

Routing table size

32768 entries (IPv4), 8192 entries (IPv6)

 

MAC address table size

262144 entries

 

Reliability

Availability

99.999%

 

Environment

Operating temperature

32°F to 104°F (0°C to 40°C)

 

Operating relative humidity

10% to 95%, noncondensing

 

Nonoperating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

 

Nonoperating/Storage relative humidity

5% to 95%, noncondensing

 

Altitude

up to 13,123 ft (4 km)

 

Acoustic

Low-speed fan: 47.9 dB, High-speed fan: 77.9 dB

 

 

Airflow direction

Front-to-back or back-to-front (Determined by fan installed fans)

 

Electrical characteristics

Voltage

100 - 240 VAC, rated

 

Current

13 A

 

Power output

1800 W

 

Frequency

50/60 Hz

 

Notes

Based on a common power supply of 1,800 W (AC)

 

Safety

UL 60950-1; CAN/CSA 22.2 No. 60950-1; IEC 60950-1; EN 60950-1; FDA 21 CFR Subchapter J; AS/NZS 60950-1; RoHS Compliance EN 50581

 

Emissions

VCCI Class A; EN 55022 Class A; CISPR 22 Class A; IEC/EN 61000-3-2; IEC/EN 61000-3-3; ICES-003 Class A; AS/NZS CISPR 22 Class A; FCC (CFR 47, Part 15) Class A; ETSI EN 300 386

 

Immunity

Generic

EN 55024

 

Management

IMC - Intelligent Management Center; command-line interface; out-of-band management (serial RS-232C); SNMP Manager; Telnet; terminal interface (serial RS-232C); modem interface; IEEE 802.3 Ethernet MIB; Ethernet Interface MIB

 

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 1771 BGPv4

RFC 1772 Application of the BGP

RFC 1997 BGP Communities Attribute

RFC 1998 An Application of the BGP Community Attribute in Multi-home Routing

RFC 2385 BGP Session Protection via TCP MD5

RFC 2439 BGP Route Flap Damping

RFC 2796 BGP Route Reflection

RFC 2858 BGP-4 Multi-Protocol Extensions

RFC 2918 Route Refresh Capability

RFC 3065 Autonomous System Confederations for BGP

RFC 3392 Capabilities Advertisement with BGP-4

RFC 4271 A Border Gateway Protocol 4 (BGP-4)

RFC 4272 BGP Security Vulnerabilities Analysis

RFC 4273 Definitions of Managed Objects for BGP-4

RFC 4274 BGP-4 Protocol Analysis

RFC 4275 BGP-4 MIB Implementation Survey

RFC 4276 BGP-4 Implementation Report

RFC 4277 Experience with the BGP-4 Protocol

RFC 4360 BGP Extended Communities Attribute

RFC 4456 BGP Route Reflection: An Alternative to Full Mesh Internal BGP (IBGP)

 

Denial of service protection

Automatic filtering of well-known denial-of-service packets

CPU DoS Protection

Rate Limiting by ACLs

 

Device Management

RFC 1157 SNMPv1/v2c

RFC 1305 NTPv3

RFC 1902 (SNMPv2)

RFC 2579 (SMIv2 Text Conventions)

RFC 2580 (SMIv2 Conformance)

RFC 2819 (RMON groups Alarm, Event, History and Statistics only)

HTTP, SSHv1, and Telnet

Multiple Configuration Files

Multiple Software Images

SSHv1/SSHv2 Secure Shell

 

General Protocols

IEEE 802.1p Priority

IEEE 802.1Q VLANs

IEEE 802.1s Multiple Spanning Trees

IEEE 802.1w Rapid Reconfiguration of Spanning Tree

IEEE 802.1X PAE

IEEE 802.3ab 1000BASE-T

IEEE 802.3ac (VLAN Tagging Extension)

IEEE 802.3ad Link Aggregation Control Protocol (LACP)

IEEE 802.3ae 10-Gigabit Ethernet

IEEE 802.3ah Ethernet in First Mile over Point to Point Fiber - EFMF

IEEE 802.3ba 40 and 100 Gigabit Ethernet Architecture

IEEE 802.3x Flow Control

IEEE 802.3z 1000BASE-X

RFC 768 UDP

RFC 783 TFTP Protocol (revision 2)

RFC 791 IP

RFC 792 ICMP

RFC 793 TCP

RFC 826 ARP

RFC 854 TELNET

RFC 894 IP over Ethernet

RFC 950 Internet Standard Subnetting Procedure

RFC 959 File Transfer Protocol (FTP)

RFC 1027 Proxy ARP

RFC 1035 Domain Implementation and Specification

RFC 1042 IP Datagrams

RFC 1058 RIPv1

RFC 1142 OSI IS-IS Intra-domain Routing Protocol

RFC 1195 OSI ISIS for IP and Dual Environments

RFC 1213 Management Information Base for Network Management of TCP/IP-based internets

RFC 1305 NTPv3

RFC 1350 TFTP Protocol (revision 2)

RFC 1393 Traceroute Using an IP Option

RFC 1519 CIDR

RFC 1531 Dynamic Host Configuration Protocol

RFC 1533 DHCP Options and BOOTP Vendor Extensions

RFC 1591 DNS (client only)

RFC 1624 Incremental Internet Checksum

RFC 1701 Generic Routing Encapsulation

RFC 1721 RIP-2 Analysis

RFC 1723 RIP v2

RFC 1812 IPv4 Routing

RFC 2082 RIP-2 MD5 Authentication

RFC 2091 Trigger RIP

RFC 2131 DHCP

RFC 2138 Remote Authentication Dial In User Service (RADIUS)

RFC 2236 IGMP Snooping

RFC 2338 VRRP

RFC 2453 RIPv2

RFC 2644 Directed Broadcast Control

RFC 2763 Dynamic Name-to-System ID mapping support

RFC 2784 Generic Routing Encapsulation (GRE)

RFC 2966 Domain-wide Prefix Distribution with Two-Level IS-IS

RFC 2973 IS-IS Mesh Groups

RFC 3022 Traditional IP Network Address Translator (Traditional NAT)

RFC 3277 IS-IS Transient Blackhole Avoidance

RFC 3567 Intermediate System to Intermediate System (IS-IS) Cryptographic Authentication

RFC 3719 Recommendations for Interoperable Networks using Intermediate System to Intermediate System (IS-IS)

RFC 3784 ISIS TE support

RFC 3786 Extending the Number of IS-IS LSP Fragments Beyond the 256 Limit

RFC 3787 Recommendations for Interoperable IP Networks using Intermediate System to Intermediate System (IS-IS)

RFC 3847 Restart signaling for IS-IS

RFC 4251 The Secure Shell (SSH) Protocol Architecture

RFC 4486 Subcodes for BGP Cease Notification Message

RFC 4941 Privacy Extensions for Stateless Address Autoconfiguration in IPv6

RFC 5130 A Policy Control Mechanism in IS-IS Using Administrative Tags

 

IP Multicast

RFC 2236 IGMPv2

RFC 2283 Multiprotocol Extensions for BGP-4

RFC 2362 PIM Sparse Mode

RFC 3376 IGMPv3

RFC 3973 PIM Dense Mode

RFC 4541 Considerations for Internet Group Management Protocol (IGMP) and Multicast Listener Discovery (MLD) Snooping Switches

RFC 4601 PIM Sparse Mode

RFC 4604 Using Internet Group Management Protocol Version 3 (IGMPv3) and Multicast Listener Discovery Protocol Version 2 (MLDv2) for Source-Specific Multicast

RFC 4605 IGMP/MLD Proxying

RFC 4607 Source-Specific Multicast for IP

RFC 5059 Bootstrap Router (BSR) Mechanism for Protocol Independent Multicast (PIM)

 

IPv6

RFC 1886 DNS Extension for IPv6

RFC 1887 IPv6 Unicast Address Allocation Architecture

RFC 1981 IPv6 Path MTU Discovery (v2 models only)

RFC 2080 RIPng for IPv6

RFC 2081 RIPng Protocol Applicability Statement

RFC 2292 Advanced Sockets API 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 2529 Transmission of IPv6 Packets over IPv4

RFC 2545 Use of MP-BGP-4 for IPv6

RFC 2553 Basic Socket Interface Extensions for IPv6

RFC 2710 Multicast Listener Discovery (MLD) for IPv6

RFC 2740 OSPFv3 for IPv6

RFC 2893 Transition Mechanisms for IPv6 Hosts and Routers

RFC 3056 Connection of IPv6 Domains via IPv4 Clouds

RFC 3307 IPv6 Multicast Address Allocation

RFC 3315 DHCPv6 (client and relay)

RFC 3484 Default Address Selection for IPv6

RFC 3513 IPv6 Addressing Architecture

RFC 3736 Stateless Dynamic Host Configuration Protocol (DHCP) Service for IPv6

RFC 3810 MLDv2 for IPv6

RFC 4214 Intra-Site Automatic Tunnel Addressing Protocol (ISATAP)

RFC 4443 ICMPv6

RFC 4861 IPv6 Neighbor Discovery

RFC 4862 IPv6 Stateless Address Auto-configuration

 

MIBs

RFC 1156 (TCP/IP MIB)

RFC 1157 A Simple Network Management Protocol (SNMP)

RFC 1215 A Convention for Defining Traps for use with the SNMP

RFC 1493 Bridge MIB

RFC 1573 SNMP MIB II

RFC 1643 Ethernet MIB

RFC 1657 BGP-4 MIB

RFC 1907 SNMPv2 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-Notification MIB

RFC 2573 SNMP-Target MIB

RFC 2578 Structure of Management Information Version 2 (SMIv2)

RFC 2580 Conformance Statements for SMIv2

RFC 2618 RADIUS Client MIB

RFC 2620 RADIUS Accounting MIB

RFC 2665 Ethernet-Like-MIB

RFC 2668 802.3 MAU MIB

RFC 2674 802.1p and IEEE 802.1Q Bridge MIB

RFC 2787 VRRP MIB

RFC 2819 RMON MIB

RFC 2925 Ping MIB

RFC 2932IP (Multicast Routing MIB)

RFC 2933 IGMP MIB

RFC 3414 SNMP-User based-SM MIB

RFC 3415 SNMP-View based-ACM MIB

RFC 3417 Simple Network Management Protocol (SNMP) over IEEE 802 Networks

RFC 3418 MIB for SNMPv3

RFC 3595 Textual Conventions for IPv6 Flow Label

RFC 3621 Power Ethernet MIB

RFC 3813 MPLS LSR MIB

RFC 3814 MPLS FTN MIB

RFC 3815 MPLS LDP MIB

RFC 3826 AES for SNMP's USM MIB

RFC 4133 Entity MIB (Version 3)

RFC 4444 Management Information Base for Intermediate System to Intermediate System (IS-IS)

 

Network Management

IEEE 802.1AB Link Layer Discovery Protocol (LLDP)

RFC 1155 Structure of Management Information

RFC 1157 SNMPv1

RFC 1448 Protocol Operations for version 2 of the Simple Network Management Protocol (SNMPv2)

RFC 2211 Controlled-Load Network

RFC 2819 Four groups of RMON: 1 (statistics), 2 (history), 3 (alarm) and 9 (events)

RFC 3176 sFlow

RFC 3411 SNMP Management Frameworks

RFC 3412 SNMPv3 Message Processing

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)

 

OSPF

RFC 1245 OSPF protocol analysis

RFC 1246 Experience with OSPF

RFC 1765 OSPF Database Overflow

RFC 1850 OSPFv2 Management Information Base (MIB), traps

RFC 2154 OSPF w/ Digital Signatures (Password, MD-5)

RFC 2328 OSPFv2

RFC 2370 OSPF Opaque LSA Option

RFC 3101 OSPF NSSA

RFC 3137 OSPF Stub Router Advertisement

RFC 3623 Graceful OSPF Restart

RFC 3630 Traffic Engineering Extensions to OSPFv2

RFC 4061 Benchmarking Basic OSPF Single Router Control Plane Convergence

RFC 4062 OSPF Benchmarking Terminology and Concepts

RFC 4063 Considerations When Using Basic OSPF Convergence Benchmarks

RFC 4222 Prioritized Treatment of Specific OSPF Version 2 Packets and Congestion Avoidance

RFC 4577 OSPF as the Provider/Customer Edge Protocol for BGP/MPLS IP Virtual Private Networks (VPNs)

RFC 4811 OSPF Out-of-Band LSDB Resynchronization

RFC 4812 OSPF Restart Signaling

RFC 4813 OSPF Link-Local Signaling

RFC 4940 IANA Considerations for OSPF

 

QoS/CoS

IEEE 802.1p (CoS)

RFC 1349 Type of Service in the Internet Protocol Suite

RFC 2211 Specification of the Controlled-Load Network Element Service

RFC 2212 Guaranteed Quality of Service

RFC 2474 DSCP DiffServ

RFC 2475 DiffServ Architecture

RFC 2597 DiffServ Assured Forwarding (AF)

RFC 2598 DiffServ Expedited Forwarding (EF)

 

Security

IEEE 802.1X Port Based Network Access Control

RFC 1321 The MD5 Message-Digest Algorithm

RFC 2082 RIP-2 MD5 Authentication

RFC 2104 Keyed-Hashing for Message Authentication

RFC 2408 Internet Security Association and Key Management Protocol (ISAKMP)

RFC 2409 The Internet Key Exchange (IKE)

RFC 2865 RADIUS Authentication

RFC 2866 RADIUS Accounting

RFC 2868 RADIUS Attributes for Tunnel Protocol Support

RFC 2869 RADIUS Extensions

Access Control Lists (ACLs)

Guest VLAN for 802.1X

MAC Authentication

SSHv1/SSHv2 Secure Shell

 

MPLS

RFC 2205 Resource ReSerVation Protocol

RFC 2209 Resource ReSerVation Protocol (RSVP)

RFC 2283 Multiprotocol Extensions for BGP-4

RFC 2961 RSVP Refresh Overhead Reduction Extensions

RFC 3031 Multiprotocol Label Switching Architecture

RFC 3032 MPLS Label Stack Encoding       

RFC 3107 Carrying Label Information in BGP-4

RFC 3479 Fault Tolerance for the Label Distribution Protocol (LDP)

RFC 3564 Requirements for Support of Differentiated Service-aware MPLS Traffic Engineering

RFC 4364 BGP/MPLS IP Virtual Private Networks (VPNs)

RFC 4379 Detecting Multi-Protocol Label Switched (MPLS) Data Plane Failures

RFC 4447 Pseudowire Setup and Maintenance Using LDP

RFC 4448 Encapsulation Methods for Transport of Ethernet over MPLS Networks

RFC 5036 LDP Specification

 

Accessories

HPE FlexFabric 7900 Switch Series accessories

 

 

 

Modules

 

HPE FlexFabric 7900 12-port 40GbE QSFP+ FX Module

JG683B

HPE FlexFabric 7900 24-port 1/10GbE SFP+ FX Module

JG845A

HPE FlexFabric 7900 2-port 100GbE CXP/6-port 40GbE QSFP+/4-port 10GbE SFP+ FX Module

JH002A

 

 

Transceivers

 

HPE X140 40G QSFP+ MPO SR4 Transceiver

JG325B

HPE X140 40G QSFP+ MPO MM 850nm CSR4 300m Transceiver

JG709A

HPE X140 40G QSFP+ LC ER4 40km SM Transceiver

JL306A

HPE X140 40G QSFP+ LC LR4L 2km SM Transceiver

JL286A

HPE X140 40G QSFP+ LC LR4 SM 10km 1310nm Transceiver

JG661A

HPE X140 40G QSFP+ LC BiDi 100m MM Transceiver

JL251A

HPE X2A0 40G QSFP+ to QSFP+ 7m Active Optical Cable

JL287A

HPE X2A0 40G QSFP+ to QSFP+ 10m Active Optical Cable

JL288A

HPE X2A0 40G QSFP+ to QSFP+ 20m Active Optical Cable

JL289A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 1m Direct Attach Copper Cable

JG326A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 3m Direct Attach Copper Cable

JG327A

HPE FlexNetwork X240 40G QSFP+ QSFP+ 5m Direct Attach Copper Cable

JG328A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 1m Direct Attach Copper Splitter Cable

JG329A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable

JG330A

HPE FlexNetwork X240 40G QSFP+ to 4x10G SFP+ 5m Direct Attach Copper Splitter Cable

JG331A

HPE X150 100G CXP MPO SR 100m Multimode Transceiver

JG881A

HPE X2A0 100G CXP CXP 10m Active Optical Cable

JG882A

HPE X2A0 100G CXP CXP 30m Active Optical Cable

JG883A

HPE X130 10G SFP+ LC SR Transceiver

JD092B

HPE X130 10G SFP+ LC LR Transceiver

JD094B

HPE X130 10G SFP+ LC ER 40km Transceiver

JG234A

HPE X130 10G SFP+ LC LH 80km Transceiver

JG915A

HPE X2A0 10G SFP+ to SFP+ 7m Active Optical Cable

JL290A

HPE X2A0 10G SFP+ to SFP+ 10m Active Optical Cable

JL291A

HPE X2A0 10G SFP+ to SFP+ 20m Active Optical Cable

JL292A

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 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 X170 1G SFP LC LH70 1510 Transceiver

JD115A

HPE X170 1G SFP LC LH70 1550 Transceiver

JD109A

HPE X170 1G SFP LC LH70 1570 Transceiver

JD110A

HPE X170 1G SFP LC LH70 1590 Transceiver

JD111A

HPE X170 1G SFP LC LH70 1610 Transceiver

JD112A

HPE X120 1G SFP LC LH100 Transceiver

JD103A

 

 

Power Supply

 

HPE FlexFabric 7900 1800w AC Power Supply Unit

JG840A

 

 

Mounting Kit

 

HPE X421 Chassis Universal 4-post Rackmount Kit

JC665A

 

 

HPE FlexFabric 7904 Switch Chassis (JG682A)

 

HPE FlexFabric 7904 Front (Port Side) to Back (Power Side) Airflow Fan Tray

JG684A

HPE FlexFabric 7904 Back (Power Side) to Front (Port Side) Airflow Fan Tray

JG839A

HPE FlexFabric 7910 Switch Chassis (JG841A)

 

HPE FlexFabric 7910 7.2Tbps Fabric/Main Processing Unit

JG842A

HPE FlexFabric 7910 2.4Tbps Fabric/Main Processing Unit

JH001A

HPE FlexFabric 7910 Front (Port Side) to Back (Power Side) Airflow Fan Tray

JG843A

HPE FlexFabric 7910 Back (Power Side) to Front (Port Side) Airflow Fan Tray

JG844A

HPE FlexFabric 7910 Cable Management Frame

JH041A

HPE FlexFabric 7910 Bottom Support Rails

JH042A


 

 

Summary of Changes

Date

Version History

Action

Description of Change

01-Oct-2018

Version 19

Changed

Recommended and Extended markings removed from the document.

04-Sep-2018

Version 18

Changed

QuickSpecs updated with the current Recommended-Extended Options

18-Apr-2017

Version 17

Added

SKUs added on the Configuration section: JH693A, JH694A, JH695A, JH696A, JH679A, JH681A, JH677A, JH678A, JH697A, JH698A, JH699A, JH700A, JL437A, JL438A, JL439A

07-Nov-2016

Version 16

Added

SKU added: JL306A

30-Sep-2016

Version 15

Changed

Configuration section updated.

01-Aug-2016

Version 14

Added

JL290A, JL291A, JL292A, JL287A, JL288A, JL289A, JL286A

Changed

Standards and protocols updated.

06-Jun-2016

Version 13

Added

SKU added: JG844A

Changed

Features and benefits and Technical Specifications updated

22-Apr-2016

Version 12

Changed

SKUs descriptions updated on all document, minor changes made on Technical Specifications and Features and Benefits

16-Feb-2016

Version 11

Added

SKUs added: JL251A

17-Dec-2015

Version 10

Changed

Technical Specifications updated

01-Dec-2015

Version 9

Added

SKUs added: JG839A, JG882A, JG883A

Changed

QuickSpecs name changed to HPE FlexFabric 7900 Switch Series

28-Sep-2015

Version 8

Changed

Updated Overview, Features and Benefits, Technical Specification and Accessories section

01-Jun-2015

Version 7

Added

SKUs Added: JH002A, JG881A

Changed

Updated Overview, Technical Specification and Accessories section

30-Mar-2015

Version 6

Added

Added new SKUs and supported transceivers: JG683B, JG845A, JD092B, JD093B, JD094B, JG234A, JD095C, JD096C, JD097C, JG081C, JC784C, JD089B, JD098B, JD099B, JD103A, JD062A, JD118B, JD119B, JD061A, JD063B, JD109A, JD110A, JD111A, JD112A, JD113A, JD114A, JD115A, JD116A, JG325B, K2Q46A, K2Q47A

17-Feb-2015

Version 5

Removed

Removed supported transceivers from the Configuration section

01-Dec-2014

Version 4

Added

Added 1 New model JG841A

Changed

Updated Key features, Product overview, Features and benefits

03-Jul-2014

Version 3

Changed

Switch Chassis, Internal Power Supplies, and Fan Trays were revised in Configuration.

26-Jun-2014

Version 2

Changed

Updated the Power Supply specifications.

26-May-2014

Version 1

Created

Document creation

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

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© Copyright 2018 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

c04293387 - 14944 - Worldwide  - V19 - 01-October-2018