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HPE Networking Comware Switch Series 7500X: технические характеристики и документация

HPE Networking Comware Switch Series 7500X

Shape the Future of QuickSpecs - Your Input Matters

HPE Networking Comware Switch Series 7500X QuickSpecs

 

The HPE Networking Comware Switch Series 7500X is a versatile, multi-layered, high performance, modular switch for enterprise LAN edge, aggregation, and core layers.

 

The 7500X combination of Chassis, MPUs and LPUs offers 1/10/40/100GbE connectivity, with PoE/PoE+, meets existing and future requirements, IoT, etc. Higher switching bandwidth (480Gbps/slot) and L2/L3 routing services dramatically improve performance and increases support for mission-critical environments.

 

Customers can take advantage of Virtual Extensible LAN (VXLAN) and Ethernet VPN (BGP EVPN) to provide greater scalability and better utilization of available network paths and leverage HPE Intelligent Resilient Fabric (IRF) to enable flatter, more agile and highly available networks.

 

 

HPE Intelligent Management Center (IMC) provides a single view of the entire network. Support for IPv4/IPv6, and MPLS/VPLS features provide investment protection and an easy transition from IPv4 to IPv6 networks and ease of maintenance is assured with Graceful Insertion and Removal (GIR) and In Service Software Update (ISSU).

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Description automatically generated

 

HPE Networking Comware Switch Series 7500X

From left to right- HPE 7503X Ethernet Switch Chassis, HPE 7510X PoE Ethernet Switch Chassis, HPE 7506X PoE Ethernet Switch Chassis 



 

Chassis Models

HPE Networking Comware Switch Chassis PoE Ethernet 10 slots 7510X

R8N47A

HPE Networking Comware Switch Chassis PoE Ethernet 6 slots 7506X

R8N48A

HPE Networking Comware Switch Chassis Ethernet 3 slots 7503X

R8N49A

 

 


Key Features

- Higher bandwidth of 480 Gbps/slot and higher scalability with up to 288K MAC, up to 104K ARP and up to 256K FIB (depending on the LPU and operational mode chosen) for enhanced switch performance.

- Multiple interface options of 1/10/40/100 GbE with higher port counts of upto 40*100G across the 3 models to meet varying network scale demands.

- Virtual Extensible LAN (VXLAN) with Ethernet VPN (BGP EVPN) allows greater flexibility, better performance with wire speed, better scalability and enhanced security.

- Enhanced programmability for faster time to service and integration into modern tools (Puppet/Chef/Ansible) with CLI, SNMPv2/v3, full Netconf/Yang models, REST APIs and scripting (python). 

- Comprehensive security approach at every layer including micro-segmentation which enables grouping of endpoints based on a specific criteria.

- Enhanced Media Delivery Index (eMDI) to monitor audio and video service quality and locate faults.

- Multicast DNS (mDNS) for enabling endpoint devices to locate a device or service by name in small local networks without using preconfigured name servers.


Management

HPE intelligent Management Center

The HPE Networking Comware Switch Series 7500X can be seamlessly managed with HPE Intelligent Management Center (IMC) to provide end-to-end network transparency with a consistent network experience.

 

Management interface control

Provides management access through a modem port and terminal interface, as well as in-band and out-of-band Ethernet ports; provides access through terminal interface, Telnet, or secure shell (SSH)

 

Industry-standard CLI with a hierarchical structure
Reduces training time and expenses, and increases productivity in multivendor installations

 

Management security

Restricts access to critical configuration commands; offers multiple privilege levels with password protection; ACLs provide Telnet and SNMP access; local and remote syslog capabilities allow logging of all access

 

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 wire speed 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

 

FTP, TFTP, and SFTP support

Offers different mechanisms for configuration updates; FTP allows bidirectional transfers over a TCP/IP network; trivial FTP (TFTP) is a simpler method using User Datagram Protocol (UDP); Secure File Transfer Protocol (SFTP) runs over an SSH tunnel to provide additional security

 

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

Information center

Provides a central repository for system and network information; aggregates all logs, traps, and debugging information generated by the system and maintains them in order of severity; outputs the network information to multiple channels based on user-defined rules

 

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

 

Dual flash images
Provides independent primary and secondary operating system files for backup while upgrading

 

Multiple configuration files
Stores easily to the flash image

 

Programmability

Supports entire set of programming tools from legacy CLI/SNMP, to full Netconf/Yang model. RestAPIs combined with scripting (python) allow inclusion of these switches into modern toolchains (Puppet/Chef/Ansible playbooks) 


Software-Defined Networking

OpenFlow 1.3

Enables SDN to provide an end-to-end solution to automate the network, allowing for rapid application deployments (Comware v7 only) 


Resiliency And High Availability

Redundant/load-sharing fabrics, management, fan assemblies, and power supplies
Increase total performance and power availability while providing hitless, stateful failover

 

All hot-swappable modules
Allows replacement of modules without any impact on other modules

 

Dual internal power supply
Provides high reliability

 

Separate data and control paths
Separate control from services and keeps service processing isolated; increases security and performance

 

Passive design system
Delivers increased system reliability as the backplane has no active components

 

IEEE 802.3ad link-aggregation control protocol (LACP)
Supports upto 1000 trunks, each with 32 links per truck; and provides support for static or dynamic groups and a user-selectable hashing algorithm

 

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

 

IRF capability
Provides single IP address management for a resilient virtual switching fabric of up to four switches

 

Ring resiliency protection protocol (RRPP)
Provides standard sub-100 ms recovery for a ring Ethernet-based topology

 

Virtual Router Redundancy Protocol (VRRP)
Allows a group of routers to dynamically back each other up to create highly available routed environments

 

Graceful restart

Supports graceful restart for OSPF, IS-IS, BGP, LDP, and RSVP; the network remains stable during the active-standby switchover; after the switchover, the device quickly learns the network routes by communicating with adjacent routers; forwarding remains uninterrupted during the switchover to achieve nonstop forwarding (NSF)

 

Graceful Insertion and Removal

Graceful Insertion and Removal (GIR) minimizes service interruption by instructing affected protocols to isolate the device for maintenance/upgrade and alter to the redundant path. GIR supports: LACP, BGP, IS-IS, OSPF, and OSPFv3.

 

Ultrafast protocol convergence with standards-based failure detection-bidirectional forwarding detection

Enables link connectivity monitoring and reduces network convergence time for the routing information protocol (RIP), OSPF, BGP, IS-IS, VRRP, MPLS, and IRF

 

Smart link
Allows 50 ms failover between links

 

IP/LDP FRR

Nodes are configured with backup ports, routes, and LSPs; local implementation requires no cooperation of adjacent devices, simplifying the deployment; solves the traditional convergence faults in IP forwarding and MPLS forwarding, protecting the links, nodes, and paths without establishing respective backup LSPs for them; realizes restoration within 50 ms, with the restoration time independent of the number of routes and fast link switchovers, without route convergence

 

In-Service Software Upgrade (ISSU)

Applies patches and new service features to be installed without restarting the system, increasing network uptime and simplifying maintenance. Requires use of IRF, and R7169P01 or later releases. 



 

Performance

High-speed fully distributed architecture

The HPE Networking Comware Switch Series 7500X offers up to 480 Gbps of switching capacity per slot (three times the switching capacity of HPE Networking Comware 7500 Switch series at 160 Gbps per slot.
It offers up to 40x100GbE/ 240x40GbE / 480x10GbE / 480x1GbE ports or a combination of these, along with PoE/PoE+ support for IP phones, cameras, and future high-density Internet of Things (IoT) deployments.
Supports a switching capacity of up to 9.6Tbps for enhanced performance of mission critical environments. Up to 288K MAC, up to 104K ARP, and up to 256K FIB tables allow higher scalability, depending on the LPU and operational mode chosen during first installation.

 

Scalable system design

Provides investment protection to support future technologies and higher-speed connectivity with a backplane designed to accommodate bandwidth increases

 

Flexible chassis selection

Enables you to tailor your product selections to your budget with a choice of six chassis, ranging from a 10-slot to a 3slot chassis

 

Fully distributed forwarding in all I/O Modules

The 7500X is based on a distributed forwarding architecture, with one of several ASICs per line card responsible for forwarding decisions. The control plane, which can be made fully redundant with the addition of a secondary MPU, is used only for the initial learning (MAC, ARP, RIB...) before the information is propagated to each and every line card ASIC. This distributed forwarding architecture provides the best possible results in term of throughput, performance and latency. 


Layer 2 Switching

VLAN

Supports up to 4,096 port-based or IEEE 802.1Q-based VLANs; and supports MAC-based VLANs, protocol-based VLANs, and IP-subnet-based VLANs for added flexibility

 

Port isolation
Increases security by isolating ports within a VLAN while still allowing them to communicate with other VLANs

 

Bridge Protocol Data Unit (BPDU) tunneling

Transmits Spanning Tree Protocol BPDUs transparently, allowing correct tree calculations across service providers, WANs, or MANs

 

GARP VLAN Registration Protocol
Allows automatic learning and dynamic assignment of VLANs

 

Port mirroring

Duplicates port traffic (ingress and egress) to a local or remote monitoring port; and supports four mirroring groups, with an unlimited number of ports per group

 

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)

 

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

 

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 802.1ad 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

 

Super VLAN
Saves IP address space, using RFC 3069 standard (also called VLAN aggregation)

 

Per-VLAN Spanning Tree Plus (PVST+)

Allows each VLAN to build a separate spanning tree to improve link bandwidth usage in network environments with multiple VLANs 


Quality of Service (QoS)

IEEE 802.1p prioritization
Delivers data to devices based on the priority and type of traffic

 

Class of Service (CoS)

Sets the IEEE 802.1p priority tag based on IP address, IP Type of Service (ToS), Layer 3 protocol, TCP/UDP port number, source port, and DiffServ

 

Micro-segmentation

Micro-segmentation enables grouping of endpoints based on a specific criteria for application of a group-based policy, implemented by using PBR / QoS / PacketFilter.

 

Enhanced Media Delivery Index (eMDI)

Enhanced Media Delivery Index (eMDI) monitors audio and video service quality. It locate faults by analyzing specific TCP/RTP packets of each node in an IP network in real time to solve packet loss, packet sequence errors, and jitters.

 

Multicast DNS

Multicast DNS (mDNS) is a zero-configuration networking (zeroconf) protocol. It enables endpoint devices to automatically discover available services advertised by mDNS service providers without using preconfigured name severs such as DNS.Multicast.

 

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

 

Weighted random early detection (WRED)/random early detection (RED)
Delivers congestion avoidance capabilities through the use of queue management algorithms

 

Powerful QoS feature

Supports the following congestion actions: strict priority (SP) queuing, weighted round robin (WRR), weighted fair queuing (WFQ), and WRED

 

Traffic policing
Supports Committed Access Rate (CAR) and line rate
 


Intrusion Detection/Prevention System (IDS/IPS)

Deep packet inspection

Module supports deep packet inspection and examines the packet payload as well as the frame and packet headers; packets are dropped if attacks or intrusions are detected using signature-based or protocol anomaly-based detection

 

Signature-based detection

Detects attacks that have known attack patterns; IPS maintains a signature database that contains the pattern definitions for known attacks that can be updated automatically using a subscription service

 

Protocol anomaly-based detection
Detects attacks that use anomalies in application protocol payloads

 

Severity-based action policies

Involve action taken against attacks based on their severity; available actions are "allow," "block," and "terminate connection" to provide appropriate mitigation

 

Signature update service
Provides regular updates to the signature database, helping to ensure that the latest available signatures are installed
 


Connectivity

Jumbo frames
Allow high-performance remote backup and disaster-recovery systems with up to 9,216 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

 

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

 

Flexible port selection

Includes 100/1000BASE-X auto speed selection, 10/100/1000BASE-T auto speed detection, as well as auto duplex and MDI/MDI-X

 

Monitor link
Collects statistics on performance and errors on physical links, increasing system availability

 

IEEE 802.3af Power over Ethernet (PoE)
Provides up to 15.4 W per port to IEEE 802.3af-compliant PoE-powered devices such as IP phones, wireless access points, and security cameras

 

Dual-personality functionality
Includes four 10/100/1000 ports or SFP slots for optional fiber connectivity such as Gigabit-SX, -LX, and -LH, or 100-FX

 

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

 

IEEE 802.3at Power over Ethernet (PoE+) support

Provides up to 30 watts of power at the power sourcing equipment (PSE) 


Layer 3 Routing

Static IPv4 routing
Provides simple manually configured IPv4 routing

 

Routing Information Protocol (RIP)

Uses a distance vector algorithm with UDP packets for route determination; supports RIPv1 and RIPv2 routing; includes loop protection

 

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

 

Policy-based routing
Makes routing decisions based on policies set by the network administrator

 

IP performance optimization

Provides a set of tools to improve the performance of IPv4 networks; and includes directed broadcasts, customization of TCP parameters, support of ICNP error packets, and extensive display capabilities

 

Unicast Reverse Path Forwarding (uRPF)
Limits erroneous or malicious traffic in accordance with RFC 3074

 

Static IPv6 routing
Provides simple manually configured IPv6 routing

 

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

 

Routing Information Protocol next generation (RIPng)
Extends RIPv2 to support IPv6 addressing

 

OSPFv3
Provides OSPF support for IPv6

 

IS-IS for IPv6
Extends IS-IS to support IPv6 addressing

 

BGP+
Extends BGP-4 to support Multiprotocol BGP (MBGP), including support for IPv6 addressing

 

IPv6 tunneling

Allows IPv6 packets to traverse IPv4-only networks by encapsulating the IPv6 packet into a standard IPv4 packet; supports manually configured, 6to4, and Intra-Site Automatic Tunnel Addressing Protocol (ISATAP) tunnels; is an important element for the transition from IPv4 to IPv6

 

Multiprotocol Label Switching (MPLS)

Uses BGP to advertise routes across Label Switched Paths (LSPs), but uses simple labels to forward packets from any Layer 2 or Layer 3 protocol, which reduces complexity and increases performance; supports graceful restart for reduced failure impact; supports LSP tunneling and multilevel stacks

 

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

 

Multiprotocol Label Switching (MPLS) Layer 2 VPN

Establishes simple Layer 2 point-to-point VPNs across a provider network using only MPLS Label Distribution Protocol (LDP); requires no routing and therefore decreases complexity, increases performance, and allows VPNs of non-routable protocols; uses no routing information for increased security; supports Circuit Cross Connect (CCC), Static Virtual Circuits (SVCs), Martini draft, and Kompella-draft technologies

 

Virtual Private LAN Service (VPLS)
Establishes point-to-multipoint Layer 2 VPNs across a provider network

 

Service loopback

Allows any module to take advantage of higher-featured modules, by redirecting traffic; reduces investment and enables higher bandwidth and load sharing; supports IPv6, IPv6 multicast, tunneling, and MPLS 


Security

Access control list (ACL)

Supports powerful ACLs for both IPv4 and IPv6; ACLs are used for filtering traffic to prevent unauthorized users from accessing the network, or for controlling network traffic to save resources; rules can either deny or permit traffic to be forwarded; rules can be based on a Layer 2 header or a 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

 

Terminal Access Controller Access-Control System (TACACS+)
Delivers an authentication tool using TCP with encryption of the full authentication request, providing additional security

 

Switch management logon security
Helps secure switch CLI logon by optionally requiring either RADIUS or TACACS+ authentication

 

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

Enables DHCP clients to receive IP addresses from authorized DHCP servers and maintains a list of DHCP entries for trusted ports; prevents users from receiving fake IP addresses and reduces ARP attacks, improving security

 

IP source guard
Filters packets on a per-port basis to prevent illegal packets from being forwarded

 

ARP attack protection
Protects from attacks using a large number of ARP requests with a host-specific, user-selectable threshold

 

Port security
Allows access only to specified MAC addresses, which can be learned or specified by the administrator

 

IEEE 802.1X support

Provides port-based user authentication with support for Extensible Authentication Protocol (EAP) MD5, TLS, TTLS, and PEAP with choice of AES, TKIP, and static or dynamic WEP encryption for protecting wireless traffic between authenticated clients and the access point

 

Media access control (MAC) authentication
Provides simple authentication based on a user's MAC address; supports local or RADIUS-based authentication

 

Multiple user authentication methods

- IEEE 802.1X
Uses an IEEE 802.1X supplicant on the client in conjunction with a RADIUS server to authenticate in accordance with industry standards

- Web-based authentication
Provides a browser-based environment, similar to IEEE 802.1X, to authenticate clients that do not support the IEEE 802.1X supplicant

- MAC-based authentication
Authenticates the client with the RADIUS server based on the client's MAC address

 

DHCP protection
Blocks DHCP packets from unauthorized DHCP servers, preventing denial-of-service attacks

 

Endpoint Admission Defense (EAD)
Provides security policies to users accessing a network

 

Advanced distributed denial of service (DDOS)

DHCP Snooping, IP Source Guard, and ARP Protection, and flexible traffic controls, such as policy-based routing, QoS, and ACLs are available to manage end-to-end application priorities.

 

Port isolation
Secures and adds privacy, and prevents malicious attackers from obtaining user information

 

IEEE 802.1AE MACsec

Provides switch-to-host with IEEE 802.1X or switch-to-switch hardware encryption, and authentication. Requires Comware v7 with specific hardware only. Refer to the hardware manuals for details.


No hidden costs with the license-free L2 / L3 feature set which includes IPv6, MPLS functionality and robust QoS.  It also supports varying security management login, RADIUS, SSH, TACACS/TACACS+ to protect and control change management access.
 


Additional Information

Green initiative support
Provides support for RoHS and WEEE regulations

 

Low power-consumption switch
Is rated among the switches with the lowest power consumption in the industry by Miercom independent tests

 

Unified Hewlett Packard Enterprise Comware operating system with modular architecture

Provides an easy-to-enhance-and-extend feature set, which doesn't require whole-scale changes; all switching, routing, and security platforms leverage the Comware OS, a common unified modular operating system

 

OPEX savings

Simplifies and streamlines deployment, management, and training through the use of a common operating system, thereby cutting costs as well as reducing the risk of human errors associated with having to manage multiple operating systems across different platforms and network layers 


Convergence

LLDP-MED (Media Endpoint Discovery)

Defines a standard extension of LLDP that stores values for parameters such as QoS and VLAN to automatically configure network devices such as IP phones

 

Multicast Source Discovery Protocol (MSDP)
Allows multiple PIM-SM domains to interoperate; is used for inter-domain multicast applications

 

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 Internet IPv4 and IPv6 multicasting to allow one-to-many and many-to-many transmission of information; supports PIM Dense Mode (DM), Sparse Mode (SM), and Source-Specific Multicast(SSM)

 

Multicast Border Gateway Protocol (MBGP)
Allows multicast traffic to be forwarded across BGP networks and kept separate from unicast traffic

 

Multicast Listener Discovery (MLD) protocol

Establishes, maintains, and manages IPv6 multicast groups and networks; supports v1 and v2 and utilizes Any-Source Multicast (ASM) or Source-Specific Multicast (SSM)

 

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

 

Voice VLAN
Automatically assigns VLAN and priority for IP phones, simplifying network configuration and maintenance
 


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

 

Domain Name System (DNS)

Provides a distributed database that translates domain names and IP addresses, which simplifies network design; supports client and server

 


Virtual Private Network (VPN)

IPSec

Provides secure tunneling over an untrusted network such as the Internet or a wireless network; offers data confidentiality, authenticity, and integrity between two network endpoints

 

Generic Routing Encapsulation (GRE)
Transports Layer 2 connectivity over a Layer 3 path in a secured way; enables the segregation of traffic from site to site

 

Manual or Automatic Internet Key Exchange (IKE)

Provides both manual or automatic key exchange required for the algorithms used in encryption or authentication; auto-IKE allows automated management of the public key exchange, providing the highest levels of encryption

 

Virtual Extensible LAN (VXLAN) and Ethernet VPN (BGP EVPN)

Enables greater network integration flexibility, improved performance, better scalability without redesigning the underlay network, restrict attacks with enhanced security, especially in spine-leaf architectures. 


Warranty and Support

- 1-year warranty

See Warranty and support summary 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 


BTO Models

 

HPE 7510X PoE Ethernet Switch Chassis

Rule #

Description

SKU

HPE Networking Comware Switch Chassis PoE Ethernet 10 slots 7510X

R8N47A

 

HPE Networking Comware Switch Chassis PoE Ethernet 6 slots 7506X

R8N48A

 

HPE Networking Comware Switch Chassis Ethernet 3 slots 7503X

R8N49A

Notes:

- BTO Models should never receive a 0D1 and therefore can not be factory integrated into a rack.

- OCA Only Model Selection Form - HPE Offering > HPE Aruba Networking > Switches - HPE Networking Comware: HPE Networking Comware Switch Series 7500X 

 


Modules

 

Management Modules
(Switch 7503X, 7506X, 7510X) System (std 0 // max 2) User Selection (min 1 // max 2) per Switch

Rule #

Description

SKU

1, 4

HPE FlexNetwork 7503X Type A Main Processing Unit

2, 4

HPE Networking Comware 7506X Type C Fabric/Main Processing Unit

R8N51A

3, 4

HPE Networking Comware 7510X Type C Fabric/Main Processing Unit

R8N50A

 

 

 

Configuration Rules

Rule #

Description

1

This module is for use with the following switches:

 

HPE Networking Comware Switch Chassis Ethernet 3 slots 7503X

R8N49A

2

This module is for use with the following switches:

 

HPE Networking Comware Switch Chassis PoE Ethernet 6 slots 7506X

R8N48A

3

This module is for use with the following switches:

 

HPE Networking Comware Switch Chassis PoE Ethernet 10 slots 7510X

R8N47A

4

This module supports the following transceiver modules:

 

HPE Networking X120 1G SFP LC SX Transceiver

JD118B

 

HPE Networking X120 1G SFP LC LX Transceiver

JD119B

 

HPE Networking X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE Networking X120 1G SFP LC BX 10-U Transceiver

JD098B

HPE Networking X120 1G SFP LC LH100 Transceiver

JD103A


 

Ethernet Modules

(Switch 7503X )  System (std 0 // max 3) User Selection (min 1 // max 3) per Switch
(Switch 7506X )  System (std 0 // max 6) User Selection (min 1 // max 6) per Switch
(Switch 7510X )  System (std 0 // max 10) User Selection (min 1 // max 10) per Switch

Rule #

Description

SKU

HPE Networking Comware Module 48-port 1000BASE-T RJ-45 FD 7500X

R8N53A

1, 2, 5, 7, 8

HPE Networking Comware Module 40-port 1G SFP 8-port 10G SFP+ FD 7500X

R8N54A

HPE Networking Comware Module 24-port 10GBASE-T RJ-45 FD 7500X

R8N55A

1, 2, 8, 9

HPE Networking Comware Module 48-port 10G SFP+ SG 7500X

R8R43A

1, 2, 3, 4, 12, 7, 8, 9, 10, 15

HPE Networking Comware Module 24-port 10G SFP+ 2 40G/1 100G QSFP28 FD 7500X

R8N56A

3, 11, 14

HPE Networking Comware Module 24x40G QSFP+ SG 7500X

R8N57A

3, 4, 12, 13, 16

HPE Networking Comware Module 12-port 40G 4-port 100G QSFP28 SG 7500X

R8N58A

1, 2, 5, 6

HPE Networking Comware Module 44-port SFP/4-port SFP+ SE 7500

JH210A

1, 2, 5, 6

HPE Networking Comware Module 24-port SFP 4-port SFP+ SE 7500

JH211A

HPE Networking Comware Module 48-port 1000BASE-T SE 7500

JH212A

HPE Networking Comware Module 48-port 1000BASE-T with PoE+ SE 7500

JH213A

1, 2, 5, 6, 9

HPE Networking Comware Module 44-port GbE SFP 4-port 10GbE SFP/SFP+ with MACsec SE 7500

JH431A

 

 

 

Configuration Rules

Rule #

Description

1

This module supports the following transceiver modules:

 

HPE Networking X120 1G SFP LC SX Transceiver

JD118B

 

HPE Networking X120 1G SFP LC LX Transceiver

JD119B

 

HPE Networking X120 1G SFP LC BX 10-D Transceiver

JD099B

 

HPE Networking X120 1G SFP LC BX 10-U Transceiver

JD098B

 

HPE Networking X120 1G SFP LC LH100 Transceiver

JD103A

 

HPE Networking X120 1G SFP RJ45 T Transceiver

JD089B

2

This module supports the following transceiver modules:

 

HPE Networking X130 10G SFP+ LC SR Transceiver

JD092B

 

HPE Networking X130 10G SFP+ LC LR Transceiver

JD094B

 

HPE Networking X130 10G SFP+ LC ER 40km Transceiver

JG234A

 

HPE Networking X130 10G SFP+ LC LH 80km Transceiver

JG915A

 

HPE Networking X240 10G SFP+ SFP+ 3m DAC Cable

JD097C

 

HPE Networking X240 10G SFP+ SFP+ 0.65m DAC Cable

JD095C

 

HPE Networking X240 10G SFP+ SFP+ 1.2m DAC Cable

JD096C

3

This module supports the following transceiver modules:

 

HPE Networking X140 40G QSFP+ MPO SR4 Transceiver

JG325B

 

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

JG326A

 

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

JG327A

 

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

JG328A

 

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

JG661A

 

HPE Networking X140 40G QSFP+ CSR4 300m Transceiver

JG709A

 

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

JL251A

 

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

JL286A

 

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

JL306A

 

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

JL287A

 

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

JL288A

 

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

JL289A

 

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

JG329A

 

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

JG330A

 

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

JG331A

4

This module supports the following transceiver modules:

 

HPE Networking X150 100G QSFP28 MPO SR4 100m MM Transceiver

JL274A

 

HPE Networking X150 100G QSFP28 eSR4 300m MM Transceiver

JH672A

 

HPE Networking X150 100G QSFP28 PSM4 500m SM Transceiver

JH420A

 

HPE Networking X150 100G QSFP28 LC SWDM4 100m MM Transceiver

JH419A

 

HPE Networking X150 100G QSFP28 CWDM4 2km SM Transceiver

JH673A

5

The transceiver module is supported on all ports except for the 10GE ports:

 

HPE Networking X120 1G SFP RJ45 T Transceiver

JD089B

6

The transceiver module is supported on all ports except for the 10GE ports:

 

HPE Networking X115 100M SFP LC FX Transceiver

JD102B

 

HPE Networking X110 100M SFP LC LX Transceiver

JD120B

 

HPE Networking X115 100M SFP LC BX 10-U Transceiver

JD100A

 

HPE Networking X115 100M SFP LC BX 10-D Transceiver

JD101A

7

This module supports the following transceiver modules:

 

HPE Networking X130 10G SFP+ LC BiDi 10km-Uplink Transceiver

JL737A

 

HPE Networking X130 10G SFP+ LC BiDi 10km-Downlink Transceiver

JL738A

8

This module supports the following transceiver modules:

 

HPE Networking X130 10G SFP+ LC BiDi 40km-Uplink Transceiver

JL739A

 

HPE Networking X130 10G SFP+ LC BiDi 40km-Downlink Transceiver

JL740A

9

This module supports the following transceiver modules:

 

HPE Networking X240 10G SFP+ SFP+ 5m DAC Cable

JG081C

10

This module supports the following transceiver modules:

 

HPE Networking X240 10G SFP+ 7m DAC Cable

JC784C

11

This module is only for use with ports 1 through 16:

 

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

JG329A

 

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

JG330A

 

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

JG331A

12

OCA Display Notes: A QSFP28 port cannot be split into four 25G SFP28 ports

13

This module supports the following transceiver modules:

 

HPE Networking X240 100G QSFP28 1m DAC Cable

JL271A

 

HPE Networking X240 100G QSFP28 3m DAC Cable

JL272A

 

HPE Networking X150 100G QSFP28 LC LR4 10km SM Transceiver

JL275A

14

For  the following transceiver modules, Ports 1 through 16 each of  R8N57A can be split into four breakout ports. Ports 17 through 24 do not support this splitting:

 

HPE Networking X140 40G QSFP+ CSR4 300m Transceiver

JG709A

 

HPE Networking X140 40G QSFP+ MPO SR4 Transceiver

JG325B

15

If a 40G port of R8N56A switches to 100G, only Port 25 supports 100G transceivers

16

If 40G port of R8N58A switch to 100G, only Port 1,4,7,10 supports 100G transceivers


Transceivers

SFP Transceivers

Rule #

Description

SKU

HPE Networking X120 1G SFP LC SX Transceiver

JD118B

HPE Networking X120 1G SFP LC LX Transceiver

JD119B

HPE Networking X120 1G SFP RJ45 T Transceiver

JD089B

HPE Networking X120 1G SFP LC BX 10-D Transceiver

JD099B

HPE Networking X120 1G SFP LC BX 10-U Transceiver

JD098B

HPE Networking X120 1G SFP LC LH100 Transceiver

JD103A

 

 

 

SFP+ Transceivers

Rule #

Description

SKU

HPE Networking X130 10G SFP+ LC SR Transceiver

JD092B

HPE Networking X130 10G SFP+ LC LR Transceiver

JD094B

HPE Networking X130 10G SFP+ LC ER 40km Transceiver

JG234A

HPE Networking X130 10G SFP+ LC LH 80km Transceiver

JG915A

HPE Networking X130 10G SFP+ LC BiDi 10km-Uplink Transceiver

JL737A

HPE Networking X130 10G SFP+ LC BiDi 10km-Downlink Transceiver

JL738A

HPE Networking X130 10G SFP+ LC BiDi 40km-Uplink Transceiver

JL739A

HPE Networking X130 10G SFP+ LC BiDi 40km-Downlink Transceiver

JL740A

HPE Networking X240 10G SFP+ SFP+ 3m DAC Cable

JD097C

HPE Networking X240 10G SFP+ SFP+ 5m DAC Cable

JG081C

HPE Networking X240 10G SFP+ SFP+ 0.65m DAC Cable

JD095C

HPE Networking X240 10G SFP+ SFP+ 1.2m DAC Cable

JD096C

HPE Networking X240 10G SFP+ 7m DAC Cable

JC784C

 

 

 

QSFP+ Transceivers

Rule #

Description

SKU

HPE Networking X140 40G QSFP+ MPO SR4 Transceiver

JG325B

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

JG326A

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

JG327A

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

JG328A

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

JG329A

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

JG330A

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

JG331A

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

JG661A

HPE Networking X140 40G QSFP+ CSR4 300m Transceiver

JG709A

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

JL251A

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

JL286A

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

JL306A

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

JL287A

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

JL288A

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

JL289A

 

 

 

QSFP28 Transceivers

Rule #

Description

SKU

HPE Networking X150 100G QSFP28 MPO SR4 100m MM Transceiver

JL274A

HPE Networking X150 100G QSFP28 LC LR4 10km SM Transceiver

JL275A

HPE Networking X150 100G QSFP28 CWDM4 2km SM Transceiver

JH673A

HPE Networking X150 100G QSFP28 LC SWDM4 100m MM Transceiver

JH419A

HPE Networking X150 100G QSFP28 eSR4 300m MM Transceiver

JH672A

HPE Networking X150 100G QSFP28 PSM4 500m SM Transceiver

JH420A

HPE Networking X240 100G QSFP28 1m DAC Cable

JL271A

HPE Networking X240 100G QSFP28 3m DAC Cable

JL272A

 

 

 


Power Supplies
(Switch 7503X, 7506X, 7510X) System (std 0 // max 2) User Selection (min 1 // max 2) per switch Switch

Rule #

Description

SKU

1, 3, 4, 5, 7

HPE Networking Comware 7500X 2500W AC HVDC NA Power Supply

R8N59A

1, 3, 4, 5, 7

HPE Networking Comware 7500X 2500W AC HVDC RoW-Power Supply

R9Q67A

 

HPE Networking Comware 7500X 2500W AC HVDC RoW-Power Supply PDU

R9Q67A#B2B

 

HPE Networking Comware 7500X 2500W AC HVDC RoW-Power Supply PDU

R9Q67A#B2C

 

HPE Networking Comware 7500X 2500W AC HVDC RoW-Power Supply 220v

R9Q67A#B2E

 

HPE Networking Comware 7500X 2500W AC HVDC RoW-Power Supply NoLoc

R9Q67A#AC3

1, 3, 4, 5, 8

HPE Networking Comware 7500X 6000W AC Power Supply

JD227A

 

HPE Networking Comware 7500X 6000W AC Power Supply PDU

JD227A#B2B

 

HPE Networking Comware 7500X 6000W AC Power Supply

JD227A#B2C

 

HPE Networking Comware 7500X 6000W AC Power Supply 220v

JD227A#B2E

 

HPE Networking Comware 7500X 6000W AC Power Supply NoLoc

JD227A#AC3

1, 3, 4, 5

HPE Networking Comware 7503/7506/7506 V 650W AC Power Supply Unit

JH215A

HPE Networking Comware 7503/7506/7506 V 650W AC Power Supply Unit PDU

JH215A#B2B

HPE Networking Comware 7503/7506/7506 V 650W AC Power Supply Unit PDU

JH215A#B2C

HPE Networking Comware 7503/7506/7506 V 650W AC Power Supply Unit 220v

JH215A#B2E

HPE Networking Comware 7503/7506/7506 V 650W AC Power Supply Unit

JH215A#AC3

1. 2, 5

HPE Networking Comware 7502 300W AC Power Supply

JD226A

HPE Networking Comware 7502 300W AC Power Supply PDU

JD226A#B2B

HPE Networking Comware 7502 300W AC Power Supply PDU

JD226A#B2C

HPE Networking Comware 7502 300W AC Power Supply

JD226A#AC3

 

1. 2, 5

HPE Networking Comware 7500 650W AC Power Supply

JD217A

HPE Networking Comware 7500 650W AC Power Supply PDU

JD217A#B2B

HPE Networking Comware 7500 650W AC Power Supply PDU

JD217A#B2C

HPE Networking Comware 7500 650W AC Power Supply

JD217A#AC3

1, 3, 4, 5

HPE Networking Comware 7500 1400W AC Power Supply

JD218A

HPE Networking Comware 7500 1400W AC Power Supply PDU

JD218A#B2B

HPE Networking Comware 7500 1400W AC Power Supply

JD218A#B2C

HPE Networking Comware 7500 1400W AC Power Supply 220v

JD218A#B2E

HPE Networking Comware 7500 1400W AC Power Supply

JD218A#AC3

1, 3, 4, 5

HPE Networking Comware 7500 2800W AC Power Supply

JD219A

HPE Networking Comware 7500 2800W AC Power Supply PDU

JD219A#B2B

HPE Networking Comware 7500 2800W AC Power Supply

JD219A#B2C

HPE Networking Comware 7500 2800W AC Power Supply 220v

JD219A#B2E

HPE Networking Comware 7500 2800W AC Power Supply

JD219A#AC3

 

 

 

Configuration Rules

Rule #

Description

1

Power supplies in a Switch Chassis cannot be mixed

2

These Power Supplies are for use with the following switches:

 

HPE Networking Comware Switch Chassis Ethernet 3 slots 7503X

R8N49A

3

These Power Supplies are for use with the following switches:

 

HPE Networking Comware Switch Chassis PoE Ethernet 6 slots 7506X

R8N48A

4

These Power Supplies are for use with the following switches:

 

HPE Networking Comware Switch Chassis PoE Ethernet 10 slots 7510X

R8N47A

5

Localization (Wall Power Cord) required on orders without #B2B, #B2C (PDU Power Cord), #B2E or #AC3. (See Localization Menu)
Notes: If Switches will be Field Racked, then #B2B, #B2C should be the Defaulted Power Cable option on the Switches.

7

HVDC is only supported in China

 

8

This PSU is only supported in US, Canada, Brazil and Japan when configured with 7500X Switch Chassis. For more information please consult your HPE representative.

 

Notes:

- Drop down under power supply should offer the following options and results:

o 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)

o Switch to Wall Power Cord - Localized Option (Watson Default for BTO and Box Level CTO)

o High Volt Power Electrical Module to Wall Power Cord -  #B2E Option. (Offered only in North America, Mexico, Taiwan, and  Japan)

o No Power Cord Selected - #AC3

- For R8N49A Switch Chassis, default qty 1 of the JD215A

- For R8N48A and R8N47A Switch Chassis, default qty 1 of the JD219A



 

Spare Fan Trays
(Switch 7503X, 7506X, 7510X ) System (std 1 // max 99) User Selection (min 0 // max 99) per switch

 

 

Switch

 

Rule #

Description

SKU

Notes:

Spare Part

 

1

HPE Networking Comware 7503X Fan Tray Assembly

R8N61A

2

HPE Networking Comware 7506X Fan Tray Assembly

R8N60A

3

HPE Networking Comware 7510X Spare Fan Assembly

JD216B

 

 

 

Configuration Rules

Rule #

Description

1

This item is only for use with R8N49A Switch Chassis

2

This item is only for use with R8N48A Switch Chassis

3

This item is only for use with R8N47A Switch Chassis

Notes:

Every Switch includes qty 1 Fan Tray by Default

 

 

 


HPE 7510X PoE Ethernet Switch Chassis (R8N47A)

Included accessories

1 HPE 7510X Fan Tray Assembly (JD216A)

I/O ports and slots

10 I/O module slots

Supports a maximum of 40 100 GbE ports or 240 40GbE ports or 480 10GbE ports or 480 1GbE ports or 480 Fiber Ethernet ports, or a combination

Additional ports and slots

2 switch fabric slots

Power supplies

2 power supply slots

1 minimum power supply required (ordered separately)

Fan tray

includes: 1 x JD216A

1 fan tray slot

Physical characteristics

Dimensions

17.17 (w) x 16.54 (d) x 27.87 (h) in.

43.6 (w) X 42 (d) X 70.8 (h) cm (16 RU height)

Weight

< 95 kg shipping weight

Mounting and enclosure

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

Reliability

Availability

99.999%

Environment

Operating temperature

32°F to 113°F (0°C to 45°C)

Operating relative humidity

10% to 95%, noncondensing

Non-operating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Non-operating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 53.5 dB, High-speed fan: 56.7 dB

Electrical characteristics

Frequency

50/60 Hz

Voltage

100 - 120 / 200 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Current

16/117A

Power output

1400 W

Notes

Based on a common power supply of 1400 W AC

Safety

UL 62368-1; IEC 62368-1; CAN/CSA-C22.2 No. 62368-1; EN 62368-1/A11

MTBF

0.9999965 availability, 25.5 yrs, 1 hour, 1.32 downtime (min/yr)

Emissions

VCCI Class A; FCC Part 15 Subpart B, Class A, ICES-003 Class A; EN 55032 CLASS A, CISPR 32 CLASS A; AS/NZS CISPR 32 Class A; EN 61000-3-2, EN 61000-3-3

Immunity

Generic

ETSI EN 300 386

EN

EN55035

ESD

EN 61000-4-2

Radiated

EN 61000-4-3

EFT/Burst

EN 61000-4-4

Surge

EN 61000-4-5

Conducted

EN 61000-4-6

Power frequency magnetic field

IEC 61000-4-8

Voltage dips and interruptions

EN 61000-4-11

Management

IMC - Intelligent Management Center; Command-line interface; Web browser; 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. Supported IMC versions are: iMC BIMS 7.3 (E0501)

iMC EAD 7.3 (E0502). iMC EIA 7.3 (E0503), iMC MVM 7.3 (E0501). iMC NTA 7.3E0502, iMC PLAT 7.3 (E0705), iMC QoSM 7.3 (E0502), iMC SHM 7.3 (E0502P04), iMC UBA 7.3E0502

Notes

- RFCs supported only in Comware v7:
1541, 1542, 1981, 2080, 2460, 2464, 2473, 2474, 2545, 2711, 2863, 2868, 3315, 3413, 3416, 3484, 3575, 3736, 3810, 3956, 4271, 4291, 4292, 4293, 4443, 4552, 4607, 4659, 4798, 4861, 4862, 5080, 5095, 5340, 5492, 5905 and 6192

- Comware v7 MPU HPE 7510X Fabric/MPU Type C (R8N50A) only supports these LPUs:
Comware v7 LPUs- R8N43A, R8N53A, R8N54A, R8N55A, R8N56A, R8N57A, R8N58A, JH210A, JH211A, JH212A, JH213A, JH431A

- Performance depends on the MPU/Fabric installed, and when installed with two (2) R8N50A the performances are as follows: up to 7,200 MPPS for packet performance and 9.6 Tbps for total switching capacity.

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 FlexNetwork 7506X PoE Ethernet Switch Chassis (R8N48A)

Included accessories

1 HPE 7506X Fan Tray Assembly (R8N60A)

I/O ports and slots

6 I/O module slots

Supports a maximum of 24 100 GbE ports or 144 40GbE ports or 288 10GbE ports or 288 1GbE ports or 288 Fiber Ethernet ports, or a combination

Additional ports and slots

2 switch fabric slots

Power supplies

2 power supply slots

1 minimum power supply required (ordered separately)

Fan tray

includes: 1 x R8N60A

1 fan tray slot

Physical characteristics

Dimensions

17.17 (w) x 16.54 (d) x 22.64 (h) in.

43.6 (w) X 42 (d) X 57.5 (h) cm (13 RU height)

 

Weight

< 75 kg shipping weight

Mounting and enclosure

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

Reliability

Availability

99.999%

Environment

Operating temperature

32°F to 113°F (0°C to 45°C)

Operating relative humidity

10% to 95%, noncondensing

Non-operating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Non-operating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 53.6 dB, High-speed fan: 57.7 dB

Electrical characteristics

Frequency

50/60 Hz

Voltage

100 - 120 / 200 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Current

16A/117 A

Power output

1400W

Notes

Based on a common power supply of 1400W AC

Safety

UL 62368-1; IEC 62368-1; CAN/CSA-C22.2 No. 62368-1; EN 62368-1/A11

MTBF

0.9999966 availability, 27.9 years, 1hour, 1.02 downtime (min/yr)

Emissions

VCCI Class A; FCC Part 15 Subpart B Class A; ICES-003 Class A; EN 55032 CLASS A; CISPR 32 CLASS A; AS/NZS CISPR 32 Class A; EN 61000-3-2; EN 61000-3-3

Immunity

Generic

ETSI EN 300 386

EN

EN55035

ESD

EN 61000-4-2

Radiated

EN 61000-4-3

EFT/Burst

EN 61000-4-4

Surge

EN 61000-4-5

Conducted

EN 61000-4-6

Power frequency magnetic field

IEC 61000-4-8

Voltage dips and interruptions

EN 61000-4-11

Management

IMC - Intelligent Management Center; Command-line interface; Web browser; 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. Supported IMC versions are: iMC BIMS 7.3 (E0501)

iMC EAD 7.3 (E0502). iMC EIA 7.3 (E0503), iMC MVM 7.3 (E0501). iMC NTA 7.3E0502, iMC PLAT 7.3 (E0705), iMC QoSM 7.3 (E0502), iMC SHM 7.3 (E0502P04), iMC UBA 7.3E0502

Notes

- RFCs supported only in Comware v7:
1541, 1542, 1981, 2080, 2460, 2464, 2473, 2474, 2545, 2711, 2863, 2868, 3315, 3413, 3416, 3484, 3575, 3736, 3810, 3956, 4123, 4271, 4291, 4292, 4293, 4443, 4552, 4607, 4659, 4798, 4861, 4862, 5080, 5095, 5340, 5492, 5905 and 6192

- Comware v7 MPU HPE 7506X Fabric/MPU Type C (R8N51A) only supports these LPUs:
Comware v7 LPUs- R8N43A, R8N53A, R8N54A, R8N55A, R8N56A, R8N57A, R8N58A, JH210A, JH211A, JH212A, JH213A, JH431APerformance depends on the MPU/Fabric installed, and when installed with two (2)

- R8N51A the performances are as follows: up to 4,320 MPPS for packet performance and 5.76 Tbps for total switching capacity.

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 FlexNetwork 7503X Ethernet Switch Chassis (R8N49A)

Included accessories

1 HPE 7503X Fan Tray Assembly (R8N61A)

I/O ports and slots

3 I/O module slots

Supports a maximum of 12 100 GbE ports or 72 40GbE ports or 144 10GbE ports or 144 1GbE ports or 144 Fiber Ethernet ports, or a combination

Additional ports and slots

2 switch fabric slots

Power supplies

2 power supply slots

1 minimum power supply required (ordered separately)

Fan tray

includes: 1 x R8N61A

1 fan tray slot

Physical characteristics

Dimensions

17.17 (w) x 16.54 (d) x 8.5 (h) in.

43.6 (w) X 42 (d) X 21.6 (h) cm (5 RU height)

Weight

< 35 kg shipping weight

Mounting and enclosure

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

Reliability

Availability

99.999%

Environment

Operating temperature

32°F to 113°F (0°C to 45°C)

Operating relative humidity

10% to 95%, noncondensing

Non-operating/Storage temperature

-40°F to 158°F (-40°C to 70°C)

Non-operating/Storage relative humidity

5% to 95%, noncondensing

Acoustic

Low-speed fan: 52.2 dB, High-speed fan: 56.0 dB

Electrical characteristics

Frequency

50/60 Hz

Voltage

100 - 120 / 200 - 240 VAC, rated

-48 to -60 VDC, rated

(depending on power supply chosen)

Current

10A/54A

Power output

650W

Notes

Based on a common power supply of 650W AC

Safety

UL 62368-1; IEC 62368-1; CAN/CSA-C22.2 No. 62368-1; EN 62368-1/A11UL

MTBF

0.9999956 availability, 42.9 years, 1 hour, 0.54 downtime min/yr

Emissions

VCCI Class A; FCC Part 15 Subpart B Class A; ICES-003 Class A; EN 55032 CLASS A; CISPR 32 CLASS A; AS/NZS CISPR 32 Class A; EN 61000-3-2; EN 61000-3-3

Immunity

Generic

ETSI EN 300 386

EN

EN55035

ESD

EN 61000-4-2

Radiated

EN 61000-4-3

EFT/Burst

EN 61000-4-4

Surge

EN 61000-4-5

Conducted

EN 61000-4-6

Power frequency magnetic field

IEC 61000-4-8

Voltage dips and interruptions

EN 61000-4-11

Management

IMC - Intelligent Management Center; Command-line interface; Web browser; 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. Supported IMC versions are: iMC BIMS 7.3 (E0501)

iMC EAD 7.3 (E0502). iMC EIA 7.3 (E0503), iMC MVM 7.3 (E0501). iMC NTA 7.3E0502, iMC PLAT 7.3 (E0705), iMC QoSM 7.3 (E0502), iMC SHM 7.3 (E0502P04), iMC UBA 7.3E0502

Notes

- RFCs supported only in Comware v7:
1541, 1542, 1981, 2080, 2460, 2464, 2473, 2474, 2545, 2711, 2863, 2868, 3315, 3413, 3416, 3484, 3575, 3736, 3810, 3956, 4271, 4291, 4292, 4293, 4443, 4552, 4607, 4659, 4798, 4861, 4862, 5080, 5095, 5340, 5492, 5905 and 6192

- Comware v7 MPU HPE 7503X Supervisor Engine Type A (R8N52A) only supports these LPUs:
Comware v7 LPUs- R8N43A, R8N53A, R8N54A, R8N55A, R8N56A, R8N57A, R8N58A, JH210A, JH211A, JH212A, JH213A, JH431APerformance depends on the MPU/Fabric installed, and when installed with two (2)

- R8N52A the performances are as follows: up to 2,160 MPPS for packet performance and 2.88 Tbps for total switching capacity.

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 PPP Gandalf FZA Compression Protocol

- 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)

- RFC 5291 Outbound Route Filtering Capability for BGP-4

- RFC 5292 Address-Prefix-Based Outbound Route Filter for BGP-4

- RFC 5492 Capabilities Advertisement with BGP-4

 

MPLS

- RFC 2205 Resource ReSerVation Protocol

- RFC 2209 Resource ReSerVation Protocol (RSVP)

- RFC 2702 Requirements for Traffic Engineering Over MPLS

- RFC 2858 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 3209 RSVP-TE: Extensions to RSVP for LSP Tunnels

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

- RFC 3487 Graceful Restart Mechanism for 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 4664 Framework for Layer 2 Virtual Private Networks

- RFC 4665 Service Requirements for Layer 2 Provider Provisioned Virtual Private Networks

- RFC 4761 Virtual Private LAN Service (VPLS) Using BGP for Auto-Discovery and Signaling

- RFC 4762 Virtual Private LAN Service (VPLS) Using Label Distribution Protocol (LDP) Signaling

- RFC 5036 LDP Specification

 

General Protocols

- IEEE 802.1ad Q-in-Q

- IEEE 802.1ag Service Layer OAM

- IEEE 802.1AX-2008 Link Aggregation

- 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 802.3af Power over Ethernet

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

- IEEE 802.3at

- IEEE 802.3ba 40 and 100 Gigabit Ethernet Architecture

- IEEE 802.3u 100BASE-X

- 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 903 RARP

- RFC 906 TFTP Bootstrap

- RFC 950 Internet Standard Subnetting Procedure

- RFC 951 BOOTP

- RFC 959 File Transfer Protocol (FTP)

- RFC 1027 Proxy ARP

- RFC 1035 Domain Implementation and Specification

- 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 1256 ICMP Router Discovery Protocol (IRDP)

- 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 1981 Path MTU Discovery for IP version 6

- 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 2460 IPv6

- RFC 2464 Transmission of IPv6 Packets over Ethernet Networks

- RFC 2474 Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers

- RFC 2644 Directed Broadcast Control

- RFC 2711 IPv6 Router Alert Option

- RFC 2763 Dynamic Name-to-System ID mapping support

- RFC 2784 Generic Routing Encapsulation (GRE)

- RFC 2865 Remote Authentication Dial In User Service (RADIUS)

- RFC 2868 RADIUS Attributes for Tunnel Protocol Support

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

- RFC 2973 IS-IS Mesh Groups

- RFC 3277 IS-IS Transient Blackhole Avoidance

- RFC 3413 Simple Network Management Protocol (SNMP) Applications

- RFC 3416 Protocol Operations for SNMP

- RFC 3484 Default Address Selection for Internet Protocol version 6 (IPv6)

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

- 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 3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6

- RFC 3847 Restart signaling for IS-IS

- RFC 4251 The Secure Shell (SSH) Protocol Architecture

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

- RFC 4291 IP Version 6 Addressing Architecture

- RFC 4292 IP Forwarding Table MIB

- RFC 4293 Management Information Base for the Internet Protocol (IP)

- RFC 4443 Internet Control Message Protocol (ICMPv6) for the Internet Protocol Version 6 (IPv6) Specification

- RFC 4486 Subcodes for BGP Cease Notification Message

- RFC 4552 Authentication/Confidentiality for OSPFv3

- RFC 4607 Source-Specific Multicast for IP

- RFC 4659 BGP-MPLS IP Virtual Private Network (VPN) Extension for IPv6 VPN

- RFC 4798 Connecting IPv6 Islands over IPv4 MPLS Using IPv6 Provider Edge Routers (6PE)

- RFC 4861 Neighbor Discovery for IP version 6 (IPv6)

- RFC 4862 IPv6 Stateless Address Autoconfiguration

- RFC 4941 Privacy Extensions for Stateless Address Autoconfiguration in IPv6

- RFC 5095 Deprecation of Type 0 Routing Headers in IPv6

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

- RFC 5340 OSPF for IPv6

- RFC 5492 Capabilities Advertisement with BGP-4

- RFC 5905 Network Time Protocol Version 4: Protocol and Algorithms Specification

 

IP Multicast

- RFC 2236 IGMPv2

- RFC 2283 Multiprotocol Extensions for BGP-4

- RFC 2362 PIM Sparse Mode

- RFC 3376 IGMPv3

- RFC 3446 Anycast Rendezvous Point (RP) mechanism using Protocol Independent Multicast (PIM) and Multicast Source Discovery Protocol (MSDP)

- RFC 3618 Multicast Source Discovery Protocol (MSDP)

- RFC 3973 PIM Dense Mode

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

- RFC 4601 Draft 10 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 4610 Anycast-RP Using Protocol Independent Multicast (PIM)

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

 

VPN

- RFC 2403 - HMAC-MD5-96

- RFC 2404 - HMAC-SHA1-96

- RFC 2405 - DES-CBC Cipher algorithm

- RFC 2407 - Domain of interpretation

- RFC 2547 BGP/MPLS VPNs

- RFC 2917 A Core MPLS IP VPN Architecture

- RFC 3947 - Negotiation of NAT-Traversal in the IKE

- RFC 4302 - IP Authentication Header (AH)

- RFC 4303 - IP Encapsulating Security Payload (ESP)

Denial of Service Protection

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

- CPU DoS Protection

- Rate Limiting by ACLs

 

IPv6

- RFC 1886 DNS Extension for IPv6

- RFC 1981 IPv6 Path MTU Discovery

- 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 Pv6

- RFC 2740 OSPFv3 for IPv6

- RFC 2767 Dual stacks IPv46 & 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 4861 IPv6 Neighbor Discovery

- RFC 4862 IPv6 Stateless Address Auto-configuration

 

IPsec

- RFC 1828 IP Authentication using Keyed MD5

- RFC 1829 The ESP DES-CBC Transform

- RFC 2085 HMAC-MD5 IP Authentication with Replay Prevention

- RFC 2401 IP Security Architecture

- RFC 2402 IP Authentication Header

- RFC 2406 IP Encapsulating Security Payload

- RFC 2410 - The NULL Encryption Algorithm and its use with IPsec

- RFC 2411 IP Security Document Roadmap

MIBs

- RFC 1157 A Simple Network Management Protocol (SNMP)

- RFC 1213 MIB II

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

- RFC 1229 Interface MIB Extensions

- RFC 1493 Bridge MIB

- RFC 1573 SNMP MIB II

- RFC 1643 Ethernet MIB

- RFC 1657 BGP-4 MIB

- RFC 1724 RIPv2 MIB

- RFC 1757 Remote Network Monitoring 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 Interfaces 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 2932 IP (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 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)


QoS/CoS

- IEEE 802.1p (CoS)

- RFC 1349 Type of Service in the Internet Protocol Suite

- RFC 2474 DSCP DiffServ

- RFC 2475 DiffServ Architecture

- RFC 2597 DiffServ Assured Forwarding (AF)

- RFC 2598 DiffServ Expedited Forwarding (EF)

 

IPv4

- 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)

 

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)
  • Multiple Configuration Files
  • Multiple Software Images
  • SSHv1/SSHv2 Secure Shell
  • TACACS/TACACS+ telnet

 

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 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 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

 

Security

- IEEE 802.1X Port Based Network Access Control

- RFC 1321 The MD5 Message-Digest Algorithm

- RFC 1334 PPP Authentication Protocols (PAP)

- RFC 1492 TACACS+

- RFC 1994 PPP Challenge Handshake Authentication Protocol (CHAP)

- 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 2716 PPP EAP TLS Authentication Protocol

- RFC 2865 RADIUS Authentication

- RFC 2866 RADIUS Accounting

- RFC 2867 RADIUS Accounting Modifications for Tunnel Protocol Support

- RFC 2868 RADIUS Attributes for Tunnel Protocol Support

- RFC 2869 RADIUS Extensions

- RFC 5080: Common Remote Authentication Dial In User Service (RADIUS) Implementation Issues and Suggested Fixes

- Access Control Lists (ACLs)

- Guest VLAN for 802.1X

- MAC Authentication

- Port Security

- SSHv1/SSHv2 Secure Shell 


 

Date

Version History

Action

Description of Change:

27-Feb-2026

Version 9

Changed

Rebranding update applied to QuickSpecs

28-Jul-2025

Version 8

Changed

Update survey link.

02-Jun-2025

Version 7

Changed

New Spare Fan Tray SKU was added in _Configuration Information section.

18-Mar-2024

Version 6

Changed

Technical Specifications section was updated.

04-Dec-2023

Version 5

Changed

Series name was updated. Obsolete SKUs were removed

05-Jul-2022

Version 4

Changed

Configuration information section was updated. New SKUs were also added.

13-Dec-2021

Version 3

Changed

Standard Features and Configuration Information sections were updated.

15-Nov-2021

Version 2

Changed

Configuration Information section was updated.

15-Sep-2010

Version 1

New

New QuickSpecs

 

 

Shape the Future of QuickSpecs - Your Input Matters

 

 

 

 

 

Chat now

 

 

© Copyright 2026 Hewlett Packard Enterprise Development LP. The information contained herein is subject to change without notice. The only warranties for Hewlett Packard Enterprise products and services are set forth in the express warranty statements accompanying such products and services. Nothing herein should be construed as constituting an additional warranty. Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein.

 

To learn more, visit: http://www.hpe.com/networking

 

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