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Servery, příslušenství arrow Servery - Intel Assembling arrow HPE 5130-48G-4SFP + EI HP RENEW Switch JG934AR

HPE 5130-48G-4SFP +  EI HP RENEW Switch JG934AR
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HPE 5130-48G-4SFP + EI HP RENEW Switch JG934AR

Cena (-6%): 29 355 Kč
Běžná cena: 31 116 Kč
(ceny vč. DPH 21%)

 

Výrobce: Hewlett Packard Enterprise
Záruka: 99 Doživotní
Kód: 460181


(REMA: 0 Kč ; Aut. Poplatek: 0 Kč započítáno ve finální ceně produktu)

Maximální počet portů48
ProvedeníRack mounted 19"
Technologie10 Gigabit Ethernet
ManagementSNMP/RMON
Vlastnosti switcheRozšiřitelnost
Přenosová rychlost LAN (Mb/s)0
Počet portů LAN0
FunkceL3
Podporované standardy PoEŽádný
VentilátorAno
PoE budget (W)0
Počet portů Combo0
Počet PoE Out portů0
Počet portů QSFP+0
Počet portů QSFP280
Počet portů SFP280
Počet SFP portů4
Počet SFP+ portů4
Počet portů LAN0
Počet PoE Out portů0
Počet portů QSFP+0
Počet SFP portů4
Počet SFP+ portů4
PoE budget (W)0
Maximální počet portů48
Počet portů Combo0
Počet portů QSFP280
Počet portů SFP280

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D-Link DXS-3610-54S/ SI L3 stackable switch, 48x ...266 319,- Kč0 ks
D-Link DXS-3610-54T/ SI L3 stackable switch, 48x ...366 784,- Kč0 ks

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Podrobnosti produktu HPE 5130-48G-4SFP + EI HP RENEW Switch JG934AR:

HP 5130-48G-4SFP+ EI Switch HP RENEW

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

4 SFP+ fixed 1000/10000 SFP+ ports

HPE FlexNetwork 5130 48G 4SFP+ EI Switch (JG934A) Technical Specifications

HPE FlexNetwork 5130 48G 4SFP+ EI Switch (JG934A)

I/O Ports and Slots

48 RJ-45 autosensing 10/100/1000 ports (IEEE 802.3 Type 10BASE-T, IEEE 802.3u Type 100BASE-TX, IEEE 802.3ab Type 1000BASE-T) Duplex modes: 10BASE-T/100BASE-TX - half or full; 1000BASE-T - full only 4 SFP+ fixed 1000/10000 SFP+ ports

Additional Ports and Slots

1 RJ-45 serial console port

Physical Characteristics

Dimensions (W × D × H) Weight
17.32 × 10.24 × 1.72 in (44 × 26 × 4.36 cm) (1U height)
11.02 lb (5 kg)

Memory and Processor

Memory Packet Buffer Size
1 GB SDRAM, 512 MB flash
3 MB

Mounting and Enclosure

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

Performance

IPv6 Ready Certified Latency (1000 Mb) Latency (10 Gbps) Throughput Routing/Switching Capacity Routing Table Size MAC Address Table Size
Yes
< 5 µs
< 3 µs
130.9 Mpps
176 Gbps
512 entries (IPv4), 256 entries (IPv6)
16384 entries

Environment

Operating Temperature Operating Relative Humidity Non-operating/Storage Temperature Non-operating/Storage Relative Humidity Acoustic Noise
23°F to 113°F (-5°C to 45°C)
10% to 90%, noncondensing
-40°F to 158°F (-40°C to 70°C)
5% to 95%, noncondensing
Low-speed fan: 38.4 dB, High-speed fan: 47.0 dB (ISO 7779)

Electrical Characteristics

Frequency Maximum Heat Dissipation Voltage Current Maximum Power Rating Idle Power
50/60 Hz
130/153 BTU/hr (137.15/161.42 kJ/hr) AC powered units; 130-171 BTU/hr DC powered
100 - 240 VAC; -48 to -60 VDC
10 A
45 W
38 W

Safety

UL 60950-1; EN 60825-1 & EN 60825-2; IEC 60950-1; CAN/CSA-C22.2 No. 60950-1; Anatel; ULAR; GOST; EN 60950-1/A11; FDA 21 CFR Subchapter J; NOM; ROHS Compliance

Emissions

EMC Directive 2004/108/EC; FCC (CFR 47, Part 15) Class A; EN 61000-4-11:2004; ANSI C63.4-2009; EN 61000-3-3:2008; VCCI V-4/2012.04; EN 61000-3-2:2006+A1:2009 + A2:2009; EN 61000-4-3:2006; EN 61000-4-4:2012; EN 61000-4-5:2006; EN 61000-4-6:2009; AS/NZS CISPR 22:2009 Class A; CISPR 22:2008 Class A; EN 55022:2010 Class A; EN 61000-4-29:2000; CISPR 24:2010; EN 300 386 V1.6.1; VCCI V-3/2013.04 Class A

Immunity

Generic: EN 55024 ESD: EN300 386

Management

IMC

The HPE FlexNetwork 5130 EI Switch Series comprises Gigabit Ethernet switches that support static and RIP Layer 3 routing, diversified services, and IPv6 forwarding, as well as provide four 10-Gigabit Ethernet (10GbE) interfaces. Unique Intelligent Resilient Fabric (IRF) technology creates a virtual fabric by managing several switches as one logical device, which increases network resilience, performance, and availability, while reducing operational complexity. These switches provide Gigabit Ethernet access and can be used at the edge of a network or to connect server clusters in small data centers. High availability, simplified management, and comprehensive security control policies are among the key features that distinguish this series.

HPE FlexNetwork 5130 EI Switch Series

The HPE FlexNetwork 5130 EI Switch Series comprises Gigabit Ethernet switches that support static and RIP Layer 3 routing, diversified services, and IPv6 forwarding, as well as provide four 10-Gigabit Ethernet (10GbE) interfaces.

Unique Intelligent Resilient Fabric (IRF) technology creates a virtual fabric by managing several switches as one logical device, which increases network resilience, performance, and availability, while reducing operational complexity. These switches provide Gigabit Ethernet access and can be used at the edge of a network or to connect server clusters in small data centers.

High availability, simplified management, and comprehensive security control policies are among the key features that distinguish this series.

HPE FlexNetwork 5130 24G 4SFP+ EI Switch (JG932A)

HPE FlexNetwork 5130 24G SFP 4SFP+ EI Switch (JG933A)

HPE FlexNetwork 5130 48G 4SFP+ EI Switch (JG934A

HPE FlexNetwork 5130 24G PoE+ 4SFP+ (370W) EI Switch (JG936A)

HPE FlexNetwork 5130 48G PoE+ 4SFP+ (370W) EI Switch (JG937A)

HPE FlexNetwork 5130 24G POE+ 2SFP+ 2XGT (370W) EI Switch (JG940A)

HPE FlexNetwork 5130 48G POE+ 2SFP+ 2XGT (370W) EI Switch (JG941A)

Models

HPE FlexNetwork 5130 24G 4SFP+ EI Switch

JG932A

HPE FlexNetwork 5130 24G SFP 4SFP+ EI Switch

JG933A

HPE FlexNetwork 5130 48G 4SFP+ EI Switch

JG934A

HPE FlexNetwork 5130 24G PoE+ 4SFP+ (370W) EI Switch

JG936A

HPE FlexNetwork 5130 48G PoE+ 4SFP+ (370W) EI Switch

JG937A

HPE FlexNetwork 5130 24G POE+ 2SFP+ 2XGT (370W) EI Switch

JG940A

HPE FlexNetwork 5130 48G POE+ 2SFP+ 2XGT (370W) EI Switch

JG941A

Key features

Fixed 10GbE ports for high-speed stacking or uplinks Support for multiple services Comprehensive security control policies Diversified quality of service (QoS) policies Excellent manageability

Standard Features

Features and benefits

Software-defined networking

OpenFlow Supports OpenFlow 1.3 specification to enable SDN by allowing separation of the data (packet forwarding) and control (routing decision) paths

Quality of Service (QoS)

Broadcast control Allows limitation of broadcast traffic rate to cut down on unwanted network broadcast traffic Advanced classifier-based QoS

Classifies traffic using multiple match criteria based on Layer 2, 3, and 4 information; applies QoS policies such as setting priority level and rate limit to selected traffic on a port, VLAN, or whole switch

Powerful QoS feature Supports the following congestion actions: strict priority (SP) queuing, weighted round robin (WRR), and SP+WRR Traffic policing Supports Committed Access Rate (CAR) and line rate

Connectivity

Auto-MDIX Automatically adjusts for straight-through or crossover cables on all 10/100/1000 ports Flow control Provides back pressure using standard IEEE 802.3x, reducing congestion in heavy traffic situations High-density connectivity Provides up to 48 fixed 10/100/1000BASE-T ports in a Layer 2/Layer 3 switch IEEE 802.3at Power over Ethernet (PoE+) support

Simplifies deployment and dramatically reduces installation costs by helping to eliminate the time and cost involved in supplying local power at each access point location

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

Resiliency and high availability

Separate data and control paths Separates control from services and keeps service processing isolated; increases security and performance External redundant power supply Provides high reliability Smart link Allows 100 ms failover between links Spanning Tree/MSTP, RSTP Provides redundant links while preventing network loops; supports up to 64 instances of MSTP 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

Layer 3 routing

Static IP routing Provides manually configured routing for both IPv4 and IPv6 networks Routing Information Protocol (RIP)

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

Management

Remote configuration and management Enables configuration and management through a secure Web browser or a CLI located on a remote device Manager and operator privilege levels Provides read-only (operator) and read/write (manager) access on CLI and Web browser management interfaces Command authorization

Leverages HWTACACS to link a custom list of CLI commands to an individual network administrator's login; also provides an audit trail

Secure Web GUI Provides a secure, easy-to-use graphical interface for configuring the module via HTTPS Multiple configuration files Stores easily to the flash image Complete session logging Provides detailed information for problem identification and resolution Remote monitoring (RMON)

Uses standard SNMP to monitor essential network functions; supports events, alarm, history, and statistics group plus a private alarm extension group

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

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

Management VLAN Segments traffic to and from management interfaces, including CLI/telnet, a Web browser interface, and SNMP Remote intelligent mirroring

Mirrors ingress/egress ACL-selected traffic from a switch port or VLAN to a local or remote switch port anywhere on the network

Device Link Detection Protocol (DLDP)

Monitors a cable between two compatible switches and shuts down the ports on both ends if the cable is broken, which prevents network problems such as loops

IPv6 management

Provides future-proof networking because the switch is capable of being managed whether the attached network is running IPv4 or IPv6; supports pingv6, tracertv6, Telnetv6, TFTPv6, DNSv6, syslogv6, FTPv6, SNMPv6, DHCPv6, and RADIUS for IPv6

Troubleshooting

Ingress and egress port monitoring enables network problem-solving; virtual cable tests provide visibility into cable problems

HPE Intelligent Management Center (IMC)

Integrates fault management, element configuration, and network monitoring from a central vantage point; built-in support for third-party devices enables network administrators to centrally manage all network elements with a variety of automated tasks, including discovery, categorization, baseline configurations, and software images; the software also provides configuration comparison tools, version tracking, change alerts, and more

Network Management

SNMP v1/v2c/v3, MIB-II with Traps, and RADIUS Authentication Client MIB (RFC 2618); embedded HTML management tool with secure access

Security

Access control lists (ACLs) Provides IP Layer 2 to Layer 4 traffic filtering; supports global ACL, VLAN ACL, port ACL, and IPv6 ACL IEEE 802.1X

Industry-standard method of user authentication using an IEEE 802.1X supplicant on the client in conjunction with a RADIUS server

MAC-based authentication Client is authenticated with the RADIUS server based on the client's MAC address Identity-driven security and access control

- Per-user ACLs

Permits or denies user access to specific network resources based on user identity and time of day, allowing multiple types of users on the same network to access specific network services without risking network security or providing unauthorized access to sensitive data

- Automatic VLAN assignment Automatically assigns users to the appropriate VLAN based on their identities

Secure management access Delivers secure encryption of all access methods (CLI, GUI, or MIB) through SSHv2, SSL, HTTPS and/or SNMPv3 Secure FTP/ SCP

Allows secure file transfer to and from the switch; protects against unwanted file downloads or unauthorized copying of a switch configuration file

Guest VLAN Provides a browser-based environment to authenticated clients that is similar to IEEE 802.1X Port security Allows access only to specified MAC addresses, which can be learned or specified by the administrator Port isolation Secures and adds privacy, and prevents malicious attackers from obtaining user information STP BPDU port protection Blocks Bridge Protocol Data Units (BPDUs) on ports that do not require BPDUs, preventing forged BPDU attacks STP root guard Protects the root bridge from malicious attacks or configuration mistakes DHCP protection Blocks DHCP packets from unauthorized DHCP servers, preventing denial-of-service attacks IP source guard Helps prevent IP spoofing attacks Dynamic ARP protection Blocks ARP broadcasts from unauthorized hosts, preventing eavesdropping or theft of network data RADIUS/HWTACACS Eases switch management security administration by using a password authentication server

Performance

Nonblocking architecture Up to 176 Gb/s nonblocking switching fabric provides wirespeed switching with up to 143 million pps throughput Hardware-based wirespeed access control lists (ACLs)

Help provide high levels of security and ease of administration without impacting network performance with a feature-rich TCAM-based ACL implementation

Device support

Prestandard PoE Support Detects and provides power to prestandard PoE devices such as wireless LAN access points and IP phones

Convergence

IEEE 802.1AB Link Layer Discovery Protocol (LLDP) Facilitates easy mapping using network management applications with LLDP automated device discovery protocol LLDP-MED Is a standard extension that automatically configures network devices, including LLDP-capable IP phones LLDP-CDP compatibility Receives and recognizes CDP packets from Cisco's IP phones for seamless interoperation IEEE 802.3at Power over Ethernet (PoE+)

Provides up to 30 W per port that allows support of the latest PoE+-capable devices such as IP phones, wireless access points, and security cameras, as well as any IEEE 802.3af-compliant end device; eliminates the cost of additional electrical cabling and circuits that would otherwise be necessary in IP phone and WLAN deployments

PoE allocations

Supports multiple methods (automatic, IEEE 802.3af class, LLDP-MED, or user-specified) to allocate PoE power for more efficient energy savings

Voice VLAN Automatically assigns VLAN and priority for IP phones, simplifying network configuration and maintenance IP multicast snooping (data-driven IGMP) Prevents flooding of IP multicast traffic

Additional information

Green IT and power

Improves energy efficiency through the use of the latest advances in silicon development; shuts off unused ports and utilizes variable-speed fans, reducing energy costs

Green initiative support Provides support for RoHS and WEEE regulations Unified Hewlett Packard Enterprise Comware operating system with modular architecture

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

Energy Efficient Ethernet (EEE) Support

Reduces power consumption in accordance with IEEE 802.3az

Layer 2 switching

16K MAC address table Provides access to many Layer 2 devices VLAN support and tagging Supports IEEE 802.1Q with 4,094 simultaneous VLAN IDs IEEE 802.1ad QinQ and selective QinQ

Increase the scalability of an Ethernet network by providing a hierarchical structure; connect multiple LANs on a high-speed campus or metro network

10GbE port aggregation Allows grouping of ports to increase overall data throughput to a remote device 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

Jumbo Frame Support Improves the performance of large data transfers; supports frame size of up to 10K-bytes

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

Dynamic Host Configuration Protocol (DHCP)

Simplifies the management of large IP networks; supports client; DHCP Relay enables DHCP operation across subnets

Loopback interface address Defines an address that can always be reachable, improving diagnostic capability User Datagram Protocol (UDP) helper function

Allows UDP broadcasts to be directed across router interfaces to specific IP unicast or subnet broadcast addresses and prevents server spoofing for UDP services such as DHCP

Route maps Provide more control during route redistribution; allow filtering and altering of route metrics DHCP server Centralizes and reduces the cost of IPv4 address management

Warranty and support

Limited Lifetime Warranty

See http://www.hpe.com/networking/warrantysummary for warranty and support information included with your product purchase.

Software releases

To find software for your product, refer to http://www.hpe.com/networking/support; for details on the software releases available with your product purchase, refer to http://www.hpe.com/networking/warrantysummary

Standards and protocols (applies to all products in series)

Device Management

RFC 1157 SNMPv1/v2c
RFC 1305 NTPv3
RFC 2573 (SNMPv3 Applications)
RFC 2819 (RMON groups Alarm, Event, History and Statistics only)
RFC 3416 (SNMP Protocol Operations v2)
HTML and telnet management
Multiple Configuration Files
SNMP v3 and RMON RFC support
SSHv1/SSHv2 Secure Shell
TACACS/TACACS+
Web UI


QoS/CoS

RFC 2474 DS Field in the IPv4 and IPv6 Headers
RFC 3260 New Terminology and Clarifications for DiffServ


General Protocols

IEEE 802.1ad Q-in-Q
IEEE 802.1ak Multiple Registration Protocol (MRP) and Multiple VLAN Registration Protocol (MVRP)
IEEE 802.1AX-2008 Link Aggregation
IEEE 802.1D MAC Bridges
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 802.3 Type 10BASE-T
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 802.3at Power over Ethernet Plus
IEEE 802.3az Energy Efficient Ethernet
IEEE 802.3i 10BASE-T
IEEE 802.3u 100BASE-X
IEEE 802.3x Flow Control
IEEE 802.3z 1000BASE-X
RFC 768 UDP
RFC 783 TFTP Protocol (revision 2)
RFC 791 IP
RFC 792 ICMP
RFC 793 TCP
RFC 826 ARP
RFC 854 TELNET
RFC 855 Telnet Option Specification
RFC 894 IP over Ethernet
RFC 950 Internet Standard Subnetting Procedure
RFC 951 BOOTP
RFC 1027 Proxy ARP
RFC 1042 IP Datagrams
RFC 1071 Computing the Internet Checksum
RFC 1123 Requirements for Internet Hosts
RFC 1166 - IP Addresses
RFC 1213 Management Information Base for Network Management of TCP/IP-based internets
RFC 1256 ICMP Router Discovery Protocol (IRDP)
RFC 1305 NTPv3
RFC 1350 TFTP Protocol (revision 2)
RFC 1519 CIDR
RFC 1533 DHCP Options and BOOTP Vendor Extensions
RFC 1591 DNS (client only)
RFC 1643 - Definitions of Managed Objects for the Ethernet-like Interface Types
RFC 1812 IPv4 Routing
RFC 1866 Hypertext Markup Language - 2.0
RFC 1901 - Introduction to Community-based SNMPv2
RFC 1902-1907 - SNMPv2
RFC 2131 DHCP
RFC 2236 IGMP Snooping
RFC 2462 IPv6 Stateless Address Autoconfiguration
RFC 2474 Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers
RFC 2475 Architecture for Differentiated Services
RFC 2597 Assured Forwarding PHB Group
RFC 2616 HTTP Compatibility v1.1
RFC 2665 Definitions of Managed Objects for the Ethernet-like Interface Types
RFC 2668 Definitions of Managed Objects for IEEE 802.3 Medium Attachment Units (MAUs)
RFC 2865 Remote Authentication Dial In User Service (RADIUS)
RFC 2866 RADIUS Accounting
RFC 3046 - DHCP Relay Agent Information Option
RFC 3246 Expedited Forwarding PHB
RFC 3414 User-based Security Model (USM) for version 3 of the Simple Network Management Protocol (SNMPv3)
RFC 3415 View-based Access Control Model (VACM) for the Simple Network Management Protocol (SNMP)
RFC 3416 Protocol Operations for SNMP
RFC 3418 Management Information Base (MIB) for the Simple Network Management Protocol (SNMP)
RFC 3576 Ext to RADIUS (CoA only)
RFC 3580 - IEEE 802.1X Remote Authentication Dial In User Service (RADIUS) Usage Guidelines
RFC 3587 IPv6 Global Unicast Address Format
RFC 3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6
RFC 4030 Authentication Suboption for DHCP Relay Agent
RFC 4213 Basic IPv6 Transition Mechanisms
RFC 4291 IP Version 6 Addressing Architecture
RFC 4541 Considerations for Internet Group Management Protocol (IGMP) and Multicast Listener Discovery (MLD) Snooping Switches
RFC 4575 A Session Initiation Protocol (SIP) Event Package for Conference State
RFC 4675 RADIUS VLAN & Priority
RFC 5095 Deprecation of Type 0 Routing Headers in IPv6
802.1r - GARP Proprietary Attribute Registration Protocol (GPRP)


IPv6

RFC 1981 IPv6 Path MTU Discovery
RFC 2460 IPv6 Specification
RFC 2461 IPv6 Neighbor Discovery
RFC 2463 ICMPv6
RFC 2464 Transmission of IPv6 over Ethernet Networks
RFC 3162 RADIUS and IPv6
RFC 3306 Unicast-Prefix-based IPv6 Multicast Addresses
RFC 3315 DHCPv6 (client and relay)
RFC 3484 Default Address Selection for IPv6
RFC 3736 Stateless Dynamic Host Configuration Protocol (DHCP) Service for IPv6
RFC 4291 IP Version 6 Addressing Architecture
RFC 4293 MIB for IP
RFC 4443 ICMPv6
RFC 4861 IPv6 Neighbor Discovery
RFC 4862 IPv6 Stateless Address Auto-configuration
RFC 6724 Default Address Selection for Internet Protocol Version 6 (IPv6)


MIBs

RFC 1212 Concise MIB Definitions
RFC 1213 MIB II
RFC 1493 Bridge MIB
RFC 1757 Remote Network Monitoring MIB
RFC 2096 IP Forwarding Table MIB
RFC 2233 Interface MIB
RFC 2571 SNMP Framework MIB
RFC 2572 SNMP-MPD MIB
RFC 2573 SNMP-Notification MIB
RFC 2573 SNMP-Target MIB
RFC 2574 SNMP USM MIB
RFC 2618 RADIUS Authentication Client MIB
RFC 2620 RADIUS Accounting Client MIB
RFC 2665 Ethernet-Like-MIB
RFC 2668 802.3 MAU MIB
RFC 2674 802.1p and IEEE 802.1Q Bridge MIB
RFC 2737 Entity MIB (Version 2)
RFC 2819 RMON MIB
RFC 2863 The Interfaces Group MIB
RFC 2925 Ping MIB
RFC 3414 SNMP-User based-SM MIB
RFC 3415 SNMP-View based-ACM MIB
RFC 3418 MIB for SNMPv3
RFC 3621 Power Ethernet MIB


IP Multicast

RFC 1112 IGMPv1
RFC 3376 IGMPv3

Network Management

IEEE 802.1AB Link Layer Discovery Protocol (LLDP)
RFC 2579 Textual Conventions for SMIv2
RFC 2580 Conformance Statements for SMIv2
RFC 2819 Four groups of RMON: 1 (statistics), 2 (history), 3 (alarm) and 9 (events)
ANSI/TIA-1057 LLDP Media Endpoint Discovery (LLDP-MED)
SNMPv1/v2c/v3


Security

IEEE 802.1X Port Based Network Access Control
RFC 1492 TACACS+
RFC 2138 RADIUS Authentication
RFC 2139 RADIUS Accounting
RFC 2865 RADIUS (client only)
RFC 2866 RADIUS Accounting
RFC 3260 New Terminology and Clarifications for DiffServ
Secure Sockets Layer (SSL)
SSHv2 Secure Shell


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