HPE Aruba JL663A CX 6300M 48‑port 1GbE and 4‑port SFP56 Switch
[shortdesc] Managed, Rack-mountable, 48 x 1G ports, Fixed Uplinks (4 x SFP56), No PoE (Data Only), Layer 3 [/shortdesc] [properties] Properties JL663A Description HPE Aruba Network ing 6300M 48-port 1GbE and 4-port SFP56 Switch Product Family HPE Aruba Networking CX 6300 Switch Series Product Type Switch Key benefits of the Product Family • Stackable Layer 3 switches with BGP, EVPN, VXLAN, VRF, and OSPF with robust security and QoS• High performance up to 1760 Gbps switching capacity, up to 1310 MPPS of throughput and up to 400 Gbps stacking bandwidth• Compact 1U switches with full density HPE Smart Rate (1G/2.5G/5G/10GbE) multi-gigabit, up to 90W PoE (Class 8) and 10G LRM SFP+ available on select models [/properties] [specifications] Specifications JL663A Description 48x ports 10/100/1000BaseT ports4x 1G/10G/25G/50G* SFP ports1x USB-C Console Port1x OOBM port1x USB Type A Host port1x Bluetooth dongle to beused with CX Mobile App Power supplies 2 field-replaceable, hotswappable power supply slots1 minimum power supply required (ordered separately)Supports JL085A PSU Fans Switch has two fan tray slots and comes with one fan tray installed.Min 1 fan tray required.Optional second fan tray ordered separately.Fan trays are field replaceable and hotswappable.Each fan tray contains two fans. Dimensions 4.4 x 44.2 x 38.5 cm (1.73 x 17.4 x 15.2 in) Weight 4.95 kg (10.14 lbs) * 50G capability is for use with 50G DACs for both interconnect and VSF stacking. 50G transceivers and DACs are not supported on S0E91A and S0X44A switch models, which requires QSFP to SFP56 DAC cable for VSF stacking with other CX 6300 switch models. VSF stacking not supported on 1G ports. CPU Quad Core ARM Cortex™A72 @ 1.8GHz Memory and flash 8 GB DDR432 GB eMMC Packet buffer 8 MB, 16 MB, or 32 MB Shared Packet Buffer Memory, depending on model and configuration System switching capacity 880 Gbps System throughput capacity 660 Mpps Model switching capacity 496 Gbps Model throughput capacity 369 Mpps Average latency (LIFO-64- bytes packets) 1Gbps: 2.28μSec,10Gbps: 1.46μSec,25Gbps: 1.90μSec,50Gbps: 3.49μSec Stack size 10 members Max. stacking distance Up to 10 kms with longrange transceivers Stacking bandwidth 200 Gbps Switched virtual interfaces(dual stack) 1,024 IPv4 host table (ARP) 49,152 IPv6 host table (ND) 49,152 IPv4 unicast routes 61,000 IPv6 unicast routes 61,000 IPv4 multicast routes 8,192 IPv6 multicast routes 8,192 MAC table capacity 32,768 IGMP groups 8,192 MLD groups 8,192 IPv4/IPv6/MAC ACL entries (ingress) 20,480/5,120/20,480 2 IPv4/IPv6/MAC ACL entries (egress) 8,192/2,048/8,192 VRF 256 Operating temperature 32°F to 113°F (0°C to 45°C) up to 5,000 ft.Derate -1 degree C for every 1,000 ft from 5,000 ft to 10,000 ft Can support excursion to 131°F (55°C) for short periods* of time. Operating relative humidity 5% to 95% @ 104°F (40°C)non-condensing Non-operating ( -40°F to 158°F) (-40°C to 70°C) up to 15,000 ft Non-operating storagerelative humidity 5% to 95% @ 149°F (65°C)non-condensing Max operating altitude 10,000 feet (3.04 km) Max Max non-operating altitude 15,000 feet (4.6 km) Max Acoustic Sound Power, LWAd = 4.6 BelSound Pressure, LpAm (Bystander) = 28.7 dB Primary airflow Front and side to back Frequency 50Hz/60Hz AC voltage JL085A PSU: 100V-240V Current (for voltages listed above) JL085A PSU: 3A/1.2A 80plus.org certification (-) Power consumption(230VAC) Idle: 56W100% Traffic Rate: 75W Safety Europe: EN 60950-1:2006+A11:2009 +A1:2010+A12:2011 + A2:2013US: UL 60950-1 2nd Ed.Canada: CAN/CSA-C22.2No. 60950-1-07Worldwide: IEC 60950-1:2005 w/all knownNational Deviations Emissions Europe:EN 55022:2010, Class AEN 55032:2012, Class AEN 55024:2010EN 61000-3-2:2014EN 61000-3-3:2013US:FCC part 15 Class ACanada:ICES-003 Class AWorldwide:VCCI Class ACISPR 22 Class ACISPR 32 Class ACISPR 24:2010 Lasers EN 60825-1:2007 / IEC60825-1:2007 Class 1Class 1 Laser Products /Laser Klasse 1(Applicable for accessories - Optical Transceivers only) Immunity Generic CISPR 24 / CISPR 35 EN EN 55024:2010 /EN 55035:2017 ESD IEC 61000-4-2 Radiated IEC 61000-4-3 EFT/Burst IEC 61000-4-4 Surge IEC 61000-4-5 Conducted IEC 61000-4-6 Power frequency magnetic field IEC 61000-4-8 Voltage dips and interruptions IEC 61000-4-11 Harmonics IEC 61000-3-2,EN 61000-3-2 Flicker IEC 61000-3-3,EN 61000-3-3 Mounting and enclosure Mounts in an EIA standard 19 in. telco rack or equipment cabinet.Horizontal surface mounting only. 2-post rack kit included. *50G capability is for use with 50G DACs for both interconnect and VSF stacking. 50G transceivers and DACs are not supported on S0E91A and S0X44A switch models, which requires QSFP to SFP56 DAC cable for VSF stacking with other CX 6300F and CX 6300M switch models only. VSF stacking not supported on 1G ports. Standards and protocols • ANSI/TIA-1057 LLDP Media Endpoint Discovery (LLDP-MED) • CPU DoS Protection • Bootstrap Router (BSR) Mechanism for PIM, PIM WG • draft-ietf-savi-mix • IEEE 802.1AB-2005 • IEEE 802.1ak-2007 • 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 802.1t-2001 • IEEE 802.1v VLAN classification by Protocol and Port • IEEE 802.1w Rapid Reconfiguration of Spanning Tree • IEEE 802.3ab 1000BASE-T • 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 • IEEE 802.3bt Power over Ethernet • IEEE 802.3az Energy Efficient Ethernet (EEE) • IEEE 802.3x Flow Control • IEEE 802.3z 1000BASE-X • RFC 1122 Requirements for Internet Hosts -Communications Layers • RFC 1215 Convention for defining traps for use with the SNMP • RFC 1256 ICMP Router Discovery Messages • RFC 1350 TFTP Protocol (revision 2) • RFC 1393 Traceroute Using an IP Option • RFC 1403 BGP OSPF Interaction • RFC 1519 CIDR• RFC 1542 BOOTP Extensions• RFC 1583 OSPF Version 2• RFC 1591 Domain Name System Structure and Delegation• RFC 1657 Definitions of Managed Objects for BGP-4 using SMIv2• RFC 1772 Application of the Border Gateway Protocol in the Internet• RFC 1812 Requirements for IP Version 4 Router• RFC 1918 Address Allocation for Private Internet• RFC 1997 BGP Communities Attribute• RFC 1998 An Application of the BGP Community Attribute in Multi-home Routing• RFC 2131 DHCP• RFC 2132 DHCP Options and BOOTP Vendor Extensions• RFC 2236 IGMP• RFC 2328 OSPF Version 2• RFC 2375 IPv6 Multicast Address Assignments• RFC 2385 Protection of BGP Sessions via the TCP MD5 Signature Option• RFC 2401 Security Architecture for the Internet Protocol• RFC 2402 IP Authentication Header• RFC 2439 BGP Route Flap Damping• RFC 2460 Internet Protocol, Version 6 (IPv6) Specification• RFC 2464 Transmission of IPv6 over Ethernet Networks• RFC 2545 Use of BGP-4 Multiprotocol Extensions for IPv6 Inter-Domain Routing• RFC 2576 (Coexistence between SNMP V1, V2, V3)• RFC 2579 (SMIv2 Text Conventions)• RFC 2580 (SMIv2 Conformance)• RFC 2710 Multicast Listener Discovery (MLD) for IPv6• RFC 2711 IPv6 Router Alert Option• RFC 2787 Definitions of Managed Objects for the Virtual Router Redundancy Protocol• RFC 2918 Route Refresh Capability for BGP-4• RFC 2925 Definitions of Managed Objects for Remote Ping, Traceroute, and Lookup Operations (Ping only)• RFC 2934 Protocol Independent Multicast MIB for IPv4• RFC 3019 MLDv1 MIB• RFC 3046 DHCP Relay Agent Information Option• RFC 3056 Connection of IPv6 Domains via IPv4 Clouds• RFC 3065 Autonomous System Confederation for BGP• RFC 3068 An Anycast prefix for 6to4 Relay Route• RFC 3137 OSPF Stub Router Advertisment sFlow• RFC 3376 IGMPv3• RFC 3416 (SNMP Protocol Operations v2)• RFC 3417 (SNMP Transport Mappings)• RFC 3418 Management Information Base (MIB) for the Simple Network Management Protocol (SNMP)• RFC 3484 Default Address Selection for IPv6• RFC 3509 Alternative Implementations of OSPF Area Border Routers• RFC 3575 IANA Considerations for RADIUS• RFC 3623 Graceful OSPF Restart• RFC 3768 VRRP• RFC 3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6• RFC 3973 PIM Dense Mode• RFC 4022 MIB for TCP• RFC 4113 MIB for UDP• RFC 4213 Basic Transition Mechanisms for IPv6 Hosts and Routers• RFC 4251 The Secure Shell (SSH) Protocol• RFC 4252 SSHv6 Authentication• RFC 4253 SSHv6 Transport Layer• RFC 4254 SSHv6 Connection• RFC 4271 A Border Gateway Protocol 4 (BGP-4)• RFC 4273 Definitions of Managed Objects for 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 4360 BGP Extended Communities Attribute• RFC 4419 Key Exchange for SSH• RFC 4443 ICMPv6• RFC 4456 BGP Route Reflection: An Alternative to Full Mesh Internal BGP (IBGP)• RFC 4486 Subcodes for BGP Cease Notification Message• RFC 4541 IGMP & MLD Snooping Switch• RFC 4552 Authentication/Confidentialityfor OSPFv3• RFC 4601 PIM Sparse Mode• RFC 4607 Source-Specific Multicast for IP• RFC 4675 RADIUS VLAN & Priority• RFC 4724 Graceful Restart Mechanism forBGP• RFC 4760 Multiprotocol Extensions forBGP-4• RFC 4861 IPv6 Neighbor Discovery• RFC 4862 IPv6 Stateless Address Autoconfiguration• RFC 4940 IANA Considerations for OSPF• RFC 5065 Autonomous SystemConfederation for BGP• RFC 5095 Deprecation of Type 0 RoutingHeaders in IPv6• RFC 5187 OSPFv3 Graceful Restart• RFC 5340 OSPFv3 for IPv6• RFC 5424 Syslog Protocol• RFC 5492 Capabilities Advertisement with BGP-4 • RFC 5519 Multicast Group Membership Discovery MIB (MLDv2 only) • RFC 5701 IPv6 Address Specific BGP Extended Community Attribute • RFC 5722 Handling of Overlapping IPv6 Fragments • RFC 5798 VRRP (exclude Accept Mode and sub-sec timer) • RFC 5880 Bidirectional Forwarding Detection • RFC 5905 Network Time Protocol Version 4: Protocol and Algorithms Specification • RFC 6620 FCFS SAVI • RFC 6987 OSPF Stub Router Advertisement • RFC 7047 The Open vSwitch Database Management Protocol • RFC 7313 Enhanced Route Refresh Capability for BGP-4 • RFC 768 User Datagram Protocol • RFC 783 TFTP Protocol (revision 2) • RFC 791 IP • RFC 792 ICMP • RFC 793 TCP • RFC 813 Window and Acknowledgement Strategy in TCP • RFC 815 IP datagram reassembly algorithms • RFC 8201 Path MTU Discovery for IP version 6 • RFC 826 ARP • RFC 879 TCP maximum segment size and related topics • RFC 896 Congestion control in IP/TCP internetworks • RFC 917 Internet subnets • RFC 919 Broadcasting Internet Datagrams • RFC 922 Broadcasting Internet Datagrams in the Presence of Subnets (IP_BROAD) • RFC 925 Multi-LAN address resolution • RFC 951 BOOTP• RFC 1027 Proxy ARP • SNMPv1/v2c/v3 • RFC 4861 IPv6 Neighbor Discovery • RFC 4862 IPv6 Stateless Address Autoconfiguration • ITU-T Rec G.8032/Y.1344 Mar. 2010 • RFC 1757 Remote Network Monitoring Management Information Base • 2.5G/5GBASE-T (IEEE 802.3bz-2016), 2.5G/5G NBASE-T • 10GBASE-T (IEEE 802.3an-2006) • 25-Gigabit Ethernet (IEEE 802.3by-2016, 802.3cc-2017) • 50-Gigabit Ethernet (IEEE 802.3cd-2018) • RFC 3101 OSPF Not-so-stubby-area option • RFC 4750 OSPFv2 MIB partial support no SetMIB [/specifications] [accesories] HPE Aruba NetworkingCX 6300 Accessories Power supplies • HPE Aruba Networking X371 12VDC 250W 100-240VAC Power Supply (JL085A)• HPE Aruba Networking X372 54VDC 680W 100-240VAC Power Supply (JL086A)• HPE Aruba Networking X372 54VDC 1050W 110-240VAC Power Supply (JL087A)• HPE Aruba Networking X372 54VDC 1600W 110-240VAC Power Supply (JL670A)• HPE Aruba Networking X371 12VDC 250W 100-240VAC Power-to-Port Power Supply (JL760A)• HPE Aruba Networking 6300M 250W 36-72VDC PSU (JL757A)• HPE Aruba Networking 6300M 1050W 36-72VDC (JL758A) Fan trays • HPE Aruba Networking X751 Front to Back Fan Tray (JL669B) • HPE Aruba Networking 6300M Power-to-Port Fan Tray (JL761A) Accessories • HPE X410 1U Universal 4-post Rack Mount Kit (J9583A) • HPE Aruba Networking X414 1U Universal 4-pack Rack Mounting Kit (J9583B) • HPE Aruba Networking USB-A to RJ45 PC-to-Switch Cable (R9G48B) • HPE Aruba Networking USB-A to RJ45 PIN3TX-6RX Cable (R8Z87A) • HPE Aruba Networking USB-A to USB-C PC-to-Switch Cable (R9J32A) • HPE Aruba Networking USB-C to USB-C PC-to-Switch Cable (R9J33A) • HPE Aruba Networking CX Switch Bluetooth Adapter (S1H23A) • HPE QSFP28 to SFP28 Adapter (845970-B21) Transceivers • HPE Aruba Networking 100M SFP LC FX 2km MMF XCVR (J9054D)*• HPE Aruba Networking 1G SFP LC SX 500m MMF Transceiver (J4858D) • HPE Aruba Networking 1G SFP LC LX 10km SMF Transceiver (J4859D) • HPE Aruba Networking 1G SFP LC LH 70km SMF Transceiver (J4860D) • HPE Aruba Networking 1G SFP RJ45 T 100m Cat5e Transceiver (J8177D) • HPE Aruba Networking 1G SFP LC SX 500m MMF TAA Transceiver (JL745A) • HPE Aruba Networking 1G SFP LC LX 10km SMF TAA Transceiver (JL746A)• HPE Aruba Networking 1G SFP RJ45 T 100m Cat5e TAA Transceiver (JL747A) • HPE Aruba Networking 10G SFP+ LC SR 300m MMF Transceiver (J9150D)***• HPE Aruba Networking 10G SFP+ LC LRM 220m MMF Transceiver (J9152D)**• HPE Aruba Networking 10G SFP+ LC LR 10km SMF Transceiver (J9151E) )***• HPE Aruba Networking 10G SFP+ LC ER 40km SMF Transceiver (J9153D) )***• HPE Aruba Networking 10GBASE-T SFP+ RJ-45 30m Cat6A Transceiver (JL563B)***• HPE Aruba Networking 10G SFP+ LC SR 300m MMF TAA Transceiver (JL748A) • HPE Aruba Networking 10G SFP+ LC LR 10km SMF TAA Transceiver (JL749A) • HPE Aruba Networking 25G SFP28 LC SR 100m MMF Transceiver (JL484A) ***• HPE Aruba Networking 25G SFP28 LC eSR 400m MMF Transceiver (JL485A) ***• HPE Aruba Networking 25G SFP28 LC LR 10km SMF Transceiver (JL486A) ***• HPE Aruba Networking 25G SFP LC LR 10km SMF TAA XCVR (S2N63A) • Aruba 50G SFP56 LC SR 100m MMF XCVR (R0M48A) • HPE Aruba Networking 50G eSR 300m MMF Transceiver (S0V64A) • HPE Aruba Networking 50G LR 10km SMF Transceiver (S0V65A) • HPE Aruba Networking 50G ER 40km SMF Transceiver (S0V66A)*J9054D 100Mbps transceiver only supported in SFP+ ports on JL658A. 100Mbps transceivers are not supported in any SFP56 port on all models.** J9152D XCVR natively supported only in the R8S91A and R8S92A models*** HPE QSFP28 to SFP28 Adapter (845970-B21) required when used with S0E91A and S0X44A switch models [/accesories] HPE Aruba Networking CX 6300M 48-port 1GbE and 4-port SFP56 Switch (JL663A) The HPE Aruba Networking CX 6300M 48-port 1GbE Switch (JL663A) delivers exceptional performance and flexibility for enterprise networks. With 48 Gigabit Ethernet ports and 4 high-speed SFP56 uplink ports, this switch provides seamless connectivity and scalability, making it ideal for data centers and large network deployments. Key Features: 48 x 1GbE Ports: Ensures fast and reliable connections for high-performance networking devices, supporting efficient data transfer across enterprise environments. 4 x SFP56 Uplinks: Provides 50Gbps uplink capacity, enabling high-speed connections between switches and network core infrastructure. Layer 3 Capabilities: Advanced routing protocols such as OSPF, BGP, and VRF for optimized traffic management and network segmentation. Energy-Efficient Design: Complies with IEEE 802.3az standards for reduced power consumption while maintaining top performance. Stacking Support: Utilizes Virtual Switching Framework (VSF) for stacking up to 10 switches, simplifying network management and scaling. Technical Overview: Recommended for: Enterprise data centers, campus networks, and high-density environments. Ports: 48 x 1GbE ports, 4 x 50Gbps SFP56 uplinks. Switching Capacity: 496 Gbps. Forwarding Rate: 369 Mpps. Layer 3 Features: OSPF, BGP, VLAN, VRF, and ACLs for enhanced network control. Management: Web GUI, CLI, SNMP, and Aruba Central. Stacking: Supports up to 10 switches with VSF technology. Energy Efficiency: Meets IEEE 802.3az standards for power-saving operation. You can check the related tab for the JL663A datasheet.
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