HPE Aruba CX 8360 Switch Series: технические характеристики и документация
В архивеOverview
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Aruba CX 8360 Switch Series |
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High Performance Enterprise Campus and Data Center Switch The Aruba CX 8360 Switch Series offers a flexible and innovative approach to addressing the application, security, and scalability demands of the mobile, cloud, and IoT era. These switches serve the needs of the next-generation core and aggregation layer of campuses, as well as virtual and highly dynamic data center environments. They provide up to 2.4Tbps of capacity, with line-rate Gigabit Ethernet interfaces including 1Gbps, 10Gbps, 25Gbps, 40Gbps, and 100Gbps. The 8360 series includes industry-leading line rate ports with 1/10/25GbE (SFP/SFP+/SFP28) and 40/100 GbE (QSFP+/ QSFP28) connectivity in a compact 1U form factor. 4x10Gbps and 4x25Gbps break out from 40/100G ports offer advanced flexibility in connectivity and aggregation. These switches deliver a fantastic investment for customers wanting to migrate from older 1GbE/10GbE to faster 25GbE, or from 10GbE/40GbE uplinks to 100GbE ports. In addition, the 32 x 25G port 8360 models support low density MACsec ports and enable secured connectivity at 10GbE and 25GbE over unsecured domains. |
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Aruba CX 8360 Switch Series |
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Key Features
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Standard Features
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Product Differentiators The Aruba CX 8360 switch series is based on ArubaOS-CX, a modern, database-driven operating system that automates and simplifies many critical and complex tasks. The enhanced capabilities of ArubaOS-CX provide a unique set of differentiators for campus and data center switching.
Modular Architecture with native cloud-native ArubaOS-CX ArubaOS-CX is built on a modular Linux architecture with OVSDB, providing the following unique capabilities:
Aruba Network Analytics Engine ArubaOS-CX includes Aruba's Network Analytics Engine (NAE) for advanced telemetry and automation. The NAE framework is an industry-first monitoring and troubleshooting system, providing greatly improved network operations. NAE uniquely provides the ability to monitor and easily troubleshoot network health and congestion issues. The Time Series Database (TSDB) may be used to store configuration and operational state. Customers can use data from the TSDB to write software modules to troubleshoot problems. This data may also be used to analyze trends, identify anomalies and predict future capacity requirements. Aruba Virtual Switching Extension The ability of ArubaOS-CX to maintain synchronous state across dual control planes allows a unique high availability solution called Aruba Virtual Switching Extension (VSX). VSX is delivered through redundancy gained by deploying two chassis with an inter-switch link, with each chassis maintaining its independent control. Designed using the best features of existing HA technologies such as Multichassis Link Aggregation (MC-LAG) and Virtual Switching Framework (VSF), Aruba VSX enables a distributed architecture that is highly available during upgrades or control plane events. |
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Product Capabilities Performance
Provides up to 2.4Tbps for bidirectional switching and 1,145 Mpps for forwarding to meet the demands of bandwidth-intensive applications today and in the future
Provides investment protection to support future technologies and higher-speed connectivity Connectivity
Five different base models, each sold in two versions: a port-to-power airflow bundle, and a power-to-port airflow bundle: o 12 ports of 40GbE/100GbE (QSFP+/QSFP28) o 16 ports of 1GbE/10GbE/25GbE (SFP/SFP+/SFP28) + 2 ports of 40GbE/100GbE (QSFP+/QSFP28) o 28 ports of 1GbE/10GbE/25GbE (SFP/SFP+/SFP28) + 4 10GbE/25GbE (SFP+/SFP28) with MACsec + 4 ports of 40GbE/100GbE (QSFP+/QSFP28) o 24 ports of 1GbE/10GbE (SFP/SFP+) + 2 ports of 40GbE/100GbE (QSFP+/QSFP28) o 48 ports of 100M/1GbE/10GbE (10GBASE-T) + 4 ports of 40GbE/100GbE (QSFP+/QSFP28) MACsec support is on selected ports (see above model descriptions). All QSFP ports (QSFP+/QSFP28), except those on the 48x1G/10GBASE-T model, support optional 4x10G/4x25G break out capability. There is 10GBASE-T transceiver support on the SFP+/SFP28 ports. There is 1Gbps transceiver support, including 1GBASE-T, on non-MACsec SFP+/ SFP28 ports
Allows high-performance backups and disaster-recovery systems; provides a maximum frame size of 9K bytes
Allows users to insert and enable all unsupported 1G and 10G transceivers and cables No warranty nor support for the transceiver/cable when used
Supports internal loopback testing for maintenance purposes and increased 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
Protects against unknown broadcast, multicast, or unicast storms with user-defined thresholds
Quality of Service (QoS)
Enables congestion avoidance
Supports lossless Ethernet networking standards to eliminate packet loss due to queue overflow
Prevents accumulation of excessive congestion with periodic flushing. Avoids packets buffering for an extended time period
Marks packets as ECN-CE (Congestion Experienced. Helps TCP to reduce receive window size during congestion
iSCSI, Lossless iSCSI, RDMA over Converged Ethernet version 2 (RoCE v1 and v2) and Non-Volatile Memory Express (NVMeOF)
Marks packets rather than drops them, enabling the receiver to indicate the congestion to the sender, which in turn can reduce its transmission rate as if it detected a dropped packet. Resiliency and high availability
Increases total performance and power availability while providing hitless, stateful failover
Allows replacement of accessory modules without any operational impact on other modules nor the switch operations
Separates control from services and keeps service processing isolated; increases security and performance
VSX enables a distributed and redundant architecture by deploying two switches with each switch maintaining independent control yet staying synchronized during upgrades or failover. Also supports upgrades during live operation
VRRP allows a group of switches to dynamically back each other up to create highly available routed environments
- Enable sub-second failure detection for rapid routing protocol re-balancing - Enabled for both BGP IPv4 and IPv6
Supports rapid protection and recovery in a ring topology.
Monitors link connectivity and shuts down ports at both ends if unidirectional traffic is detected, preventing loops in STP-based networks
Supports up to 54 LAGs, with up to 16 members per LAG (32 for a VSX pair), with a user-selectable L1- 4 hashing algorithm. Management In addition to the Aruba CX Mobile App, Aruba NetEdit and Aruba Network Analytics Engine, the 8360 series offers the following:
Built-in, programmable and easy-to-use
Enables or disables each of the following interfaces depending on security preferences: console port, or reset button
Reduces training time and expenses, and increases productivity in multivendor installations
Restricts access to critical configuration commands; offers multiple privilege levels with password protection; ACLs provide SNMP access; local and remote Syslog capabilities allow logging of all access
Monitors the network for degradation of various services, including voice. Monitoring is enabled via the NAE for history and for immediate automated gathering of additional information when anomalies are detected
Provides SNMP read and trap support of industry standard Management Information Base (MIB), and private extensions
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
Uses standard SNMP to monitor essential network functions and supports events, alarms, history, and statistics groups as well as a private alarm extension group
Offers different mechanisms for configuration updates; trivial FTP (TFTP) allows bidirectional transfers over a TCP/IP network Secure File Transfer Protocol (SFTP) runs over an SSH tunnel to provide additional security
Supports ping and traceroute for IPv4 and IPv6
Job scheduler framework
Synchronizes timekeeping among distributed time servers and clients; keeps timekeeping consistent among all clock-dependent devices within the network Can serve as the NTP server in a customer network
- Enables precise clock synchronization across distributed devices - Needed for time critical applications like AVB and financial systems - Support for transparent clock E-E and P-P - Support for boundary clock
Advertises and receives management information from adjacent devices on a network, facilitating easy mapping by network management applications
Enables Zero Touch Provisioning over Link Aggregation Groups.
Provides independent primary and secondary operating system files for backup while upgrading
Stores files easily to the flash image
Layer 2 Switching
Supports up to 4,094 port-based or IEEE 802.1Q-based VLANs
- Supports ping over VXLAN for IPv4 and IPv6 - Supports traceroute over VXLAN for IPv4 and IPv6 - Services on the Overlay - Supports RADIUS server over VXLAN for IPv4 and IPv6 - IPv4 DHCP relay over VXLAN for non-default VRF
Remaps VLANs during transit across a core network
Transmits STP BPDUs transparently, allowing correct tree calculations across service providers, WANs, or MANs
Duplicates port traffic (ingress and egress) to a local or remote monitoring port; supports 4 mirroring groups, with an unlimited number of ports per group
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)
Allows each VLAN to build a separate spanning tree to improve link bandwidth usage in network environments with multiple VLANs
Controls and manages the flooding of multicast packets in a Layer 2 network
Allows operators to manually connect two or more VXLAN tunnel endpoints (VTEP)
Deep segmentation for Spine/Leaf data center networks or Layer 3 campus designs with centralized gateway and symmetric Integrated Routing and Bridging (IRB) based distributed gateways VXLAN tunnels
Addressing mechanism that enables the use of the same gateway IP addresses across all the leaf switches part of a VXLAN network
Allows to minimize the amount of ARP traffic flooding within individual VXLAN segments
Dynamic Segmentation
Enables micro segmentation and role-based policies across the VXLAN overlay
Allows stub fabric extender VTEPs to relay VXLAN GBP between static and dynamic VXLAN tunnels
Layer 3 Services
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
Supports directed broadcast on configured network subnets
Enables GPO for multi-fabric unicast traffic
DHCP services are offered within a client network to simplify network management DHCP Relay enables DHCP operation across subnets
Supports DHCP services (for IPv4 and IPv6) in customer networks
Allows DHCP relay coexistence with DHCP server for both IPv4 and IPv6
Provides a distributed database that translates domain names and IP addresses, which simplifies network design; supports client and server
Enables tunneling traffic from site to site over a Layer 3 path Layer 3 Routing
Provides simple manually configured IPv4 routing
- Allows multiple IP addresses on a single routed interface. - Supports unicast and multicast routing for both IPv4 and IPv6 - Supports OSPF, BGP and PIM for both IPv4 and IPV6 - Supported on RoP, L3 lags and Hydra interfaces - Network Load Balancing (NLB)
Delivers faster convergence; uses link-state routing Interior Gateway Protocol (IGP), which supports ECMP, NSSA, and MD5 authentication for increased security and graceful restart for faster failure recovery
Allows redistribution of IPv4 and IPv6 addresses of loopback interface in OSFPv2/v3
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
Simplifies BGP configuration for ZTP scenarios and enables CX for Azure stack integration
Easy to configure routing protocol for small networks relying on User Datagram Protocol (UDP)
Extension of RIPv2 for support of IPv6 networking
Enables sharing of IPv6 routes using BGP and connections to BGP peers using IPv6
Enables using a classifier to select traffic that can be forwarded based on policy set by the network administrator
Supports the tunneling of IPv6 traffic in an IPv4 network
Provides a set of tools to improve the performance of IPv4 networks; includes directed broadcasts, customization of TCP parameters, support of ICMP error packets, and extensive display capabilities
Provides simple manually configured IPv6 routing
Maintains separate stacks for IPv4 and IPv6 to ease the transition from an IPv4-only network to an IPv6-only network design
Provides OSPF support for IPv6
Enables multiple equal-cost links in a routing environment to increase link redundancy and scale bandwidth
Enables tunneling traffic from site to site over a Layer 3 path Security
The Aruba CX 8360 with AOS-CX, a TAA compliant product, uses FIPS 140-2 validated cryptography for protection of sensitive information
Compliant with DoDIN, APL, NDcPP, FIPS, and USGv6 requirements for federal certifications.
Supports powerful ACLs for both IPv4 and IPv6. Supports creation of object groups representing sets of devices like IP addresses. For instance, IT management devices could be grouped in this way ACLs can also protect control plane services such as SSH, SNMP, NTP or web servers
- Enables traffic isolation for users on the same VLAN - Support for isolated, community and primary VLANs
Enables secure certificate enrollment, allowing for easier enterprise management of PKI
Eases security access administration by using a password authentication server
Delivers an authentication tool using TCP with encryption of the full authentication request, providing additional security
Enable RADIUS authentication and accounting data to be passed safely and reliably across insecure networks such as the internet
AOS-CX provides for both on-box as well as off-box authentication for administrative access. RADIUS or TACACS+ can be used to provide encrypted user authentication Additionally, TACACS+ can also provide user authorization services
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
High level encryption from AES128 and AES256 with 2SAK as well as 4SAK mode of Static Key provisioning enabling secure communication for all traffic on Ethernet links
- Ensure configuration integrity - Limit concurrent users for web access Multicast
Enables establishing multicast group memberships in IPv4 networks; supports IGMPv1, v2, and v3
Enables discovery of IPv6 multicast listeners; supports MLDv1 and v2
Two or more RPs configured with same /32 Host IP address on loopback interfaces. All the downstream routers will be configured to point to Anycast RP address for multicast routes. Device will automatically select the closest RP for each source and receiver. If equal costs routes exist, the process of registering the sources will be shared equally by all the RPs in the network.
Efficiently routes multicast traffic through core networks
MSDP used for Anycast RP is an intradomain feature that provides redundancy and load-sharing capabilities. When MSDP mesh groups are used, SA messages are not flooded to other mesh group peers. When an MSDP peer in a group receives an SA message from another MSDP peer in the group, it assumes that this SA message was sent to all the other MSDP peers in the group. It also eliminates RPF checks on arriving SA messages. With MSDP mesh group configured, SA messages are always accepted from mesh group peer.
Floods multicast traffic to every corner of the network (push-model). Method is for delivering data to receivers without receivers requesting the data. Can be efficient in certain deployments in which there are active receivers on every subnet in the network. Branches without downstream receivers are pruned from the forwarding trees.
FL and FFL for IGMP/MLD speeds up the process of blocking unnecessary Multicast traffic to a switch port that is connected to end nodes for IGMP. They help to eliminate the CPU overhead of having to generate an IGMP/MLD Group- Specific Query message.
Supported for server applications
Supports load sharing and redundancy among servers within a cluster
Prevent flooding of multicast traffic to non-listening ports
Protocol Independent Multicast for IPv4 and IPv6 supports one-to-many and many-to-many media casting use cases such as IPTV over IPv4 and IPv6 networks. Support for PIM Sparse Mode (PIM-SM, IPv4 and IPv6). Additional information
Provides support for RoHS (EN 50581:2012) regulations
- AIOPS - NAE Agent & Engine Improvements - Unicast Routing - AIOPS - NAE Agent & Engine Improvements - Client Services
Warranty, services, and support
See https://www.arubanetworks.com/support-services/product-warranties/ for warranty and support information included with your product purchase.
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Configuration Information
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BTO Models |
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Rule # |
Description |
SKU |
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1, 2, 3, 4, 5, 6, 7, 8 |
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle |
JL700A |
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Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle PDU |
JL700A#B2B |
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Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL700A#B2C |
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Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle 220v |
JL700A#B2E |
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Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle No Loc |
JL700A#AC3 |
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1, 2, 3, 4, 5, 6, 7, 8 |
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle |
JL701A |
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Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle PDU |
JL701A#B2B |
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Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL701A#B2C |
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Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle 220v |
JL701A#B2E |
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Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle No Loc |
JL701A#AC3 |
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1, 2, 3, 4, 5, 6, 7, 8 |
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle |
JL702A |
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Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle PDU |
JL702A#B2B |
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Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL702A#B2C |
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Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle 220v |
JL702A#B2E |
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Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL702A#AC3 |
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1, 2, 3, 4, 5, 6, 7, 8 |
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle |
JL703A |
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Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle PDU |
JL703A#B2B |
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Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL703A#B2C |
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Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle 220v |
JL703A#B2E |
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Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL703A#AC3 |
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4, 5, 6, 7 |
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle |
JL706A |
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Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle PDU |
JL706A#B2B |
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Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL706A#B2C |
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Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle 220v |
JL706A#B2E |
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Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL706A#AC3 |
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4, 5, 6 |
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle |
JL707A |
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Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle PDU |
JL707A#B2B |
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Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL707A#B2C |
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Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle 220v |
JL707A#B2E |
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Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL707A#AC3 |
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4, 5, 6, 7, 8 |
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle |
JL708A |
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Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle PDU |
JL708A#B2B |
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Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL708A#B2C |
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Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle 220v |
JL708A#B2E |
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Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL708A#AC3 |
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4, 5, 6, 7, 8 |
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle |
JL709A |
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Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle PDU |
JL709A#B2B |
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Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL709A#B2C |
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Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle 220v |
JL709A#B2E |
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Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL709A#AC3 |
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1, 2, 4, 5, 6, 7, 8 |
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle |
JL710A |
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Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle PDU |
JL710A#B2B |
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Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL710A#B2C |
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Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle 220v |
JL710A#B2E |
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Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL710A#AC3 |
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1, 2, 4, 5, 6, 7, 8 |
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle |
JL711A |
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Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle PDU |
JL711A#B2B |
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Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL711A#B2C |
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Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle 220v |
JL711A#B2E |
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Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL711A#AC3 |
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Configuration Rules |
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Rule # |
Description |
SKU |
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1 |
The following Transceivers install into this Module: (Use BTO only when adding to switch) |
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Aruba 1G SFP LC LX 10km SMF Transceiver |
J4859D |
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Aruba 1G SFP LC LH 70km SMF Transceiver |
J4860D |
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Aruba 1G SFP RJ45 T 100m Cat5e Transceiver |
J8177D |
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Aruba 1G SFP LC SX 500m MMF TAA Transceiver |
JL745A |
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Aruba 1G SFP LC LX 10km SMF TAA Transceiver |
JL746A |
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Aruba 1G SFP RJ45 T 100m Cat5e TAA Transceiver |
JL747A |
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2 |
The following Transceivers install into this Module: (Use BTO only when adding to switch) |
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Aruba 10G SFP+ LC LR 10km SMF Transceiver |
J9151E |
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Aruba 10GBASE-T SFP+ RJ45 30m Cat6A Transceiver |
JL563B |
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Aruba 10G SFP+ LC ER 40km SMF Transceiver |
J9153D |
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Aruba 10G SFP+ LC SR 300m MMF TAA Transceiver |
JL748A |
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Aruba 10G SFP+ LC LR 10km SMF TAA Transceiver |
JL749A |
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Aruba 10G SFP+ to SFP+ 1m Direct Attach Copper Cable |
J9281D |
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Aruba 10G SFP+ to SFP+ 3m Direct Attach Copper Cable |
J9283D |
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HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 3m Direct Attach Copper Cable |
487655-B21 |
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HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 5m Direct Attach Copper Cable |
537963-B21 |
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3 |
The following Transceivers install into this Module: (Use BTO only when adding to switch) |
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Aruba 25G SFP28 LC SR 100m MMF Transceiver |
JL484A |
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Aruba 25G SFP28 LC eSR 400m MMF Transceiver |
JL485A |
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Aruba 25G SFP28 LC LR 10km SMF Transceiver |
JL486A |
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Aruba 25G SFP28 to SFP28 0.65m Direct Attach Cable |
JL487A |
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Aruba 25G SFP28 to SFP28 3m Direct Attach Copper Cable |
JL488A |
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Aruba 25G SFP28 to SFP28 5m Direct Attach Copper Cable |
JL489A |
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HPE 25Gb SFP28 to SFP28 3m Direct Attach Copper Cable |
844477-B21 |
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HPE 25Gb SFP28 to SFP28 5m Direct Attach Copper Cable |
844480-B21 |
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Aruba 25G SFP28 to SFP28 3m Active Optical Cable |
R0M44A |
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Aruba 25G SFP28 to SFP28 7m Active Optical Cable |
R0M45A |
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Aruba 25G SFP28 to SFP28 15m Active Optical Cable |
R0Z21A |
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4 |
The following Transceivers install into this Module: (Use BTO only when adding to switch) |
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Aruba 40G QSFP+ LC Bidirectional 150m MMF 2-strand Transceiver |
JL308A |
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HPE X142 40G QSFP+ MPO SR4 Transceiver |
JH231A |
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HPE X142 40G QSFP+ LC LR4 SM Transceiver |
JH232A |
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HPE X142 40G QSFP+ MPO eSR4 300M Transceiver |
JH233A |
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Aruba 40G QSFP+ LC ER4 40km SMF Transceiver |
Q9G82A |
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Aruba 40G QSFP+ to QSFP+ 7m Active Optical Cable |
R0Z22A |
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Aruba 40G QSFP+ to QSFP+ 15m Active Optical Cable |
R0Z23A |
|
|
Aruba 40G QSFP+ to QSFP+ 30m Active Optical Cable |
R0Z24A |
|
|
HPE X242 40G QSFP+ to QSFP+ 1m Direct Attach Copper Cable |
JH234A |
|
|
HPE X242 40G QSFP+ to QSFP+ 3m Direct Attach Copper Cable |
JH235A |
|
|
HPE X242 40G QSFP+ to QSFP+ 5m Direct Attach Copper Cable |
JH236A |
|
5 |
The following Transceivers install into this Module: (Use BTO only when adding to switch) |
|
|
|
Aruba 100G QSFP28 LC ER4L 40km SMF Transceiver |
JL743A |
|
|
Aruba 100G QSFP28 MPO SR4 100m 12-fiber MPO OM3 MMF Transceiver |
JL309A |
|
|
Aruba 100G QSFP28 LC CWDM4 2km SMF Transceiver |
R0Z30A |
|
|
Aruba 100G QSFP28 LC FR1 SMF 2km Transceiver |
R9B63A |
|
|
Aruba 100G QSFP28 LC LR4 10km SMF 2-strand Transceiver |
JL310A |
|
|
HPE 100Gb QSFP28 Bidirectional Transceiver |
845972-B21 |
|
|
Aruba 100G QSFP28 to QSFP28 1m Direct Attach Copper Cable |
R0Z25A |
|
|
Aruba 100G QSFP28 to QSFP28 3m Direct Attach Copper Cable |
JL307A |
|
|
Aruba 100G QSFP28 to QSFP28 5m Direct Attach Copper Cable |
R0Z26A |
|
|
Aruba 100G QSFP28 to QSFP28 7m Active Optical Cable |
R0Z27A |
|
|
Aruba 100G QSFP28 to QSFP28 15m Active Optical Cable |
R0Z28A |
|
|
Aruba 100G QSFP28 to QSFP28 30m Active Optical Cable |
R0Z29A |
|
|
HPE QSFP28 to SFP28 Adapter |
845970-B21 |
|
|
Aruba 100G QSFP28 to QSFP28 2m Active Optical Cable |
JL856A |
|
6 |
Localization required on orders without #B2B, #B2C, #B2E, or #AC3 options. |
|
|
7 |
If qty1 of the folowing QSA28 Adapter(845970-B21) is selected, then increase max SFP28 Port qty by 1 and allow user selection of the following SFP Transceivers. Refer to qty and port restrictions for individual Switch in the "Additional Info" sections: (Use BTO only when adding this QSA28 Adapter) |
|
|
|
Aruba 10G SFP+ LC SR 300m OM3 MMF Transceiver |
J9150D |
|
|
Aruba 10G SFP+ LC LR 10km SMF Transceiver |
J9151E |
|
|
Aruba 10G SFP+ LC ER 40km SMF Transceiver |
J9153D |
|
|
Aruba 10G SFP+ LC SR 300m MMF TAA Transceiver |
JL748A |
|
|
Aruba 10G SFP+ LC LR 10km SMF TAA Transceiver |
JL749A |
|
|
Aruba 25G SFP28 LC SR 100m MMF Transceiver |
JL484A |
|
|
Aruba 25G SFP28 LC eSR 400m MMF Transceiver |
JL485A |
|
|
Aruba 25G SFP28 LC LR 10km SMF Transceiver |
JL486A |
|
8 |
The following Transceivers install into this Switch: (Use BTO only when adding to switch) |
|
|
|
HPE QSFP28 to 4x25Gb SFP28 7m Active Optical Cable |
845420-B21 |
|
|
HPE QSFP28 to 4x25Gb SFP28 15m Active Optical Cable |
845424-B21 |
|
|
HPE BladeSystem c-Class QSFP+ to 4x10G SFP+ 15m Active Optical Cable |
721076-B21 |
|
9 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
|
|
|
Aruba 50G SFP56 LC SR 100m MMF Transceiver |
R0M48A |
|
|
Aruba 50G SFP56 to SFP56 0.65m Direct Attach Copper Cable |
R0M46A |
|
|
Aruba 50G SFP56 to SFP56 3m Direct Attach Copper Cable |
R0M47A |
|
Notes: |
- OCA Only: Required Custom Choice (Min1/Max1): o Switch/Router/Power Supply to PDU Power Cord - B2B in North America, Mexico, Taiwan, and Japan or B2C ROW. (OCA Default B2B or B2C for Rack Level CTO) o Switch/Router/Power Supply to Wall Power Cord - Localized Option (OCA Default for BTO) o High Volt Switch/Router/Power Supply to Wall Power Cord - B2E Option. (Offered only in North America, Mexico, Taiwan, and Japan) o No Power Cord - AC3 Option - OCA Blue Notes: Locking Power Cord (J9955A) L6-20P is available through the OCA Accessories tab - OCA Only Model Selection Form - HPE Offering > Aruba > Switches > ArubaOS > AOS-CX: Aruba 8360 Switch Series |
|
|
| ||
|
Rack Level Integration CTO Models |
| |||||||
|
Rule # |
Description |
SKU | ||||||
|
1, 2, 3, 4, 5, 6, 7, 8, 9 |
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle |
JL700A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle PDU |
JL700A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL700A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle 220v |
JL700A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Port to Power 3 Fans 2 PSU Bundle No Loc |
JL700A#AC3 | ||||||
|
|
|
| ||||||
|
1, 2, 3, 4, 5, 6, 7, 8, 9 |
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle |
JL701A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle PDU |
JL701A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL701A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle 220v |
JL701A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-32Y4C with MACSec Power to Port 3 Fans 2 PSU Bundle No Loc |
JL701A#AC3 | ||||||
|
|
|
| ||||||
|
1, 2, 3, 4, 5, 6, 7, 8, 9 |
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle |
JL702A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle PDU |
JL702A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL702A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle 220v |
JL702A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL702A#AC3 | ||||||
|
|
|
| ||||||
|
1, 2, 3, 4, 5, 6, 7, 8, 9 |
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle |
JL703A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle PDU |
JL703A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL703A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle 220v |
JL703A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-16Y2C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL703A#AC3 | ||||||
|
|
|
| ||||||
|
4, 5, 6, 7, 8 |
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle |
JL706A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle PDU |
JL706A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL706A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle 220v |
JL706A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL706A#AC3 | ||||||
|
|
|
| ||||||
|
4, 5, 6, 7, 8 |
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle |
JL707A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle PDU |
JL707A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL707A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle 220v |
JL707A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL707A#AC3 | ||||||
|
|
|
| ||||||
|
4, 5, 6, 7, 8, 9 |
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle |
JL708A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle PDU |
JL708A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL708A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle 220v |
JL708A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL708A#AC3 | ||||||
|
|
|
| ||||||
|
4, 5, 6, 7, 8, 9 |
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle |
JL709A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle PDU |
JL709A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL709A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle 220v |
JL709A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-12C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL709A#AC3 | ||||||
|
|
|
| ||||||
|
1, 2, 4, 5, 6, 7, 8, 9 |
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle |
JL710A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle PDU |
JL710A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle PDU RoW |
JL710A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle 220v |
JL710A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Port to Power 3 Fans 2 PSU Bundle No Loc |
JL710A#AC3 | ||||||
|
|
|
| ||||||
|
1, 2, 4, 5, 6, 7 |
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle |
JL711A | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle PDU |
JL711A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle PDU RoW |
JL711A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle 220v |
JL711A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba 8360-24XF2C Power to Port 3 Fans 2 PSU Bundle No Loc |
JL711A#AC3 | ||||||
|
|
|
| ||||||
|
|
Configuration Rules |
| ||||||
|
Rule # |
Description |
SKU | ||||||
|
1 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 1G SFP LC SX 500m OM2 MMF Transceiver |
J4858D | ||||||
|
|
Aruba 1G SFP LC LX 10km SMF Transceiver |
J4859D | ||||||
|
|
Aruba 1G SFP LC LH 70km SMF Transceiver |
J4860D | ||||||
|
|
Aruba 1G SFP RJ45 T 100m Cat5e Transceiver |
J8177D | ||||||
|
|
Aruba 1G SFP LC SX 500m MMF TAA Transceiver |
JL745A | ||||||
|
|
Aruba 1G SFP LC LX 10km SMF TAA Transceiver |
JL746A | ||||||
|
|
Aruba 1G SFP RJ45 T 100m Cat5e TAA Transceiver |
JL747A | ||||||
|
2 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 10G SFP+ LC SR 300m OM3 MMF Transceiver |
J9150D | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF Transceiver |
J9151E | ||||||
|
|
Aruba 10GBASE-T SFP+ RJ45 30m Cat6A Transceiver |
JL563B | ||||||
|
|
Aruba 10G SFP+ LC ER 40km SMF Transceiver |
J9153D | ||||||
|
|
Aruba 10G SFP+ LC SR 300m MMF TAA Transceiver |
JL748A | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF TAA Transceiver |
JL749A | ||||||
|
|
Aruba 10G SFP+ to SFP+ 1m Direct Attach Copper Cable |
J9281D | ||||||
|
|
Aruba 10G SFP+ to SFP+ 3m Direct Attach Copper Cable |
J9283D | ||||||
|
|
HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 3m Direct Attach Copper Cable |
487655-B21 | ||||||
|
|
HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 5m Direct Attach Copper Cable |
537963-B21 | ||||||
|
3 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 25G SFP28 LC SR 100m MMF Transceiver |
JL484A | ||||||
|
|
Aruba 25G SFP28 LC eSR 400m MMF Transceiver |
JL485A | ||||||
|
|
Aruba 25G SFP28 LC LR 10km SMF Transceiver |
JL486A | ||||||
|
|
Aruba 25G SFP28 to SFP28 0.65m Direct Attach Cable |
JL487A | ||||||
|
|
Aruba 25G SFP28 to SFP28 3m Direct Attach Copper Cable |
JL488A | ||||||
|
|
Aruba 25G SFP28 to SFP28 5m Direct Attach Copper Cable |
JL489A | ||||||
|
|
HPE 25Gb SFP28 to SFP28 3m Direct Attach Copper Cable |
844477-B21 | ||||||
|
|
HPE 25Gb SFP28 to SFP28 5m Direct Attach Copper Cable |
844480-B21 | ||||||
|
|
Aruba 25G SFP28 to SFP28 3m Active Optical Cable |
R0M44A | ||||||
|
|
Aruba 25G SFP28 to SFP28 7m Active Optical Cable |
R0M45A | ||||||
|
|
Aruba 25G SFP28 to SFP28 15m Active Optical Cable |
R0Z21A | ||||||
|
4 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 40G QSFP+ LC Bidirectional 150m MMF 2-strand Transceiver |
JL308A | ||||||
|
|
HPE X142 40G QSFP+ MPO SR4 Transceiver |
JH231A | ||||||
|
|
HPE X142 40G QSFP+ LC LR4 SM Transceiver |
JH232A | ||||||
|
|
HPE X142 40G QSFP+ MPO eSR4 300M Transceiver |
JH233A | ||||||
|
|
Aruba 40G QSFP+ LC ER4 40km SMF Transceiver |
Q9G82A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 7m Active Optical Cable |
R0Z22A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 15m Active Optical Cable |
R0Z23A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 30m Active Optical Cable |
R0Z24A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 1m Direct Attach Copper Cable |
JH234A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 3m Direct Attach Copper Cable |
JH235A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 5m Direct Attach Copper Cable |
JH236A | ||||||
|
5 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 100G QSFP28 LC ER4L 40km SMF Transceiver |
JL743A | ||||||
|
|
Aruba 100G QSFP28 MPO SR4 100m 12-fiber MPO OM3 MMF Transceiver |
JL309A | ||||||
|
|
Aruba 100G QSFP28 LC CWDM4 2km SMF Transceiver |
R0Z30A | ||||||
|
|
Aruba 100G QSFP28 LC FR1 SMF 2km Transceiver |
R9B63A | ||||||
|
|
Aruba 100G QSFP28 LC LR4 10km SMF 2-strand Transceiver |
JL310A | ||||||
|
|
HPE 100Gb QSFP28 Bidirectional Transceiver |
845972-B21 | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 1m Direct Attach Copper Cable |
R0Z25A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 3m Direct Attach Copper Cable |
JL307A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 5m Direct Attach Copper Cable |
R0Z26A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 7m Active Optical Cable |
R0Z27A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 15m Active Optical Cable |
R0Z28A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 30m Active Optical Cable |
R0Z29A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 2m Active Optical Cable |
JL856A | ||||||
|
6 |
Required Custom Choice (Min1/Max1) Switch/Router/Power Supply to PDU Power Cord - B2B in North America, Mexico, Taiwan, and Japan or B2C ROW. (OCA Default B2B or B2C for Rack Level CTO) Switch/Router/Power Supply to Wall Power Cord - Localized Option (OCA Default for BTO) High Volt Switch/Router/Power Supply to Wall Power Cord - B2E Option. (Offered only in North America, Mexico, Taiwan, and Japan) No Power Cord - AC3 Option |
| ||||||
|
7 |
Factory racked CTO Base Model must integrate (#0D1) to the Rack. |
| ||||||
|
8 |
If qty1 of the folowing QSA28 Adapter(845970-B21) is selected, then increase max SFP28 Port qty by 1 and allow user selection of the following SFP Transceivers. Refer to qty and port restrictions for individual Switch in the "Additional Info" sections: (Use BTO only when adding this QSA28 Adapter) |
| ||||||
|
|
Aruba 10G SFP+ LC SR 300m OM3 MMF Transceiver |
J9150D | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF Transceiver |
J9151E | ||||||
|
|
Aruba 10G SFP+ LC ER 40km SMF Transceiver |
J9153D | ||||||
|
|
Aruba 10G SFP+ LC SR 300m MMF TAA Transceiver |
JL748A | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF TAA Transceiver |
JL749A | ||||||
|
|
Aruba 25G SFP28 LC SR 100m MMF Transceiver |
JL484A | ||||||
|
|
Aruba 25G SFP28 LC eSR 400m MMF Transceiver |
JL485A | ||||||
|
|
Aruba 25G SFP28 LC LR 10km SMF Transceiver |
JL486A | ||||||
|
9 |
The following Transceivers install into this Switch: (Use BTO only when adding to switch) |
| ||||||
|
|
HPE BladeSystem c-Class QSFP+ to 4x10G SFP+ 15m Active Optical Cable |
721076-B21 | ||||||
|
|
HPE BladeSystem c-Class 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable |
721064-B21 | ||||||
|
|
HPE 100Gb QSFP28 to 4x25Gb SFP28 3m Direct Attach Copper Cable |
845416-B21 | ||||||
|
|
HPE QSFP28 to 4x25Gb SFP28 7m Active Optical Cable |
845420-B21 | ||||||
|
|
HPE QSFP28 to 4x25Gb SFP28 15m Active Optical Cable |
845424-B21 | ||||||
|
10 |
The following Transceivers install into this Switch: (Use #0D1 for XCVRs or #B01 for Cables since switch is factory racked): |
| ||||||
|
|
Aruba 50G SFP56 LC SR 100m MMF Transceiver |
R0M48A | ||||||
|
|
Aruba 50G SFP56 to SFP56 0.65m Direct Attach Copper Cable |
R0M46A | ||||||
|
|
Aruba 50G SFP56 to SFP56 3m Direct Attach Copper Cable |
R0M47A | ||||||
|
Notes: |
Locking Power Cord (J9955A) L6-20P is available through the OCA Accessories tab |
| ||||||
|
| ||||||||
Transceivers | ||||||||
|
Rule # |
Description |
SKU | ||||||
|
|
SPF Transceivers |
| ||||||
|
|
Aruba 1G SFP LC SX 500m OM2 MMF Transceiver |
J4858D | ||||||
|
|
Aruba 1G SFP LC LX 10km SMF Transceiver |
J4859D | ||||||
|
|
Aruba 1G SFP LC LH 70km SMF Transceiver |
J4860D | ||||||
|
|
Aruba 1G SFP RJ45 T 100m Cat5e Transceiver |
J8177D | ||||||
|
|
Aruba 1G SFP LC SX 500m MMF TAA Transceiver |
JL745A | ||||||
|
|
Aruba 1G SFP LC LX 10km SMF TAA Transceiver |
JL746A | ||||||
|
|
Aruba 1G SFP RJ45 T 100m Cat5e TAA Transceiver |
JL747A | ||||||
|
Notes: |
For 48Y6C and 32Y4C models; All Ports are valid except 1-4 |
| ||||||
|
|
SPF+ Transceivers |
| ||||||
|
|
Aruba 10G SFP+ LC SR 300m OM3 MMF Transceiver |
J9150D | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF Transceiver |
J9151E | ||||||
|
|
Aruba 10G SFP+ LC LRM 220m OM2 MMF Transceiver |
J9152D | ||||||
|
|
Aruba 10G SFP+ LC ER 40km SMF Transceiver |
J9153D | ||||||
|
|
Aruba 10G SFP+ LC SR 300m MMF TAA Transceiver |
JL748A | ||||||
|
|
Aruba 10G SFP+ LC LR 10km SMF TAA Transceiver |
JL749A | ||||||
|
|
Aruba 10G SFP+ to SFP+ 1m Direct Attach Copper Cable |
J9281D | ||||||
|
|
Aruba 10G SFP+ to SFP+ 3m Direct Attach Copper Cable |
J9283D | ||||||
|
|
HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 3m Direct Attach Copper Cable |
487655-B21 | ||||||
|
|
HPE BladeSystem c-Class 10GbE SFP+ to SFP+ 5m Direct Attach Copper Cable |
537963-B21 | ||||||
|
|
SFP28 Transceivers |
| ||||||
|
|
Aruba 25G SFP28 LC SR 100m MMF Transceiver |
JL484A | ||||||
|
|
Aruba 25G SFP28 LC eSR 400m MMF Transceiver |
JL485A | ||||||
|
|
Aruba 25G SFP28 LC LR 10km SMF Transceiver |
JL486A | ||||||
|
|
Aruba 25G SFP28 to SFP28 0.65m Direct Attach Cable |
JL487A | ||||||
|
|
Aruba 25G SFP28 to SFP28 3m Direct Attach Copper Cable |
JL488A | ||||||
|
|
Aruba 25G SFP28 to SFP28 5m Direct Attach Copper Cable |
JL489A | ||||||
|
|
HPE 25Gb SFP28 to SFP28 3m Direct Attach Copper Cable |
844477-B21 | ||||||
|
|
HPE 25Gb SFP28 to SFP28 5m Direct Attach Copper Cable |
844480-B21 | ||||||
|
|
Aruba 25G SFP28 to SFP28 3m Active Optical Cable |
R0M44A | ||||||
|
|
Aruba 25G SFP28 to SFP28 7m Active Optical Cable |
R0M45A | ||||||
|
|
Aruba 25G SFP28 to SFP28 15m Active Optical Cable |
R0Z21A | ||||||
|
|
QSFP+ Transceivers |
| ||||||
|
|
Aruba 40G QSFP+ LC Bidirectional 150m MMF 2-strand Transceiver |
JL308A | ||||||
|
|
HPE X142 40G QSFP+ MPO SR4 Transceiver |
JH231A | ||||||
|
|
HPE X142 40G QSFP+ LC LR4 SM Transceiver |
JH232A | ||||||
|
|
Aruba 40G QSFP+ LC ER4 40km SMF Transceiver |
Q9G82A | ||||||
|
|
HPE X142 40G QSFP+ MPO eSR4 300M Transceiver |
JH233A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 7m Active Optical Cable |
R0Z22A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 15m Active Optical Cable |
R0Z23A | ||||||
|
|
Aruba 40G QSFP+ to QSFP+ 30m Active Optical Cable |
R0Z24A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 1m Direct Attach Copper Cable |
JH234A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 3m Direct Attach Copper Cable |
JH235A | ||||||
|
|
HPE X242 40G QSFP+ to QSFP+ 5m Direct Attach Copper Cable |
JH236A | ||||||
|
* |
HPE BladeSystem c-Class 40G QSFP+ to 4x10G SFP+ 3m Direct Attach Copper Splitter Cable |
721064-B21 | ||||||
|
* |
HPE BladeSystem c-Class QSFP+ to 4x10G SFP+ 15m Active Optical Cable |
721076-B21 | ||||||
|
Notes: |
*This Breakout Cable is not supported on the following Switches: |
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle |
JL706A | ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle |
JL707A | ||||||
|
|
QSFP28 Transceivers |
| ||||||
|
|
Aruba 100G QSFP28 LC ER4L 40km SMF Transceiver |
JL743A | ||||||
|
|
Aruba 100G QSFP28 MPO SR4 100m 12-fiber MPO OM3 MMF Transceiver |
JL309A | ||||||
|
|
Aruba 100G QSFP28 LC CWDM4 2km SMF Transceiver |
R0Z30A | ||||||
|
|
Aruba 100G QSFP28 LC LR4 10km SMF 2-strand Transceiver |
JL310A | ||||||
|
|
HPE 100Gb QSFP28 Bidirectional Transceiver |
845972-B21 | ||||||
|
|
Aruba 100G QSFP28 LC FR1 SMF 2km Transceiver |
R9B63A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 1m Direct Attach Copper Cable |
R0Z25A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 3m Direct Attach Copper Cable |
JL307A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 5m Direct Attach Copper Cable |
R0Z26A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 2m Active Optical Cable |
JL856A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 7m Active Optical Cable |
R0Z27A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 15m Active Optical Cable |
R0Z28A | ||||||
|
|
Aruba 100G QSFP28 to QSFP28 30m Active Optical Cable |
R0Z29A | ||||||
|
* |
HPE 100Gb QSFP28 to 4x25Gb SFP28 3m Direct Attach Copper Cable |
845416-B21 | ||||||
|
* |
HPE QSFP28 to 4x25Gb SFP28 7m Active Optical Cable |
845420-B21 | ||||||
|
* |
HPE QSFP28 to 4x25Gb SFP28 15m Active Optical Cable |
845424-B21 | ||||||
|
Notes: |
*This Breakout Cable is not supported on the following Switches: |
| ||||||
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 PSU Bundle |
JL706A | ||||||
|
|
Aruba 8360-48XT4C Power to Port 3 Fans 2 PSU Bundle |
JL707A | ||||||
|
|
QSA28 Adapter |
| ||||||
|
* |
HPE QSFP28 to SFP28 Adapter |
845970-B21 | ||||||
|
Notes: |
*If selecting the 845970-B21 - QSFP28 to SFP28 Adapter, then see Aruba Tranceiver Guide for details. |
| ||||||
|
| ||||||||
|
Switch Options |
| |||||||
|
|
For 8360 System (std 0 // max 1) User Selection (min 1 // max 1) per Switch |
| ||||||
|
Remarks |
Description |
SKU | ||||||
|
|
Rack Mount Kits For 8360 System (std 0 // max 1) User Selection (min 1 // max 1) per Switch For JL704C and JL705C System (std 0 // max 1) User Selection (min 0 // max 1) per Switch |
| ||||||
|
|
Aruba X412 1U Universal 2-post Rack Mount Kit |
JL602A | ||||||
|
Notes: |
If the switch will be factory racked into an HPE Universal Rack, then (Min 1) of the 4 Post Rack Mount kit is required with #0D1. |
| ||||||
|
|
Aruba X414 1U Universal 4-post Rack Mount Kit |
J9583B | ||||||
|
|
Air Duct Kit |
| ||||||
|
Rule # |
Description |
SKU | ||||||
|
1, 2, 3 |
Aruba X544 Universal 4-post Duct Kit (Must order 4-post rack mount kit separately) |
JL716A | ||||||
|
|
|
| ||||||
|
|
Configuration Rules |
| ||||||
|
1 |
If the Switch Bundle will be Factory Racked, then this Duct Kit is required with #0D1 for the Power to Port Switch Bundles: JL701A, JL703A, JL705C, JL707A, JL709A, JL711A. |
| ||||||
|
2 |
For optimal performance, it is recommended that the user select the Duct Kit for Power to Port Switch Bundles |
| ||||||
|
3 |
If this Air Duct Kit is selected then the following 4 Post Rack Mount kit must be selected: J9583B - Aruba X414 1U Universal 4-post Rack Mount Kit |
| ||||||
|
|
USB Console Cables |
| ||||||
|
|
System (std 0 // max 99) User Selection (min 0 // max 99) per enclosure |
| ||||||
|
|
Aruba USBA-RJ45 PIN3TX-6RX 2.5m Cable |
R8Z87A | ||||||
|
|
Aruba USBA-RJ45 PC-to-Switch PIN6TX-3RX 2.5m Cable |
R9G48A | ||||||
|
|
Aruba USB-A reversible to USB-C PC-to-Switch 3m Cable |
R9J32A | ||||||
|
|
Aruba USB-C to USB-C PC-to-Switch 3m Cable |
R9J33A | ||||||
|
Notes: |
This cable is only compatible with the following Switches; JL700A, JL701A, JL702A, JL703A, JL704C, JL706A, JL707A, JL708A, JL709A, JL710A, JL711A |
| ||||||
|
| ||||||||
|
Accessories | ||||||||
|
Rule # |
Description |
SKU | ||||||
|
|
Spare Items |
| ||||||
|
1 |
Aruba X391 550W Port to Power AC Power Supply |
JL600A | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Port to Power AC Power Supply PDU |
JL600A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Port to Power AC Power Supply PDU RoW |
JL600A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Port to Power AC Power Supply 220v |
JL600A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Port to Power AC Power Supply No Loc |
JL600A#AC3 | ||||||
|
|
Aruba X391 850W Port to Power AC Power Supply |
JL601A#BTO | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Port to Power AC Power Supply PDU |
JL601A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Port to Power AC Power Supply PDU RoW |
JL601A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Port to Power AC Power Supply 220v |
JL601A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Port to Power AC Power Supply No Loc |
JL601A#AC3 | ||||||
|
|
|
| ||||||
|
1 |
Aruba X391 550W Power to Port AC Power Supply |
JL712A | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Power to Port AC Power Supply PDU |
JL712A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Power to Port AC Power Supply PDU RoW |
JL712A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Power to Port AC Power Supply 220v |
JL712A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba X391 550W Power to Port AC Power Supply No Loc |
JL712A#AC3 | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Power to Port AC Power Supply |
JL713A | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Power to Port AC Power Supply PDU |
JL713A#B2B | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Power to Port AC Power Supply PDU RoW |
JL713A#B2C | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Power to Port AC Power Supply 220v |
JL713A#B2E | ||||||
|
|
|
| ||||||
|
|
Aruba X391 850W Power to Port AC Power Supply No Loc |
JL713A#AC3 | ||||||
|
|
|
| ||||||
|
|
Aruba X741 Port to Power Fan |
JL714A | ||||||
|
|
Aruba X742 Power to Port Fan |
JL715A | ||||||
|
|
Aruba X412 1U Universal 2-post Rack Mount Kit |
JL602A | ||||||
|
|
Aruba X414 1U Universal 4-post Rack Mount Kit |
J9583B | ||||||
|
|
Aruba X544 Universal 4-post Duct Kit (Must order 4-post rack mount kit separately) |
JL716A | ||||||
|
|
|
| ||||||
|
|
Aruba X2C2 RJ45 to DB9 Console Cable |
JL448A | ||||||
|
|
Configuration Rules |
| ||||||
|
Rule # |
Description |
| ||||||
|
1 |
Localization required on orders without B2B, B2C, B2E or AC3 options. |
| ||||||
|
Notes: |
OCA Only: Required Custom Choice (Min1/Max1) Switch/Router/Power Supply to PDU Power Cord - B2B in North America, Mexico, Taiwan, and Japan or B2C ROW. (OCA Default B2B or B2C for Rack Level CTO) Switch/Router/Power Supply to Wall Power Cord - Localized Option (OCA Default for BTO) High Volt Switch/Router/Power Supply to Wall Power Cord - B2E Option. (Offered only in North America, Mexico, Taiwan, and Japan) No Power Cord - AC3 Option |
| ||||||
|
| ||||||||
|
Software | |||
|
Remarks |
Description |
SKU | |
|
|
ArubaOS-CX Software |
| |
|
|
CX Advanced Software Licenses |
| |
|
|
Aruba CX Software 8/9xxx Switch Advanced 1-year Subscription E-STU |
S0T87AAE | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 3-year Subscription E-STU |
S0T88AAE | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 5-year Subscription E-STU |
S0T89AAE | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 7-year Subscription E-STU |
S0T90AAE | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 10-year Subscription E-STU |
S0T86AAE | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 1-year Subscription SaaS |
S0T87AAS | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 3-year Subscription SaaS |
S0T88AAS | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 5-year Subscription SaaS |
S0T89AAS | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 7-year Subscription SaaS |
S0T90AAS | |
|
|
Aruba CX Software 8/9xxx Switch Advanced 10-year Subscription SaaS |
S0T86AAS | |
|
|
NetEdit |
| |
|
|
Single Node Subscription |
| |
|
|
Aruba NetEdit Single Node 1yr Subscription E-STU |
JL639AAE | |
|
|
Aruba NetEdit Single Node 3yr Subscription E-STU |
JL640AAE | |
|
|
Aruba Fabric Composer |
| |
|
|
Fabric Composer / Single Node Subscription |
| |
|
|
Aruba Fabric Composer Device Management Service Tier 4 Switch 1 year Subscription E-STU |
R7G99AAE | |
|
|
Aruba Fabric Composer Device Management Service Tier 4 Switch 3 year Subscription E-STU |
R7H00AAE | |
|
|
Aruba Fabric Composer Device Management Service Tier 4 Switch 5 year Subscription E-STU |
R7H01AAE | |
|
|
Central |
| |
|
|
Advanced Services / 8XX/9XX/10XXX Switch Advanced Subscriptions |
| |
|
|
Aruba Central 84xx/83xx/64xx/54xx Switch Advanced 1 year Subscription E-STU |
JZ540AAE | |
|
|
Aruba Central 84xx/83xx/64xx/54xx Switch Advanced 3 year Subscription E-STU |
JZ541AAE | |
|
|
Aruba Central 84xx/83xx/64xx/54xx Switch Advanced 5 year Subscription E-STU |
JZ542AAE | |
|
|
Aruba Central 84xx/83xx/64xx/54xx Switch Advanced 7 year Subscription E-STU |
JZ543AAE | |
|
|
Aruba Central 8xx/9xx/10xxx Switch Advanced 10 year Subscription E-STU |
JZ544AAE | |
|
Notes: |
Add the Central Advanced Service Skus to the Aruba Catalog as Standalone: Aruba > Network Management > Central > Advanced |
| |
|
|
Cloud Services / 8XXX Switch Foundation Subscriptions |
| |
|
2 |
Aruba Central 8xxx Switch Foundation 1 year Subscription E-STU |
R3K03AAE | |
|
2 |
Aruba Central 8xxx Switch Foundation 3 year Subscription E-STU |
R3K04AAE | |
|
2 |
Aruba Central 8xxx Switch Foundation 5 year Subscription E-STU |
R3K05AAE | |
|
2 |
Aruba Central 8xxx Switch Foundation 7 year Subscription E-STU |
R3K06AAE | |
|
2 |
Aruba Central 8xxx Switch Foundation 10 year Subscription E-STU |
R3K07AAE | |
|
|
On-Prem Services / 8XXX Switch Foundation Subscriptions |
| |
|
3 |
Aruba Central On-Premises 8xxx Switch Foundation 1 year Subscription E-STU |
R6U88AAE | |
|
3 |
Aruba Central On-Premises 8xxx Switch Foundation 3 year Subscription E-STU |
R6U89AAE | |
|
3 |
Aruba Central On-Premises 8xxx Switch Foundation 5 year Subscription E-STU |
R6U90AAE | |
|
3 |
Aruba Central On-Premises 8xxx Switch Foundation 7 year Subscription E-STU |
R6U91AAE | |
|
3 |
Aruba Central On-Premises 8xxx Switch Foundation 10 year Subscription E-STU |
R6U92AAE | |
|
|
On-Prem Services / 8XXX/9XXX/10XXX Switch Advanced Subscriptions |
| |
|
3 |
Aruba Central On-Premises 8xx/9xx/10xxx Switch Advanced 7 year Subscription E-STU |
R6V08AAE | |
|
3 |
Aruba Central On-Premises 8xx/9xx/10xxx Switch Advanced 5 year Subscription E-STU |
R6V09AAE | |
|
3 |
Aruba Central On-Premises 8xx/9xx/10xxx Switch Advanced 3 year Subscription E-STU |
R6V10AAE | |
|
3 |
Aruba Central On-Premises 8xx/9xx/10xxx Switch Advanced 1 year Subscription E-STU |
R6V11AAE | |
|
3 |
Aruba Central On-Premises 8xx/9xx/10xxx Switch Advanced 10 year Subscription E-STU |
R6V12AAE | |
|
|
Configuration Rules |
| |
|
Rule # |
Description |
SKU | |
|
2 |
Add the Central Cloud Skus to the Aruba Catalog as Standalone: |
| |
|
3 |
Add the Central On-Prem Skus to the Aruba Catalog as Standalone: |
| |
|
| |||
|
As-a-Service |
| ||
|
|
Central |
| |
|
|
Cloud Services / 8XXX Switch Foundation Subscriptions |
| |
|
2 |
Aruba Central 84xx/83xx/64xx/54xx Switch Chassis Foundation 1-year Subscription SaaS |
R3K03AAS | |
|
2 |
Aruba Central 84xx/83xx/64xx/54xx Switch Chassis Foundation 3-year Subscription SaaS |
R3K04AAS | |
|
2 |
Aruba Central 84xx/83xx/64xx/54xx Switch Chassis Foundation 5-year Subscription SaaS |
R3K05AAS | |
|
2 |
Aruba Central 84xx/83xx/64xx/54xx Switch Chassis Foundation 7-year Subscription SaaS |
R3K06AAS | |
|
2 |
Aruba Central 84xx/83xx/64xx/54xx Switch Chassis Foundation 10-year Subscription SaaS |
R3K07AAS | |
|
|
Configuration Rules |
| |
|
Rules # |
Description |
SKU | |
|
2 |
Add the Central Cloud Skus to the Aruba Catalog as Standalone: |
| |
|
| |||
Technical Specifications
|
Model Specifications |
|
Table 1 |
|
|
Aruba 8360-32Y4C MACsec Port to Power 3 Fans 2 Power Supplies [JL700A] |
Aruba 8360-32Y4C MACsec Power to Port 3 Fans 2 Power Supplies [JL701A] |
Aruba 8360-16Y2C Port to Power 3 Fans 2 Power Supplies [JL702A] |
Aruba 8360-16Y2C Power to Port 3 Fans 2 Power Supplies [JL703A] |
|
I/O ports and slots | ||||
|
|
28 ports of 1GbE/10GbE/25GbE (SFP/SFP+/SFP28) |
16 ports of 1GbE/10GbE/25GbE (SFP/SFP+/SFP28) | ||
|
Additional ports and slots | ||||
|
Power Supplies |
2 field-replaceable and hot-swappable power supplies1 | |||
|
Fans |
3 field-replaceable and hot-swappable fans2 | |||
|
Management |
RJ-45 serial and USB-C console; RJ-45 Ethernet port; USB-Type A | |||
|
Notes: 1 Bundles include the 2 power supplies (2xJL600A in JL700A & JL702A and 2xJL712A in JL701A & JL703A) 2 Bundles include the 3 fans (3xJL714A in JL700A & JL702A and 3xJL715A in JL701A & JL703A) |
| ||
|
Physical characteristics | |||
|
Physical Dimensions (HxWxD) |
1.73in x 17.4in x 16.0in 44.0mm x 442.5mm x 406.4 | ||
|
Full configuration weight |
18.05 lb 8.19 kg |
17.00 lb (estim.) 7.71 kg (estim.) | |
|
Reliability | |||
|
MTBF |
305,025 hrs. |
422,884 hrs. | |
|
Memory and Processor | |||
|
CPU |
1.8 GHz 4-core 64-bit | ||
|
Memory, Drive and Flash |
16GB RAM, 32GB Flash/Storage | ||
|
Packet Buffer |
32MB | ||
|
Performance | |||
|
Switching Capacity |
2.4Tbps |
1.2Tbps | |
|
MAC Address Table Size |
212,992 | ||
|
IPv4 Host Table |
145,780 | ||
|
IPv6 Host Table |
145,780 | ||
|
IPv4 Unicast Routes |
606,977 | ||
|
IPv6 Unicast Routes |
630,784 | ||
|
Maximum Number of Access Control List (ACL) Entries Ingress |
IPv4 65,536, IPv6 16,384, MAC 65,536 | ||
|
Maximum Number of Access Control List (ACL) Entries Egress |
IPv4 8,192, IPv6 2,048, MAC 8,192 | ||
|
Maximum VLANs |
4,094 | ||
|
IGMP Groups |
7,000 | ||
|
MLD Groups |
7,000 | ||
|
IPv4 Multicast Routes |
7,000 | ||
|
IPv6 Multicast Routes |
7,000 | ||
|
|
Aruba 8360-32Y4C MACsec Port to Power 3 Fans 2 Power Supplies [JL700A] |
Aruba 8360-32Y4C MACsec Power to Port 3 Fans 2 Power Supplies [JL701A] |
Aruba 8360-16Y2C Port to Power 3 Fans 2 Power Supplies [JL702A] |
Aruba 8360-16Y2C Power to Port 3 Fans 2 Power Supplies [JL703A] |
|
Environment | ||||
|
Operating Temperature3 |
32°F to 113°F (0°C to 45°C) up to 5000 ft |
32°F to 104°F (0°C to 40°C) up to 5000 ft |
32°F to 113°F (0°C to 45°C) up to 5000 ft |
32°F to 104°F (0°C to 40°C) up to 5000 ft |
|
Operating Relative Humidity |
15% to 95% relative humidity at 113°F (45°C), non-condensing |
15% to 95% relative humidity at 104°F (40°C), non-condensing |
15% to 95% relative humidity at 113°F (45°C), non-condensing |
15% to 95% relative humidity at 104°F (40°C), non-condensing |
|
Non-Operating Temperature |
-40°C to 70°C (-40°F to 158°F) up to 4.6km (15,000 ft.) | |||
|
Non-Operating/Storage Relative Humidity |
15% to 95% at 149°F (65°C) non-condensing | |||
|
Maximum Operating Altitude |
Up to 10,000ft (3.048Km) | |||
|
Maximum Non-Operating Altitude |
Up to 15,000ft (4.6Km) | |||
|
Primary Airflow |
Port to Power (PrtToPwr) |
Power to Port (PwrToPrt) |
Port to Power (PrtToPwr) |
Power to Port (PwrToPrt) |
|
BTU/hr |
1,450 |
1,450 |
1,109 |
1,109 |
|
Acoustic Sound Pressure and Sound Power4 |
LWAd = 6.3 Bel LpAm (Bystander) = 45.4 dB |
LWAd = 6.4 Bel LpAm (Bystander) = 45.8 dB |
LWAd = 6.0 Bel LpAm (Bystander) = 42.8 dB |
LWAd = 6.8 Bel LpAm (Bystander) = 49.5 dB |
|
Notes: 3 Derate -1°C for every 1000 ft from 5000 ft to 10000 ft regardless of airflow direction 4 Acoustics measured in 23°C semi-anechoic chamber with a loading of 30% traffic on all ports. Measured in accordance with ISO 7779. Declared in accordance with ISO 9296. Values presented are the Declared A-Weighted Sound Power Level (LWAd) and the mean Bystander A-Weighted Sound Pressure Level (LpAm). |
|
Electrical Characteristics | ||||
|
Frequency |
47-63 Hz | |||
|
AC Voltage |
7.1A for 100-127VAC 3.4A for 200-240VAC | |||
|
Current | ||||
|
Power Consumption |
Max: 425W |
Max: 325W | ||
|
Idle: 120W |
Idle: 110W | |||
|
Regulatory | ||||
|
Compliance |
Products comply with CE Markings according to directives 2014/30/EU (EMC) and 2014/35/EU (Safety) | |||
|
RoHS |
EN 50581:2012 | |||
|
Safety | ||||
|
EU |
EN 60950-1:2006 + A11:2009 + A1:2010 + A12:2011 + A2:2013 EN62368-1, Ed.2:2014 | |||
|
North America |
UL/CUL 69050-1: 2nd Edition UL/CUL 63268-1:2014 UL60950-1, CSA 22.2 No 60950-1 | |||
|
Worldwide |
IEC60950-1:2005 Ed.2 + Am 1:2009 + A2:2013 IEC 62368-1:2014 | |||
|
|
Aruba 8360-32Y4C MACsec Port to Power 3 Fans 2 Power Supplies [JL700A] |
Aruba 8360-32Y4C MACsec Power to Port 3 Fans 2 Power Supplies [JL701A] |
Aruba 8360-16Y2C Port to Power 3 Fans 2 Power Supplies [JL702A] |
Aruba 8360-16Y2C Power to Port 3 Fans 2 Power Supplies [JL703A] |
|
EMC | ||||
|
Emissions |
EN 55024:2010+A2016/CISPR24:2015 EN55032:2015/CISPR 32, Class A EN55035:2017/CISPR 35 EN61000-3-2:2014, Class A EN61000-3-3:2013 FCC CFR 47 Part 15:2010, Class A ICES-003, Class A VCCI Class A CNS 13438 CNS 13438 Class A | |||
|
Laser | ||||
|
|
EN60825-1:2014 / IEC 60825-1: 2014 Class 1 Class 1 Laser Products / Laser Klasse 1 | |||
|
Mounting | ||||
|
|
Mounts in an EIA standard 19-inch rack or other equipment cabinet; horizontal surface mounting only; 2-post and 4-post mounting options available5; air baffle available for 4-post power to port airflow deployment available separately | |||
|
Notes: 5 Rack mounting kit must be ordered separately. |
|
|
|
Table 2 |
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 Power Supplies [JL706A] |
Aruba 8360-48XT4C Power to Port 3 Fans 2 Power Supplies [JL707A] |
|
I/O ports and slots | ||
|
|
48 ports of 100M/1GbE/10GBASE-T 4 ports of 40GbE/100GbE (QSFP+/QSFP28) | |
|
Additional ports and slots | ||
|
Power Supplies |
2 field-replaceable and hot-swappable power supplies1 | |
|
Fans |
3 field-replaceable and hot-swappable fans2 | |
|
Management |
RJ-45 serial and USB-C console; RJ-45 Ethernet port; USB-Type A | |
|
Notes: 1 Bundles include the 2 power supplies (2xJL600A in JL706A and 2xJL712A in JL707A) 2 Bundles JL706A and JL707A include the 3 fans (3xJL714A in JL706A and 3xJL715A in JL707A and JL710A) | ||
|
Physical characteristics | ||
|
Physical Dimensions (HxWxD) |
1.73in x 17.4in x 16.0in | |
|
Full configuration weight |
18.85 lb | |
|
Reliability | ||
|
MTBF |
258,020 hrs. | |
|
Memory and Processor | ||
|
CPU |
1.8 GHz 4-core 64-bit | |
|
Memory, Drive and Flash |
16GB RAM, 32GB Flash/Storage | |
|
Packet Buffer |
32MB | |
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 Power Supplies [JL706A] |
Aruba 8360-48XT4C Power to Port 3 Fans 2 Power Supplies [JL707A] |
|
Performance | ||
|
Switching Capacity |
1.76Tbps | |
|
MAC Address Table Size |
212,992 | |
|
IPv4 Host Table |
145,780 | |
|
IPv6 Host Table |
145,780 | |
|
IPv4 Unicast Routes |
606,977 | |
|
IPv6 Unicast Routes |
630,784 | |
|
Maximum Number of Access Control List (ACL) Entries Ingress |
IPv4 65,536, IPv6 16,384, MAC 65,536 | |
|
Maximum Number of Access Control List (ACL) Entries Egress |
IPv4 8,192, IPv6 2,048, MAC 8,192 | |
|
Maximum VLANs |
4,094 | |
|
IGMP Groups |
7,000 | |
|
MLD Groups |
7,000 | |
|
IPv4 Multicast Routes |
7,000 | |
|
IPv6 Multicast Routes |
7,000 | |
|
Environment | ||
|
Operating Temperature3 |
32°F to 113°F (0°C to 45°C) up to 5000 ft |
32°F to 104°F (0°C to 40°C) up to 5000 ft |
|
Operating Relative Humidity |
15% to 95% relative humidity at 113°F (45°C), non-condensing |
15% to 95% relative humidity at 104°F (40°C), non-condensing |
|
Non-Operating Temperature |
-40°C to 70°C (-40°F to 158°F) up to 4.6km (15,000 ft.) | |
|
Non-Operating/Storage Relative Humidity |
15% to 95% at 149°F (65°C) non-condensing | |
|
Maximum Operating Altitude |
Up to 10,000ft (3.048Km) | |
|
Maximum Non-Operating Altitude |
Up to 15,000ft (4.6Km) | |
|
Primary Airflow |
Port to Power (PrtToPwr) |
Power to Port (PwrToPrt) |
|
BTU/hr |
1,706 |
1,706 |
|
Acoustic Sound Pressure and Sound Power4 |
LWAd = 6.7 Bel LpAm (Bystander) = 48.7 dB |
LWAd = 6.5 Bel LpAm (Bystander) = 47.6 dB |
|
Notes: 3 Derate -1°C for every 1000 ft from 5000 ft to 10000 ft regardless of airflow direction 4 Acoustics measured in 23°C semi-anechoic chamber with a loading of 30% traffic on all ports. Measured in accordance with ISO 7779. Declared in accordance with ISO 9296. Values presented are the Declared A-Weighted Sound Power Level (LWAd) and the mean Bystander A-Weighted Sound Pressure Level (LpAm). | ||
|
Electrical Characteristics | ||
|
Frequency |
47-63 Hz | |
|
AC Voltage |
7.1A for 100-127VAC | |
|
Current |
3.4A for 200-240VAC | |
|
Power Consumption |
Max: 500W Idle: 120W | |
|
|
Aruba 8360-48XT4C Port to Power 3 Fans 2 Power Supplies [JL706A] |
Aruba 8360-48XT4C Power to Port 3 Fans 2 Power Supplies [JL707A] |
|
Regulatory | ||
|
Compliance |
Products comply with CE Markings according to directives 2014/30/EU (EMC) and 2014/35/EU (Safety) | |
|
RoHS |
EN 50581:2012 | |
|
Safety | ||
|
EU |
EN 60950-1:2006 + A11:2009 + A1:2010 + A12:2011 + A2:2013 EN62368-1, Ed.2:2014 | |
|
North America |
UL/CUL 69050-1: 2nd Edition UL/CUL 63268-1:2014 UL60950-1, CSA 22.2 No 60950-1 | |
|
Worldwide |
IEC60950-1:2005 Ed.2 + Am 1:2009 + A2:2013 IEC 62368-1:2014 | |
|
EMC | ||
|
Emissions |
EN 55024:2010+A2016/CISPR24:2015 EN55032:2015/CISPR 32, Class A EN55035:2017/CISPR 35 EN61000-3-2:2014, Class A EN61000-3-3:2013 FCC CFR 47 Part 15:2010, Class A ICES-003, Class A VCCI Class A CNS 13438 CNS 13438 Class A | |
|
Laser | ||
|
|
EN60825-1:2014 / IEC 60825-1: 2014 Class 1 Class 1 Laser Products / Laser Klasse 1 | |
|
Mounting | ||
|
|
Mounts in an EIA standard 19-inch rack or other equipment cabinet; horizontal surface mounting only; 2-post and 4-post mounting options available5; air baffle available for 4-post power to port airflow deployment available separately. | |
|
Notes: 5 Rack mounting kit must be ordered separately. | ||
|
|
|
Table 3 |
|
|
Aruba 8360-12C Port to Power 3 Fans 2 Power Supplies [JL708A] |
Aruba 8360-12C Power to Port 3 Fans 2 Power Supplies [JL709A] |
Aruba 8360-24XF2C Port to Power 3 Fans 2 Power Supplies [JL710A] |
Aruba 8360-24XF2C Power to Port 3 Fans 2 Power Supplies [JL711A] |
|
I/O ports and slots | ||||
|
|
12 ports of 40GbE/100GbE (QSFP+/QSFP28) |
24 ports of 1GbE/10GbE (SFP/SFP+) | ||
|
Additional ports and slots | ||||
|
Power Supplies |
2 field-replaceable and hot-swappable power supplies1 | |||
|
Fans |
3 field-replaceable and hot-swappable fans2 | |||
|
Management |
RJ-45 serial and USB-C console; RJ-45 Ethernet port; USB-Type A | |||
|
Notes: 1Bundles include the 2 power supplies (2xJL600A in JL708A & JL710A and 2xJL712A in JL709A & JL711A) 2Bundles include the 3 fans (3xJL714A in JL708A & JL710A and 3xJL715A in JL709A & JL710A) | ||||
|
|
Aruba 8360-12C Port to Power 3 Fans 2 Power Supplies [JL708A] |
Aruba 8360-12C Power to Port 3 Fans 2 Power Supplies [JL709A] |
Aruba 8360-24XF2C Port to Power 3 Fans 2 Power Supplies [JL710A] |
Aruba 8360-24XF2C Power to Port 3 Fans 2 Power Supplies [JL711A] | |
|
Physical characteristics | |||||
|
Physical Dimensions (HxWxD) |
1.73in x 17.4in x 16.0in | ||||
|
Full configuration weight |
17.65 lb |
17.8 lb | |||
|
Reliability | |||||
|
MTBF |
509,714 hrs. |
375,668 hrs. | |||
|
Memory and Processor | |||||
|
CPU |
1.8 GHz 4-core 64-bit | ||||
|
Memory, Drive and Flash |
16GB RAM, 32GB Flash/Storage | ||||
|
Packet Buffer |
32MB | ||||
|
Performance | |||||
|
Switching Capacity |
2.4Tbps |
880Gbps | |||
|
MAC Address Table Size |
212,992 |
|
IPv4 Host Table |
145,780 |
|
IPv6 Host Table |
145,780 |
|
IPv4 Unicast Routes |
606,977 |
|
IPv6 Unicast Routes |
630,784 |
|
Maximum Number of Access Control List (ACL) Entries Ingress |
IPv4 65,536, IPv6 16,384, MAC 65,536 |
|
Maximum Number of Access Control List (ACL) Entries Egress |
IPv4 8,192, IPv6 2,048, MAC 8,192 |
|
Maximum VLANs |
4,094 |
|
IGMP Groups |
7,000 |
|
MLD Groups |
7,000 |
|
IPv4 Multicast Routes |
7,000 |
|
IPv6 Multicast Routes |
7,000 |
|
Environment | ||||
|
Operating Temperature3 |
32°F to 113°F (0°C to 45°C) up to 5000 ft |
32°F to 104°F (0°C to 40°C) up to 5000 ft |
32°F to 113°F (0°C to 45°C) up to 5000 ft |
32°F to 104°F (0°C to 40°C) up to 5000 ft |
|
Operating Relative Humidity |
15% to 95% relative humidity at 113°F (45°C), non-condensing |
15% to 95% relative humidity at 104°F (40°C), non-condensing |
15% to 95% relative humidity at 113°F (45°C), non-condensing |
15% to 95% relative humidity at 104°F (40°C), non-condensing |
|
Non-Operating Temperature |
-40°C to 70°C (-40°F to 158°F) up to 4.6km (15,000 ft.) | |||
|
Non-Operating/Storage Relative Humidity |
15% to 95% at 149°F (65°C) non-condensing | |||
|
Maximum Operating Altitude |
Up to 10,000ft (3.048Km) | |||
|
Maximum Non-Operating Altitude |
Up to 15,000ft (4.6Km) | |||
|
Primary Airflow |
Port to Power (PrtToPwr) |
Power to Port (PwrToPrt) |
Port to Power (PrtToPwr) |
Power to Port (PwrToPrt) |
|
BTU/hr |
1,280 |
1,280 |
1,280 |
1,280 |
|
|
Aruba 8360-12C Port to Power 3 Fans 2 Power Supplies [JL708A] |
Aruba 8360-12C Power to Port 3 Fans 2 Power Supplies [JL709A] |
Aruba 8360-24XF2C Port to Power 3 Fans 2 Power Supplies [JL710A] |
Aruba 8360-24XF2C Power to Port 3 Fans 2 Power Supplies [JL711A] |
|
Acoustic Sound Pressure and Sound Power4 |
LWAd = 6.3 Bel LpAm (Bystander) = 46.7 dB |
LWAd = 6.2 Bel LpAm (Bystander) = 45.3 dB |
LWAd = 6.0 Bel LpAm (Bystander) = 42.6 dB |
LWAd = 6.2 Bel LpAm (Bystander) = 44.4 dB |
|
Notes: 3 Derate -1°C for every 1000 ft from 5000 ft to 10000 ft regardless of airflow direction 4 Acoustics measured in 23°C semi-anechoic chamber with a loading of 30% traffic on all ports. Measured in accordance with ISO 7779. Declared in accordance with ISO 9296. Values presented are the Declared A-Weighted Sound Power Level (LWAd) and the mean Bystander A-Weighted Sound Pressure Level (LpAm). |
|
Electrical Characteristics | ||
|
Frequency |
47-63 Hz | |
|
AC Voltage |
7.1A for 100-127VAC 3.4A for 200-240VAC | |
|
Current | ||
|
Power Consumption |
Max: 375W |
Max: 375W |
|
Idle: 120W |
Idle: 120W | |
|
Regulatory | ||
|
Compliance |
Products comply with CE Markings according to directives 2014/30/EU (EMC) and 2014/35/EU (Safety) | |
|
RoHS |
EN 50581:2012 | |
|
Safety | ||
|
EU |
EN 60950-1:2006 + A11:2009 + A1:2010 + A12:2011 + A2:2013 EN62368-1, Ed.2:2014 | |
|
North America |
UL/CUL 69050-1: 2nd Edition UL/CUL 63268-1:2014 UL60950-1, CSA 22.2 No 60950-1 | |
|
Worldwide |
IEC60950-1:2005 Ed.2 + Am 1:2009 + A2:2013 IEC 62368-1:2014 | |
|
EMC | ||
|
Emissions |
EN 55024:2010+A2016/CISPR24:2015 EN55032:2015/CISPR 32, Class A EN55035:2017/CISPR 35 EN61000-3-2:2014, Class A EN61000-3-3:2013 FCC CFR 47 Part 15:2010, Class A ICES-003, Class A VCCI Class A CNS 13438 CNS 13438 Class A | |
|
Laser | ||
|
|
EN60825-1:2014 / IEC 60825-1: 2014 Class 1 Class 1 Laser Products / Laser Klasse 1 | |
|
Mounting | ||
|
|
Mounts in an EIA standard 19-inch rack or other equipment cabinet; horizontal surface mounting only; 2-post and 4-post mounting options available5; air baffle available for 4-post power to port airflow deployment available separately | |
|
Notes: 5 Rack mounting kit must be ordered separately. |
|
|
|
Standards and protocols Applies to all products in series
|
|
|
Summary of Changes
|
Date |
Version History |
Action |
Description of Change |
|
06-Feb-2023 |
Version 15 |
Changed |
Standard Features and Configuration Information sections were updated. |
|
05-Dec-2022 |
Version 14 |
Changed |
Configuration Information section was updated and new SKUs were added. |
|
07-Nov-2022 |
Version 13 |
Changed |
Standard Features and Configuration Information sections were updated. |
|
03-Oct-2022 |
Version 12 |
Changed |
Configuration Information section was updated. |
|
06-Jun-2022 |
Version 11 |
Changed |
Standard Features and Configuration Information sections were updated. |
|
02-May-2022 |
Version 10 |
Changed |
Configuration Information section was updated. |
|
04-Apr-2022 |
Version 9 |
Changed |
Configuration Information section was updated. |
|
07-Mar-2022 |
Version 8 |
Changed |
Configuration Information section was updated. New SKUs were also added in that section. |
|
07-Sep-2021 |
Version 7 |
Changed |
Overview, Standard Features, and Configuration Information sections were updated. |
|
07-Jun-2021 |
Version 6 |
Changed |
Configuration Information section was updated, and SKUs were added. |
|
08-Mar-2021 |
Version 5 |
Changed |
SKUs added in Configuration Information section, and Standard Features section was updated. |
|
01-Feb-2021 |
Version 4 |
Changed |
Configuration Information section was updated, and SKUs were added. |
|
07-Dec-2020 |
Version 3 |
Changed |
Configuration Information section was updated. |
|
16-Nov-2020 |
Version 2 |
Changed |
Overview section was updated. |
|
02-Nov-2020 |
Version 1 |
New |
New QuickSpecs |
Copyright
|
|
| |||||
|
|
|
© Copyright 2023 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
a00094643enw - 16627 - Worldwide - V15 - 06-February-2023 |































