HPE Storage Switch M-series SN2010M: технические характеристики и документация
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Shape the Future of QuickSpecs - Your Input Matters | |
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HPE Storage Switch M-series SN2010M QuickSpecs
With NVIDIA Cumulus® Linux HPE M-Series with NVIDIA Cumulus® Linux family of Ethernet switches are capable of addressing today's data center's complex networking requirements, growth, and expansion and are perfect for Top-Of-Rack (TOR) deployments and optimized for virtualized environments, hyperconverged infrastructure, and storage deployments. HPE M-Series Ethernet switches give you the right network bandwidth with consistent zero packet loss performance for high-performance and storage workloads. |
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With an increasing need to access data faster and accommodate growing workloads, rising levels of east-west traffic, and new storage arrays based on flash storage technologies, a high bandwidth, low-latency, zero packet loss network becomes paramount. The HPE Storage Switch M-series SN2010M offer a mix of 1/10/25 GbE and 100 GbE for the right network bandwidth for your applications with consistent performance for high-performance and storage workloads. Delivering the highest feature set at the right price allows you to get the most out of your Ethernet infrastructure to best support a variety of use cases, including media and entertainment, streaming video, financial services industry, virtualized data centers, and next generation storage, including software-defined storage and NVMe® flash. HPE Storage Switch M-series SN2010M are available with factory integrated NVIDIA Cumulus® Linux for immediate deployment. With HPE Storage Switch M-series SN2010M, you can: - Optimize Storage- modernize your network to eliminate limitations and bottlenecks that can be caused by the addition of flash storage. - Enjoy efficient network performance- avoid packet loss, provide predictable performance with line-rate packet delivery across all ports and all packet sizes - Realize breakthrough economics- make better use of your data center resources with the highest port density per rack unit and the industry's lowest power consumption. - Accelerate business innovation- utilize 1/10/40 Gbps Ethernet connectivity for existing workloads and enhance connectivity utilizing built-in 25/100 Gbps capabilities to respond quickly to business needs and to stay on the leading edge of Ethernet switching technology. The HPE Storage Switch M-series SN2010M provides a high density, side-by-side 1/10/25/100 GbE switching solution which scales up to 34 ports per switch with QSFP28 breakout cables for up to 16 additional 1/10/25 Gbps ports in single Rack Unit (1RU) for the growing demands of today's storage, database, and data center environments. HPE Storage Switch M-series SN2010M carries a unique design to accommodate the highest rack performance. Its design allows side-by-side placement of two switches in a single, 1RU slot of a 19" rack, delivering high availability to the hosts. Available with 18 SFP28/SFP+ slots and 4 QSFP28/QSFP+ slots, each SN2010M carries a switching capacity of 1.7 TB /s with 1.26Bpps processing capacity when running 18 ports at 25 GbE and 4 ports at 100 GbE, and enables 3.4 TB /s and 2.52Bpps when two units are deployed side-by-side in a 1 RU space. |
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HPE Storage Switch M-series SN2010M Ethernet switches are based on the high-performance 25 GbE NRZ encoding capable Spectrum-1 ASIC and are ideally suited for both top-of-rack leaf and fixed configurations with capabilities: - Ethernet port speeds from 1 Gbps to 100 Gbps - 4 100/40 GbE QSFP28 ports and 18 x1/10/25 GbE SFP28 ports
- 16 MB of fully-shared packet buffering - Feature-rich layer 2 and layer 3 forwarding - Ultra-low latency with true cut through performance, Zero packet loss performance with NVMe TCP and RoCEV2 RDMA, DCBX, PFC, ECN support |
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Models
HPE Storage Switch M-series SN2010M Ethernet Switch Model | |
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Description |
SKU |
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HPE 25 GbE 18SFP28 4QSFP28 Power to Connector Airflow Half Width Switch SN2010M with NVIDIA Cumulus |
S2T75A |
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- HPE 18SFP28 4QSFP28 P2C Sw SN2010M w/NVD |
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HPE SN2100M Rack Installation Kit |
Q2F25A |
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Notes: - Only 1 Rack Mount kit is needed for 2x SN2010M switches within the same rack - HPE switch SKUs with factory installed NVIDIA Cumulus® Linux cannot be converted to HPE ONYX or ONIE switch SKUS - For HPE Storage Switch M-series SN2010M models Q9E63A, R0P77A, and R0P78A refer to QuickSpecs Version 17 | |
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HPE Storage Switch M-series 2 x SN2010M Ethernet Switch with Q2F25A Rack Mount Kit | |
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HPE Storage Switch M-series SN2010M (18 x SFP28 + 4 x QSFP28) Front View | |||
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Item |
Description |
Item |
Description |
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1. |
MGMT0 100 Mb/s to 1 Gb/s Port |
5. |
Password Reset Button - refer to the Single User Mode Boot Recovery section in the Cumulus Linux User Guide |
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2. |
IOIOI RS232 Serial Console Port: 115200 BAUD |
6. |
Status LEDs (System; Fan; Power Supply 1, 2; Unit Identifier) |
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3. |
Inventory Information Pull-out Tab |
7. |
QSFP28/QSFP Ports (19-22); split x4 supported |
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4. |
USB Type A 2.0 compliant (USB 1.0 not supported) |
8. |
SFP28/SFP Ports (1-18) |
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HPE Storage Switch M-series SN2010M (18 x SFP28 + 4 x QSFP28) Rear View | |||
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Description | ||
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1. |
Power Supply and Fans (non-replaceable) | ||
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Key Features and Benefits |
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- The HPE Storage Switch M-series SN2010M Ethernet switch is a Half-width 10/25 GbE and 40/100 GbE Ethernet Switch ideal for Primary, Secondary storage and Hyperconverged Infrastructures. The SN2010 switch is the ideal top of rack (ToR) solution packed with 18 ports of 10/25 GbE and 4 QSFP28 ports supporting 40/100 GbE and which can breakout to 4 10 GbE or 25 GbE ports. - HPE Storage Switch M-series SN2010M introduces low latency for 10/25 GbE and 40/100 GbE switching, features a robust implementation of data, control and management planes, and offers the most compact form factor and lowest power consumption. - HPE Storage Switch M-series SN2010M provides ultra-low latency of under 300ns port-to-port. This is advantageous for flash storage which has moved latency bottlenecks from storage access to the network, as well as for the burst nature of today's software defined and cloud data centers traffic. - The buffering architecture of the HPE Storage Switch M-series SN2010M provides superior micro burst absorption for applications that burst data at random intervals. - The HPE Storage Switch M-series SN2010M provides a flexible combination of ports, allowing for efficiency, simplifying scale-out environments, and saving on total cost of ownership. - Optimized port configuration enables high-speed rack connectivity to the server at 1/10 GbE or 25 GbE speeds with 40/100 GbE uplink ports that allow for a variety of blocking ratios that suit specific application requirements. - HPE Storage Switch M-series SN2010M with its optimization for RoCE, full buffer utilization, and zero packet loss combined into a small form factor with low latency make it the ideal switch for ESF (Ethernet Storage Fabric). - The HPE Storage Switch M-series SN2010M provide port density in a single rack unit, allowing for higher capacity and efficiency, simplifying scale-out environments and saving on total cost of ownership. - Its unique half-width form factors and port counts, these Ethernet switches allow for two SN2010 units to be deployed side-by-side allowing for increased density, making it the ideal top-of-rack switch. - Designed to use less power than competing switches, providing one of the industry's lowest power draws, producing less heat than competing products allowing reduced OpEx cost. - SN2010 is the best fit with a mix of 10/25 GbE and 40/100 GbE ports that are all designed for zero packet loss. Distributed storage, hyperconverged, analytic and database solutions require the ability to scale out without compromising performance or high availability. - High throughput, low latency and active-active network switching capabilities are crucial when deploying clustered servers and storage. HPE Storage Switch M-series SN2010M delivers connectivity to many clients plus 40/100 GbE connectivity to selected servers, storage systems or for network uplinks, and all with low latency. |
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NVIDIA Cumulus® Linux
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Cumulus Linux is a powerful open network operating system enabling advanced automation, customization and scalability using web-scale principles like the world's largest data centers. It accelerates networking functions and provides choice from an extensive list of supported switch models including NVIDIA SpectrumTM based switches. Cumulus Linux was built for automation, scalability and flexibility, allowing you to build data center and campus networks that ideally suits your business needs. Cumulus Linux is the only open network OS that allows you to build affordable and efficient network operations like the world's largest data center operators, unlocking webscale networking for businesses of all sizes.
The Ideal Solution for Your Network Challenges, Cumulus Linux enables modern data center architectures, while providing a transition path for traditional data center architectures, with support for layer 2, layer 3, and overlay networks. This open approach enables a wide range of solutions. Centralized, remote management of AI deployments enables over-the-air software updates, remote debugging, and system monitoring, as well as other features like self-healing systems. These remote management features make maintenance and upkeep easier, and AI more accessible and practical for locations that are difficult to access or far from headquarters. This results in faster, more comprehensive insights that can drive real-time decisions. |
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Deployment Models: L3 network, L2 network, Clos, Out-of-band management, Overlay network
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Use cases: Containers, Big data, Private cloud, Network virtualization, DevOps / automation, Monitoring and analytics, Hyperconverged infrastructure |
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Key Features
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Unnumbered Interfaces: Automation gets even easier with this simplified Internet Protocol (IP) approach for Border Gateway Protocol (BGP) and Open Shortest Path First (OSPF). All you need is one IP template for leaf nodes and one for spine nodes. BGP Unnumbered, the only difference between a BGP unnumbered configuration and the BGP numbered configuration is that the BGP neighbor is as an interface (instead of an IP address). There is no need to configure an IP address on the interface between the two peers on each side.
Redistribute Neighbor (RDNBR): Get virtual machine (VM) and host mobility by plugging your server into any RDNBR switch and making it layer-3 discoverable on the fabric. If you need to move the server, there's no need to reconfigure.
Prescriptive Topology Manager (PTM): Efficiently go from whiteboard to physical cable. With PTM, you can program your data center to verify connections and resolve issues faster.
Virtual Routing and Forwarding: Run multiple network paths without the need for multiple switches, giving you traffic isolation and network segmentation for multiple devices.
Ethernet Virtual Private Networks (EVPN): The most advanced capabilities available for EVPN allow legacy layer-2 applications to operate over next-generation layer-3 networks.
NVIDIA User Experience (NVUE): A full command-line interface (CLI) object model of Cumulus Linux enables advanced programmability, extensibility, and usability.
Digital twins: NVIDIA Air makes physical deployments seamless by validating and simplifying deployments and upgrades in a virtual network. |
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NVIDIA Cumulus® Linux Interface |
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User Interface: Command Line
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With the NVIDIA User Experience (NVUE) object-oriented management tool, Cumulus Linux customers can go beyond the CLI and unify their network management with the rest of the data center management. NVUE enables any APIs to tie into NOS management, including REST, gRPC, RestConf, NetConf, and OpenConfig. Additionally, NVUE is Git-based, enabling Diff, revert, apply, branch, and stash behaviors. NVUE's configuration is simple: one YAML file ties all Linux configurations together, making it easy to copy configurations from switch to switch.
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Operating System Install and Upgrade - Server-style upgrade/patching across minor releases, server-style process restart/termination - Support for zero touch OS installation using ONIE loaded on industry-standard switches - Standard mechanism for authentication, authorization, and accounting with TACACS+
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Extensibility - Cumulus Linux works with any language supported in Linux today, including scripting with Bash, Perl, Python, and Ruby
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Hardware Management - The switch hardware abstraction layer accelerates Linux kernel networking constructs in hardware, including the routing table, ARP table, bridge FOB, IP/EB tables, bonds, VLANs, and VXLAN bridges - Hardware management also includes jumbo frames support and environmental management - Forwarding table profiles on the ASIC provide flexible partitioning of resources
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Layer 3 Features - IPv4/v6 routing suite including OSPFv2, OSPFv3, and BGPv4/v6 - RDMA over Converged Ethernet (RoCEv2) support for Layer 2 and Layer 3 - Virtual routing and forwarding (VRF) and VRF route leaking - Equal-cost multi-path (ECMP) and ECMP resilient hashing for IPv4 and IPv6 traffic - Bidirectional forwarding detection (BFD) across all platform and interface types, IPv4 and IPv6, BGP and OSPF, VXLAN, BGP conditional route advertisement - Protocol-independent multicast (PIM, PIM-SM, PIM-SSM) - Policy-based routing - Generic routing encapsulation (GRE) tunneling - Precision time protocol (PTP) Boundary Clock - VNI scaling: supports 6 bridges with up to 1,000 VNls - GTP Hashing - Adaptive Routing with RoCEv2
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Layer 2 features - Bridge management with STP (IEEE 802.1d). RSTP (IEEE 802.1 W), PVRST, PVST, bridge assurance, BPDU guard, and BPDU filter - VLANs. VLAN trunks (IEEE 802.1q). LACP (IEEE 802.3adl. LACP bypass, unicast/broadcast storm control, LLDP, CDP, IPv6 neighbor discovery, and IPv6 route advertisement - MLAG (cladg daemon) - IGMPv2/v3 snooping, MLDv1/v2 snooping, Optimized Multicast Flooding (OMF) - Virtual router redundancy (VRR - active-active first hop redundancy protocol) - LLDP DCB IEEE TLVs
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Network Virtualization - VXLAN support - VXLAN Routing - symmetric and asymmetric - L2 gateway services integration with VMware NSX - VXLAN head end replication - VXLAN active-active bridging with MLAG - Controller-less network virtualization with EVPN
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Management - Object-oriented APl-compatible switch management with NVIDIA User Experience (NVUE) - ISSU: in-service software upgrades - Warm boot on bonds - Native Linux management tools, such as OpenSSH, SCP, and FTPS - Automated install and provisioning: zero touch install and zero touch provisioning - Management VRF - DHCP and v4/v6 DHCP relays - Authentication with LDAP and authorization with sudo NTP - Interface configuration management (ifupdown2) - Advanced management/orchestration through third-party add-on packages - Snapshot and rollback of the entire system to eliminate risk from system updates |
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Monitoring and Troubleshooting - Monitor traffic patterns and preemptive capacity planning with buffer monitoring
- Troubleshooting with dnsutils, syslog, reachability tools, hardware inventory, log files, server-style filesystem, and Spectrum ASIC commands - The cl-support script generates a compressed archive file (.txz) of useful information for troubleshooting. The system either creates the archive file automatically or you can create the archive file manually. The system creates the cl-support archive file automatically for the following reasons:
- sFlow monitoring for system statistics and network traffic - The NVIDIA Firmware Tool (MFT) mlxlink tool is integrated into Cumulus and is used to check and debug link status and related issues. The tool can be used on different links and cables (passive, active, transceiver and backplane). - What Just Happened (WJH) provides real time visibility into network problems and has two components:
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Security - Access control lists (ACLs) L2-L4 classification through IP/EP tables and CPU protection through hardware enforced ACL-based rate limiting DoS control - Authenticate and authorize attached devices with 802.1x - Kernel Address Space Randomization
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QoS - Link PAUSE - Classification based on Class of Service (CoS) (IEEE 802.1p) or DSCP (queuing, scheduling-DWRR and Strict Priority - and buffer allocation) - Ingress ACL-based classification/policing - Priority flow control and explicit congestion notification (ECN) - Dynamic buffer configuration as default |
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Cumulus VX and NVIDIA AIR - Getting started with Cumulus Linux is easy. Customers can explore, test, and prototype the technology.
- Download the free NVIDIA Cumulus VX appliance, supported virtual appliance to test and stage production rollouts
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Third-party Packages - Orchestration: Ansible, CFEngine, Chef, and Puppet - Monitoring: Collectd, Ganglia, Graphite, Nagios/lcinga, and NetSNMP - You can use Cumulus Linux to run the Docker container platform. You can install Docker Engine directly on a Cumulus Linux switch and run Docker containers natively on the switch. |
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Warranty (3-3-3) Hardware Warranty: 3-year parts, 3-year on-site (standard business hours, next business day response), and 3-year labor. Notes: The hardware warranty covers firmware. For extended hardware support and installation information, please see the "Services and Support" Section. |
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HPE Services No matter where you are in your transformation journey, you can count on HPE Services to deliver the expertise you need when, where and how you need it. From planning to deployment, ongoing operations and beyond, our experts can help you realize your digital ambitions. https://www.HPE.com/services
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Consulting services No matter where you are in your journey to hybrid cloud, experts can help you map out your next steps. From determining what workloads should live where, to handling governance and compliance, to managing costs, our experts can help you optimize your operations. https://www.HPE.com/services/consulting
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HPE Managed Services HPE runs your IT operations, providing services that monitor, operate, and optimize your infrastructure and applications, delivered consistently and globally to give you unified control and let you focus on innovation. HPE Managed Services | HPE
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Operational services Optimize your entire IT environment and drive innovation. Manage day-to-day IT operational tasks while freeing up valuable time and resources. Meet service-level targets and business objectives with features designed to drive better business outcomes. https://www.HPE.com/services/operational |
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Recommended Services
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https://www.HPE.com/services/techcare
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HPE Complete Care Service HPE Complete Care Service is a modular, edge-to-cloud IT environment service designed to help optimize your entire IT environment and achieve agreed upon IT outcomes and business goals through a personalized experience. All delivered by an assigned team of HPE Services experts. HPE Complete Care Service provides: - A complete coverage approach -- edge to cloud - An assigned HPE team - Modular and fully personalized engagement - Enhanced Incident Management experience with priority access - Digitally enabled and AI driven customer experience https://www.HPE.com/services/completecare |
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Other related services from HPE Services
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HPE Hardware Installation Provides for the basic hardware installation of HPE branded M-Series ONIE switches to assist you in bringing your new hardware into operation in a timely and professional manner. https://www.HPE.com/h20195/v2/Getdocument.aspx?docname=5981-9356enw
HPE Lifecycle Services HPE Lifecycle Services provide a variety of options to help maintain your HPE systems and solutions at all stages of the product lifecycle. A few popular examples include: - Lifecycle Install and Startup Services: Various levels for physical installation and power on, remote access setup, installation and startup, and enhanced installation services with the operating system. - HPE Firmware Update Analysis Service: Recommendations for firmware revision levels for selected HPE products, taking into account the relevant revision dependencies within your IT environment. - HPE Firmware Update Implementation Service: Implementation of firmware updates for selected HPE server, storage, and solution products, taking into account the relevant revision dependencies within your IT environment. - Implementation assistance services: Highly trained technical service specialists to assist you with a variety of activities, ranging from design, implementation, and platform deployment to consolidation, migration, project management, and onsite technical forums. - HPE Service Credits: Access to prepaid services for flexibility to choose from a variety of specialized service activities, including assessments, performance maintenance reviews, firmware management, professional services, and operational best practices. https://www.HPE.com/services/lifecycle - For a list of the most frequently purchased services using service credits, see the HPE Service Credits Menu |
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Consult your HPE Sales Representative or Authorized Channel Partner of choice for any additional questions and services options. |
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Parts and Materials HPE will provide HPE-supported replacement parts and materials necessary to maintain the covered hardware product in operating condition, including parts and materials for available and recommended engineering improvements.
Parts and components that have reached their maximum supported lifetime and/or the maximum usage limitations as set forth in the manufacturer's operating manual, product QuickSpecs, or the technical product data sheet will not be provided, repaired, or replaced as part of these services.
How to purchase services Services are sold by Hewlett Packard Enterprise and Hewlett Packard Enterprise Authorized Service Partners: - Services for customers purchasing from HPE or an enterprise reseller are quoted using HPE order configuration tools. - Customers purchasing from a commercial reseller can find services at https://ssc.HPE.com/portal/site/ssc/ |
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Consume IT on your terms HPE GreenLake edge-to-cloud platform brings the cloud experience directly to your apps and data wherever they are-the edge, colocations, or your data center. It delivers cloud services for on-premises IT infrastructure specifically tailored to your most demanding workloads. With a pay-per-use, scalable, point-and-click self-service experience that is managed for you, HPE GreenLake edge-to-cloud platform accelerates digital transformation in a distributed, edge-to-cloud world. - Get faster time to market - Save on TCO, align costs to business - Scale quickly, meet unpredictable demand - Simplify IT operations across your data centers and clouds
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For more information: http://www.HPE.com/services |
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Model Description
Notes: - SN3420M with NVIDIA Cumulus® Linux requires transceivers listed below - Requires Rack Installation Kit ordered separately & optical transceivers listed below. | ||||
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Step 1 - Base Configuration. Select one Model
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Description |
SKU | |||
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HPE 25 GbE 18SFP28 4QSFP28 Power to Connector Airflow Half Width Switch SN2010M with NVIDIA Cumulus |
S2T75A | |||
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- HPE 18SFP28 4QSFP28 P2C Sw SN2010M w/NVD, AC Power |
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HPE SN2100M Rack Installation Kit |
Q2F25A | |||
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Notes: - Rack installation kit for SN2100M (S2T76A) or SN2100M (S2T75A) - Only 1 Rack Mount kit is needed for 2x SN2010M switches within the same rack. | ||||
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Step 2 - Options Refer to HPE M-Series Switches SPOCK Connectivity Stream for latest SN2010M with NVIDIA Cumulus® Linux interconnect support matrix | ||||
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Transceivers - for HPE Storage Switch M-series SN2010M NVIDIA Cumulus® Linux switches | ||||
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Note # |
Descriptions |
SKU | ||
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HPE 100 GbE QSFP28 500 m 1310 mm PSM4 Transceiver |
Q8J73A | ||
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HPE 10 GbE SFP+ SR Multi-mode 300 m Transceiver |
Q6M30A | ||
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HPE 10 GB SFP+ Short Wave 1-pack Pull Tab Optical Transceiver |
Q2P65A | ||
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HPE 100 GbE QSFP28 SR4 100 m Transceiver |
Q2F19A | ||
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HPE Storage 100 GbE QSFP28 SR4 Extended Temperature Pull Tab Transceiver |
S2T35A | ||
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HPE Aruba Networking 100G SR1.2 QSFP28 LC 100 m MMF Transceiver |
S4B44A | ||
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HPE 25 GB SFP28 Short Wave Extended Temperature 1-pack Pull Tab Optical Transceiver |
Q2P64B | ||
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HPE Aruba Networking 25G SFP28 LC eSR 400 m MMF Transceiver |
JL485A | ||
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9,10 |
HPE 100 GB QSFP28 LC SWDM4 Multi-mode 100 m Transceiver |
R0R40A | ||
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3, 6, 11,12 |
HPE 10GBASE-T SFP+ RJ45 30 m 1-pack Transceiver |
R0R41B | ||
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3, 6 |
HPE 25 GB SFP28 SR 30 m Transceiver |
R0R42A | ||
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HPE BladeSystem c-Class 10 GB SFP+ SR Transceiver |
455883-B21 | ||
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Note # |
Descriptions |
SKU | |
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7 |
HPE Aruba Networking 1G SFP RJ45 T 100 m Cat5e TAA Transceiver |
R9Q45A | |
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HPE Networking X130 10G SFP+ LC SR Transceiver |
JD092B | |
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HPE Networking X130 10G SFP+ LC LR Transceiver |
JD094B | |
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HPE Aruba Networking 10G SFP+ LC LR 10 km SMF Transceiver |
J9151E | |
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HPE Aruba Networking 10G SFP+ LC ER 40 km SMF Transceiver |
J9153D | |
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2 |
HPE 10 GbE SFP+ LR 10 km 1-pack Extended Temperature Pull Tab Transceiver |
S6B57A | |
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HPE Networking X130 10G SFP+ LC ER 40 km Transceiver |
JG234A | |
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HPE Networking X130 10G SFP+ LC LH 80 km Transceiver |
JG915A | |
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HPE Networking X140 40G QSFP+ CSR4 300 m Transceiver |
JG709A | |
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HPE Networking X140 40G QSFP+ LC LR4 SM 10 km 1310nm Transceiver |
JG661A | |
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HPE Aruba Networking 40G QSFP+ LC ER4 40 km SMF Transceiver |
Q9G82A | |
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HPE BladeSystem c-Class 40 GB QSFP+ MPO SR4 100 m Transceiver |
720187-B21 | |
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HPE Networking X140 40G QSFP+ LC BiDi 100 m MM Transceiver |
JL251A | |
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HPE 40 GB QSFP+ Bidirectional Transceiver |
841716-B21 | |
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HPE Networking X140 40G QSFP+ LC LR4L 2 km SM Transceiver |
JL286A | |
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HPE Networking X190 25G SFP28 LC SR 100 m MM Transceiver |
JL293A | |
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3 |
HPE Aruba Networking 25G SFP28 LC LR 10 km SMF Transceiver |
JL486A | |
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2 |
HPE 25 GbE SFP28 LR 10 km 1-pack Extended Temperature Pull Tab Transceiver |
S6B58A | |
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HPE 100 GbE QSFP28 500 m 1310 mm PSM4 Transceiver |
Q8J73A | |
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HPE Networking X130 10G SFP+ LC SR Transceiver |
JD092B | |
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HPE Networking X140 40G QSFP+ MPO SR4 Transceiver |
JG325B | |
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HPE 25 GB SFP28 SR 100 m Transceiver |
845398-B21 | |
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3 |
HPE QSFP28 to SFP28 Adapter |
845970-B21 | |
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HPE Networking X150 100G QSFP28 LC LR4 10 km SM Transceiver |
JL275A | |
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HPE Networking X150 100G QSFP28 CWDM4 2 km SM Transceiver |
JH673A | |
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9,10 |
HPE Networking X150 100G QSFP28 LC SWDM4 100 m MM Transceiver |
JH419A | |
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9 |
HPE 100 GB QSFP28 Bidirectional Transceiver |
845972-B21 | |
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14 |
HPE 100 GbE QSFP28 LC DR1 500 m 1-pack Transceiver |
R8M61A | |
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HPE Alletra 6000 2x100Gb QSFP28 MPO SR4 100 m FIO Transceiver |
R7D08A | |
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HPE Alletra 6000 2x100Gb QSFP28 MPO SR4 100 m Transceiver |
R7D12A | |
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HPE Alletra 6000 2x10Gb SFP+ SR FIO Transceiver |
R7D05A | |
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|
HPE Alletra 6000 2x10Gb SFP+ SR Transceiver |
R7D09A | |
|
|
HPE Alletra 6000 2x25Gb SFP28 SR 100 m FIO Transceiver |
R7D07A | |
|
|
HPE Alletra 6000 2x25Gb SFP28 SR 100 m Transceiver |
R7D11A | |
|
|
HPE Aruba Networking 40G QSFP+ MPO SR4 Transceiver |
R9F97A | |
|
| |||
|
Supported DAC/Copper Cables and Adapters | |||
|
Note # |
Descriptions |
SKU | |
|
8 |
HPE 7.6 m /25ft CAT5 RJ45 M/M Ethernet C/O Cable |
C7539A | |
|
5 |
HPE Networking X240 10G SFP+ SFP+ 0.65 m DAC Cable |
JD095C | |
|
5 |
HPE Networking X240 10G SFP+ SFP+ 1.2 m DAC Cable |
JD096C | |
|
5 |
HPE Networking X240 10G SFP+ SFP+ 3 m DAC Cable |
JD097C | |
|
Note # |
Descriptions |
SKU | ||
|
5 |
HPE Networking X240 10G SFP+ SFP+ 5 m DAC Cable |
JG081C | ||
|
|
HPE C-series 3 m Passive Copper SFP+ Cable |
K2Q21A | ||
|
|
HPE C-series 5 m Passive Copper SFP+ Cable |
K2Q22A | ||
|
5 |
HPE Aruba Networking 10G SFP+ to SFP+ 1 m Direct Attach Copper Cable |
J9281D | ||
|
5 |
HPE Aruba Networking 10G SFP+ to SFP+ 3 m Direct Attach Copper Cable |
J9283D | ||
|
5 |
HPE Aruba Networking 25G SFP28 to SFP28 0.65 m Direct Attach Cable |
JL487A | ||
|
|
HPE Networking Comware X240 40G QSFP+ QSFP+ 1 m Direct Attach Copper Cable |
JG326A | ||
|
|
HPE Networking Comware X240 40G QSFP+ QSFP+ 3 m Direct Attach Copper Cable |
JG327A | ||
|
|
HPE Networking Comware X240 40G QSFP+ QSFP+ 5 m Direct Attach Copper Cable |
JG328A | ||
|
|
HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 1 m Direct Attach Copper Splitter Cable |
JG329A | ||
|
|
HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 3 m Direct Attach Copper Splitter Cable |
JG330A | ||
|
|
HPE Networking Comware X240 40G QSFP+ to 4x10G SFP+ 5 m Direct Attach Copper Splitter Cable |
JG331A | ||
|
5 |
HPE BladeSystem c-Class 10 GbE SFP+ to SFP+ 3 m Direct Attach Copper Cable |
487655-B21 | ||
|
5 |
HPE BladeSystem c-Class 10 GbE SFP+ to SFP+ 5 m Direct Attach Copper Cable |
537963-B21 | ||
|
|
HPE Networking X242 40G QSFP+ to QSFP+ 1 m Direct Attach Copper Cable |
JH234A | ||
|
|
HPE Networking X242 40G QSFP+ to QSFP+ 3 m Direct Attach Copper Cable |
JH235A | ||
|
|
HPE Networking X242 40G QSFP+ to QSFP+ 5 m Direct Attach Copper Cable |
JH236A | ||
|
4 |
HPE Networking X240 QSFP28 4xSFP28 1 m Direct Attach Copper Cable |
JL282A | ||
|
4 |
HPE Networking X240 QSFP28 4xSFP28 3 m Direct Attach Copper Cable |
JL283A | ||
|
4 |
HPE Networking X240 QSFP28 4xSFP28 5 m Direct Attach Copper Cable |
JL284A | ||
|
4 |
HPE 100 GB QSFP28 to 4x25Gb SFP28 3 m Direct Attach Copper Cable |
845416-B21 | ||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 5 m Direct Attach Copper Cable |
R0Z26A | ||
|
5 |
HPE 25 GB SFP28 to SFP28 3 m Direct Attach Copper Cable |
844477-B21 | ||
|
5 |
HPE 25 GB SFP28 to SFP28 0.5 m Direct Attach Copper Cable |
R4G18A | ||
|
5 |
HPE 25 GB SFP28 to SFP28 1 m Direct Attach Copper Cable |
R4G19A | ||
|
|
HPE 25 GB SFP28 to SFP28 5 m Direct Attach Copper Cable |
844480-B21 | ||
|
|
HPE Aruba Networking 25G SFP28 to SFP28 3 m Direct Attach Copper Cable |
R9F92A | ||
|
|
HPE Aruba Networking 25G SFP28 to SFP28 5 m Direct Attach Copper Cable |
R9F93A | ||
|
|
HPE 100 GB QSFP28 to QSFP28 5 m Direct Attach Copper Cable |
845408-B21 | ||
|
4 |
HPE 100 GbE QSFP28 to 4x25GbE SFP28 1 m Direct Attach Copper Cable |
Q9S72A | ||
|
|
HPE Networking X240 100G QSFP28 1 m DAC Cable |
JL271A | ||
|
|
HPE Networking X240 100G QSFP28 3 m DAC Cable |
JL272A | ||
|
|
HPE Networking X240 100G QSFP28 5 m DAC Cable |
JL273A | ||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 1 m Direct Attach Copper Cable |
R0Z25A | ||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 3 m Direct Attach Copper Cable |
JL307A | ||
|
|
HPE 100 GB QSFP28 to QSFP28 3 m Direct Attach Copper Cable |
845406-B21 | ||
|
|
HPE 200 GB QSFP56 to QSFP56 0.5 m Direct Attach Copper Cable |
R5Z76A | ||
|
|
HPE 200 GB QSFP56 to QSFP56 1 m Direct Attach Copper Cable |
R5Z77A | ||
|
|
HPE 200 GB QSFP56 to QSFP56 2 m Direct Attach Copper Cable |
R5Z78A | ||
|
|
HPE 200 GB QSFP56 to QSFP56 2.5 m Direct Attach Copper Cable |
R5Z79A | ||
|
Note # |
Descriptions |
SKU | ||||
|
|
HPE Alletra 6000 2x10Gb SFP+ to SFP+ 3 m Direct Attach Copper Cable |
R7D16A | ||||
|
5 |
HPE Alletra 6000 2x25Gb SFP28 to SFP28 3 m Direct Attach Copper Cable |
R7D17A | ||||
|
|
HPE Alletra 6000 2x100Gb QSFP28 to QSFP28 3 m Direct Attach Copper Cable |
R7D18A | ||||
|
5 |
HPE Aruba Networking 25G SFP28 to SFP28 3 m Direct Attach Copper Cable |
JL488A | ||||
|
15 |
HPE 200 GbE QSFP56 to 2xQSFP56 2 m Direct Attach Copper Cable |
R8M57A | ||||
|
15 |
HPE 200 GbE QSFP56 to 2xQSFP56 2.5 m Direct Attach Copper Cable |
R8M58A | ||||
|
|
HPE 100 GB QSFP28 to QSFP28 0.5 m Direct Attach Copper Cable |
R8M59A | ||||
|
13 |
HPE 200 GB QSFP56 to 4x50/25 GB SFP56 2.5 m Direct Attach Copper Cable |
R6F27A | ||||
|
|
HPE Aruba Networking 10G SFP+ to SFP+ 3 m Direct Attach Copper Cable |
R9F84A | ||||
|
|
HPE Aruba Networking 10G SFP+ to SFP+ 7 m Direct Attach Copper Cable |
J9285D | ||||
|
|
|
| ||||
|
Supported AOC (Optical) Cables and Adapters | ||||||
|
Note # |
Descriptions |
SKU | ||||
|
|
HPE 40 GbE QSFP+ to 4x10GbE SFP+ 5 m Active Optical Cable |
Q9S66A | ||||
|
|
HPE 25 GbE SFP28 to SFP28 3 m Smart Active Optical Cable |
Q9S67A | ||||
|
|
HPE 25 GbE SFP28 to SFP28 5 m Smart Active Optical Cable |
Q9S68A | ||||
|
|
HPE 25 GbE SFP28 to SFP28 10 m Smart Active Optical Cable |
Q9S69A | ||||
|
|
HPE 25 GbE SFP28 to SFP28 15 m Smart Active Optical Cable |
Q9S70A | ||||
|
|
HPE 100 GbE QSFP28 to QSFP28 5 m Active Optical Cable |
Q9S71A | ||||
|
|
HPE Aruba Networking 25G SFP28 to SFP28 7 m Active Optical Cable |
R9F95A | ||||
|
|
HPE Storage 100 GbE QSFP28 to QSFP28 5 m Extended Temperature Active Optical Cable |
S2T38A | ||||
|
|
HPE Storage 100 GbE QSFP28 to QSFP28 10 m Extended Temperature Active Optical Cable |
S2T39A | ||||
|
|
HPE Storage 100 GbE QSFP28 to QSFP28 15 m Extended Temperature Active Optical Cable |
S2T40A | ||||
|
|
HPE Storage 100 GbE QSFP28 to QSFP28 25 m Extended Temperature Active Optical Cable |
S2T41A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 2 m Active Optical Cable |
R9F76A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 1 m Direct Attach Copper Cable |
R9F77A | ||||
|
|
HPE Aruba Networking 100G QSFP28-QSFP28 3 m Direct Attach Copper Cable |
R9F74A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 5 m Direct Attach Copper Cable |
R9F78A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 7 m Active Optical Cable |
R9F79A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 15 m Active Optical Cable |
R9F80A | ||||
|
|
HPE Aruba Networking 100G QSFP28 to QSFP28 30 m Active Optical Cable |
R9F81A | ||||
|
|
HPE BladeSystem c-Class QSFP+ to 4x10G SFP+ 15 m Active Optical Cable |
721076-B21 | ||||
|
|
HPE BladeSystem c-Class 40G QSFP+ to QSFP+ 15 m Active Optical Cable |
720211-B21 | ||||
|
|
HPE 100 GB QSFP28 to QSFP28 7 m Active Optical Cable |
845410-B21 | ||||
|
|
HPE 100 GB QSFP28 to QSFP28 15 m Active Optical Cable |
845414-B21 | ||||
|
|
HPE QSFP28 to 4x25Gb SFP28 7 m Active Optical Cable |
845420-B21 | ||||
|
|
HPE 100 GbE QSFP28 2 m Extended Temperature Active Optical Cable |
S6B63A | ||||
|
16 |
Aruba 100G QSFP28 LC FR1 SMF 2 km Transceiver |
S1D17A/R9B63A | ||||
|
|
HPE QSFP28 to 4x25Gb SFP28 15 m Active Optical Cable |
845424-B21 | ||||
|
|
HPE 25 GB SFP28 to SFP28 7 m Active Optical Cable |
844483-B21 | ||||
|
|
HPE 25 GB SFP28 to SFP28 15 m Active Optical Cable |
845396-B21 | ||||
|
13 |
HPE 400 GbE QSFP-DD to 4xQSFP56 1 m Direct Attach Copper Cable |
R8M55A | ||||
|
13 |
HPE 400 GbE QSFP-DD to 4xQSFP56 2 m Direct Attach Copper Cable |
R8M56A | ||||
|
Configuration Rules and Notes: 1. JG915A - Storage connectivity support for this transceiver is limited to 40 km 2. QSA (QSFP+ to SFP+) adapter (655874-B21) is being phased out of the M-series support. Use HPE QSA28 (QSFP28 to SFP28) adapter (845970-B21) that is compatible with all M-series switches to convert a QSFP+/QSFP28 slot to a single SFP+/SFP28 slot for 1G to 25G operation. 3. HPE QSA28 (QSFP28 to SFP28) adapter (845970-B21) is compatible with all M-series switches and is required with this transceiver to convert a QSFP28 slot to a single SFP28 or SFP+ slot for 1G, 10G, or 25G operation with this switch model. 4. QSFP (+ or 28) cable end is supported in SN2010M. The SFP (+ or 28) end is not supported in the SN2010M 5. The SN2010M 25G DAC connectivity to another M-series switch or 3rd party switch is limited to a 0.5 m DAC cable. End device connectivity may use 1 m or a 3 m (26 gauge) 25G DAC. 10G DAC up to 5 m is supported between SN2010M switches. 6. This HPE transceiver is compatible and supported for use in the SFP28 slots with this M-series switch model and is not restricted to use only with a QSA28 in QSFP28 slots. 7. This HPE transceiver is compatible and supported for use in the SFP28 slots and also the QSFP28 slots with this M-series switch model with the QSA28 (QSFP28 to SFP28) adapter (845970-B21). 8. This RJ45 crossover cable is compatible and supported for use when directly connecting the two M-series switch MGMT ports. When configuring MLAG and also utilizing in-band management, the MGMT0 ports of the two switches should be connected. 9. The 845972-B21 HPE 100 Gb QSFP28 Bidirectional XCVR does not interoperate with the JH419A and R0R40A HPE 100 Gb QSFP28 LC SWDM4 MM 100 m transceivers. 10. 100 Gbe SWDM4 LC transceivers JH419A and R0R40A are interoperable. 11. 10 Gbase-T SFP+ RJ45 transceiver supports maximum length 30 m CAT6a cable. This 10Gbase-T transceiver is not qualified for use at 1 GbE and shall be operated only at 10 GbE. 12. Cumulus 5.9.2 and later revisions are required for support of up to 18 R0R41B transceivers in the SN2010M switch. R0R41B transceiver supports maximum length 30 m CAT6a cable. R0R41B 10Gbase-T transceiver is not qualified for use at 1 GbE and shall be operated only at 10 GbE. 13. All cable ports must be set as NRZ or PAM4. A mix between the two technologies is not supported. 14. The R8M61A class 6 power requirements support use in the SN2010M ports 19, 20, 21, 22. 15. All cable ports must be set as PAM4, NRZ is not supported. 16. The S1D17A/R9B63A power requirements support use in the SN4700 ports swp1-32; SN3700M ports swp1-32; SN3700cM ports swp1-2, swp31-32; SN3420M ports swp53, swp55, swp57, swp59; SN4600cM ports swp49-64 | ||||||
|
| ||||||
|
Supported Optical Cables for all M-series switch models | ||||||
|
Descriptions |
SKU | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 10 m Fiber Cable |
QK729A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 50 m Fiber Cable |
QK731A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 1 m Cable |
QK732A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 2 m Cable |
QK733A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 5 m Cable |
QK734A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 15 m Cable |
QK735A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 30 m Cable |
QK736A | |||||
|
HPE Premier Flex LC/LC Multi-mode OM4 2 Fiber 50 m Cable |
QK737A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 0.5 m 1-Pack Fiber Optic Cable |
AJ833A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 1.0 m 1-Pack Fiber Optic Cable |
AJ834A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 2.0 m 1-Pack Fiber Optic Cable |
AJ835A | |||||
|
Descriptions |
SKU | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 5.0 m 1-Pack Fiber Optic Cable |
AJ836A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 15.0 m 1-Pack Fiber Optic Cable |
AJ837A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 30.0 m 1-Pack Fiber Optic Cable |
AJ838A | |||||
|
HPE LC to LC Multi-mode OM3 2-Fiber 50.0 m 1-Pack Fiber Optic Cable |
AJ839A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 100 m Fiber Cable |
H6Z30A | |||||
|
HPE Premier Flex MPO8 to 4xLC Multi-mode OM4 5 m Fiber Cable |
K2Q46A | |||||
|
HPE Premier Flex MPO8 to 4xLC Multi-mode OM4 15 m Fiber Cable |
K2Q47A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 1 m Fiber Cable |
Q1H63A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 2 m Fiber Cable |
Q1H64A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 5 m Fiber Cable |
Q1H65A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 15 m Fiber Cable |
Q1H66A | |||||
|
HPE Premier Flex MPO12/MPO12 Multi-mode OM4 30 m Fiber Cable |
Q1H67A | |||||
|
HPE Premier Flex MPO8 to 4xLC Multi-mode OM4 30 m Fiber Cable |
Q1H68A | |||||
|
HPE Premier Flex MPO8 to 4xLC Multi-mode OM4 50 m Fiber Cable |
Q1H69A | |||||
|
HPE 5 m Single-Mode LC/LC Fibre Channel Cable |
AK346A | |||||
|
HPE Premier Flex MPO12/MPO12 APC Single-mode 50 m 1-pack Cable |
R6F28A | |||||
|
HPE Premier Flex MPO12/MPO12 APC Single-mode 100 m 1-pack Cable |
R6F29A | |||||
|
HPE Premier Flex MPO12/MPO12 APC Single-mode 300 m 1-pack Cable |
R6F30A | |||||
|
HPE Premier Flex MPO12/MPO12 APC Single-mode 500 m 1-pack Cable |
R6F31A | |||||
|
HPE Premier Flex Wide Band LC/LC Multi-mode OM5 100 m Fiber Cable |
R9M64A | |||||
|
HPE Premier Flex Wide Band LC/LC Multi-mode OM5 150 m Fiber Cable |
R9M65A | |||||
|
HPE Premier Flex Wide Band MPO8/MPO8 Multi-mode OM5 100 m Fiber Cable |
R9M62A | |||||
|
HPE Premier Flex MPO16 APC/2xMPO8 MM 5 m Cable |
S1H57A | |||||
|
HPE Premier Flex MPO16 APC/2xMPO8 MM 10 m Cable |
S1H58A | |||||
|
HPE Storage Premier Flex MPO16 APC/4xMPO4 MM 5 m Cable |
S2T36A | |||||
|
HPE Storage Premier Flex MPO16 APC/4xMPO4 MM 10 m Cable |
S2T37A | |||||
|
HPE Premier Flex MPO16/MPO16 APC MM 2 m Cable |
R4D51A | |||||
|
HPE Premier Flex MPO16/MPO16 APC MM 5 m Cable |
R4D52A | |||||
|
HPE Premier Flex MPO16/MPO16 APC MM 10 m Cable |
R4D53A | |||||
|
HPE Premier Flex MPO16/MPO16 APC MM 15 m Cable |
R4D54A | |||||
|
HPE Premier Flex MPO16/MPO16 APC MM 30 m Cable |
R4D55A | |||||
|
HPE Premier Flex MPO16 APC/8xLC MM 5 m Cable |
R4D56A | |||||
|
HPE Premier Flex MPO16 APC/8xLC MM 10 m Cable |
R4D57A | |||||
|
HPE Premier Flex MPO16 APC/8xLC MM 15 m Cable |
R4D58A | |||||
|
HPE Premier Flex MPO16 APC/8xLC MM 30 m Cable |
R4D59A | |||||
|
HPE Premier Flex MPO8 APC/4xLC Single-mode 15 m Cable |
R4D60A | |||||
|
HPE Premier Flex MPO8 APC/4xLC Single-mode 30 m Cable |
R4D61A | |||||
|
HPE Premier Flex MPO8 APC/4xLC Single-mode 2 m Cable |
R4D62A | |||||
|
HPE Premier Flex MPO8 APC/4xLC Single-mode 5 m Cable |
R4D63A | |||||
|
HPE Premier Flex MPO8 APC/4xLC Single-mode 10 m Cable |
R4D64A | |||||
|
Note: The following 4 single-mode cables have APC connectors for use with the S6B55A and R8M60B transceivers. They are not compatible with the S6B51A or S6B53A. | ||||||
|
HPE Premier Flex MPO8/MPO8 APC Single-mode 2 m Cable |
S6B70A | |||||
|
HPE Premier Flex MPO8/MPO8 APC Single-mode 5 m Cable |
S6B71A | |||||
|
Descriptions |
SKU | |||||
|
HPE Premier Flex MPO8/MPO8 APC Single-mode 15 m Cable |
S6B72A | |||||
|
HPE Premier Flex MPO8/MPO8 APC Single-mode 30 m Cable |
S6B73A | |||||
|
Note: The following 6 multi-mode cables have APC connectors for use with the S6B51A, S6B56A, and S6B53A transceivers. Connector damage occurs if they are inserted into a transceiver's MPO connector. | ||||||
|
HPE Premier Flex MPO8/MPO8 APC MM 1 m Cable |
S6B64A | |||||
|
HPE Premier Flex MPO8/MPO8 APC MM 2 m Cable |
S6B65A | |||||
|
HPE Premier Flex MPO8/MPO8 APC MM 5 m Cable |
S6B66A | |||||
|
HPE Premier Flex MPO8/MPO8 APC MM 15 m Cable |
S6B67A | |||||
|
HPE Premier Flex MPO8/MPO8 APC MM 30 m Cable |
S6B68A | |||||
|
HPE Premier Flex MPO8/MPO8 APC MM 50 m Cable |
S6B69A | |||||
|
Note: The following 2 multi-mode splitter cables have APC connectors for use with the S6B51A, S6B56A, and S6B53A transceivers. Connector damage occurs if they are inserted into a transceiver's MPO connector.
These 2x splitter cables are configured for the following use cases: - MPO8 end: (S6B51A) HPE 400 GbE QSFP-DD VR4 50 m Transceiver - MPO4 end: (S6B56A) HPE 200 GbE QSFP56 VR2 50 m Transceiver | ||||||
|
HPE Premier Flex MPO8/2xMPO4 APC MM 5 m Cable |
S6B74A | |||||
|
HPE Premier Flex MPO8/2xMPO4 APC MM 15 m Cable |
S6B75A | |||||
|
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Notes: **There are separate M-Series SKUs for ONIE, ONYXTM and NVIDIA Cumulus® switch models. | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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Ethernet Ports Maximum High Power Support
| ||||||||||||||||||
|
- SN3420M
- SN3700cM
- SN3700M
- SN4600cM
- SN4700M
- SN2010M
- SN2100M
|
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|
| ||||||||||||||||||
|
Safety EN 60950-1:2006+A11:2009+A1:2010+A12:2011+AC:2011+A2:2013, IEC 60950-1:2005 (Second Edition) + Am 1:2009 + Am 2:2013 and EN 60950-1:2006 + A11:2009 + A1:2010 + A12:2011 + AC:2011 + A2:2013, UL 60950-1:2007, CAN/CSA C22.2 60950 -1:2007+A1:2011+A2:2014, IEC 60950-1 Ed. 2.0:2005 + Am 1:2009+ Am 2:2013, LV CU TR 004/2011 and EMC CU TR 020/2011 Technical Regulation, DSTU EN 55032:2014 and DSTU EN 60950-1:2014 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
| ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
EMC EN 55032:2012 class A, EN 55024:2010, EN 61000-3-2:2014, EN 61000-3-3: 2013, EN 61000-4-2: 2002, EN 61000-4-3: 2006+A1(08)+A2(10), EN 61000-4-4: 2004+A1(10), EN 61000-4-5: 2006, EN 61000-4-6: 2014 EN 61000-4-11:2004, FCC 47 CFR, Part 15:2017, Sub-part B, Class A, ICES-003, Issue 6: 2016 Class A, VCCI V-3/2015.04 Class A, AZ/NZS CISPR 32:2015 Class A, KN22:2009 class A/ KN24:2009 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
| ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
Acoustic - High-speed fan: 73.7dB(A) | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
| ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
Typical power with passive cables (ATIS):
- SN2010M
|
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HPE Power Advisor To address a need to accurately estimate power requirements and to ensure the appropriate levels of power and cooling and power-related operating costs, HPE created the HPE Power Advisor utility. The HPE Power Advisor utility provides accurate and meaningful estimates of the power needs for HPE servers, storage, and switches including M-series Ethernet switches. | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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SNMP MIBs Due to licensing restrictions, Cumulus Linux does not install all MIBs. For the MIBs that Cumulus Linux does not install, you must add the "non-free" archive to /etc/apt/sources.list. To see which MIBs are on your switch, run ls /usr/share/snmp/mibs/.
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Date |
Version History |
Action |
Description of Change |
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02-Feb-2026 |
Version 23 |
Added |
- Added new optical cable descriptions under Supported Optical Cables: MPO12/MPO12 OM4 (1m-100m), MPO8 to 4xLC OM4 (5m-50m), Wide Band LC/LC OM5 (100m, 150m). - Added new APC cable descriptions under Supported Optical Cables: MPO16/MPO16 MM (2m-30m), MPO16 APC/2xMPO8 MM (5m, 10m), MPO16 APC/4xMPO4 MM (5m, 10m), MPO16 APC/8xLC MM (5m-30m), MPO8 APC/4xLC Single-mode (2m-30m), MPO8/MPO8 APC Single-mode (2m-30m), MPO8/MPO8 APC MM (1m-50m), and MPO8/2xMPO4 APC MM (5m, 15m). - Added note in Step 2 - Options regarding S1D17A/R9B63A power requirements for SN4700, SN3700M, SN3700cM, SN3420M, and SN4600cM ports. |
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Changed |
Updated model description in Models section: removed "with NVIDIA Cumulus® Linux" and standardized to "with NVIDIA Cumulus." | ||
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Removed |
- Removed outdated optical cable descriptions using legacy phrasing (e.g., "Multi Fiber Push On", "OM4 12-fiber"). - Removed legacy APC cable descriptions with outdated OM4 references and redundant phrasing. | ||
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01-Dec-2025 |
Version 22 |
Added |
Added Electrical Characteristics section. Removed obsolete SKU JW148A. Updated Step 2 - Options section with new transceiver SKUs (S6B57A, S6B58A), added active optical cable (S6B63A) and Aruba transceiver (S1D17A/R9B63A). |
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Changed |
Expanded Supported Optical Cables table with single-mode, multi-mode, and splitter cables including APC connector notes. | ||
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Removed |
Removed obsolete SKU JW148A. | ||
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02-Jun-2025 |
Version 21 |
Changed |
Configuration Information section was updated Obsolete SKUs were removed - 720199-B21 / 720202-B21 |
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03-Jun-2024 |
Version 20 |
Changed |
Overview, Configuration Information and Technical Specifications sections were updated |
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06-May-2024 |
Version 19 |
Changed |
Overview, Standard Features, Service and Support, Configuration Information and Technical Specifications sections were updated Rebranding Series Name applied |
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26-Feb-2024 |
Version 18 |
Changed |
Networking product names were updated. |
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13-Nov-2023 |
Version 17 |
Changed |
HPE Services Rebranding |
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19-Sep-2022 |
Version 16 |
Changed |
Standard Features, Configuration Information and Technical Specifications sections were updated |
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06-Jun-2022 |
Version 15 |
Changed |
Overview, Standard Features and Service and Support sections were updated |
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04-Oct-2021 |
Version 14 |
Changed |
Service and Support section was updated |
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02-Aug-2021 |
Version 13 |
Changed |
Service and Support section was updated |
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19-Apr-2021 |
Version 12 |
Changed |
Configuration Information Section was updated |
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15-Feb-2021 |
Version 11 |
Changed |
Overview, Standard Features and Technical Specifications sections were updated |
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03-Aug-2020 |
Version 10 |
Changed |
Overview, Standard Features and Configuration Information sections were updated |
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06-Jul-2020 |
Version 9 |
Changed |
QuickSpecs layout was updated and Branding Refresh was applied. |
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16-Mar-2020 |
Version 8 |
Changed |
Configuration Information and Technical Specifications sections were updated. |
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03-Feb-2020 |
Version 7 |
Changed |
Overview, Service and Support, Family Information and Technical Specifications sections were updated. |
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07-Oct-2019 |
Version 6 |
Changed |
ONIE SKU updates; features update; transceivers updated |
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05-Aug-2019 |
Version 5 |
Added |
Overview, Service and Support, Family Information and Technical Specifications sections were updated. |
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02-Apr-2019 |
Version 4 |
Changed |
Family Information and Technical Specifications sections were updated. |
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07-Jan-2019 |
Version 3 |
Changed |
Overview, Models, Service and Support, Family Information, Configuration Information and Technical Specifications sections were updated |
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15-Oct-2018 |
Version 2 |
Changed |
Overview section was updated. SKUs descriptions were updated. Obsolete SKUs were removed from Configuration Information section. New SKUs were added in Configuration Information section. |
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4-Sep-2018 |
Version 1 |
New |
New QuickSpecs. |
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Shape the Future of QuickSpecs - Your Input Matters | |
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Chat now | |
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© Copyright 2026 Hewlett Packard Enterprise Development LP. The information contained herein is subject to change without notice. The only warranties for Hewlett Packard Enterprise products and services are set forth in the express warranty statements accompanying such products and services. Nothing herein should be construed as constituting an additional warranty. Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein.
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