Description
HPE CX 8100 48XF4C Ethernet Switch
The Aruba CX 8100 Switch Series, including the HPE CX 8100 48XF4C, is engineered for the mobile, cloud, and IoT era. This high-performance Ethernet switch delivers a flexible, scalable, and secure foundation for the next-generation core and aggregation layers of campuses and data centers. Built on the powerful AOS-CX operating system, the CX 8100 family brings automation, deep telemetry, and policy-driven network management to life, enabling IT teams to deploy resilient networks that adapt to changing workloads, security needs, and application demands. With an emphasis on intelligent analytics, zero-trust security, and streamlined administration, the CX 8100 is designed to simplify operations while accelerating service delivery for wired and wireless users alike. Whether you’re expanding a campus network, consolidating data center edge, or enabling cloud-native applications, the HPE CX 8100 48XF4C delivers the density, reliability, and programmability required to support modern businesses and campuses.
- High-performance, scalable core and aggregation — The HPE CX 8100 48XF4C is designed to handle the demanding traffic patterns of today’s campus, cloud, and IoT environments. With dense port grouping, high-throughput switching, and intelligent queuing, it supports rapid east-west traffic flow, latency-sensitive applications, and scalable growth as users, devices, and services proliferate. This switch is purpose-built for the core and distribution layers, providing optimized forwarding for multi-terabit data flows while maintaining predictable performance for latency-critical workloads.
- Advanced security and micro‑segmentation — Security is built into the fabric of the CX 8100 with zero-trust principles, dynamic policy enforcement, and granular access control. The platform supports workflow-based segmentation, application-aware access policies, and encrypted management paths to defend against evolving threat vectors. Integrated threat detection and behavioral analytics help IT teams spot anomalies early, while automated policy provisioning reduces misconfigurations and speeds secure onboarding of devices and users across wired and wireless networks.
- Automation, analytics, and open APIs — Powered by Aruba's AOS-CX, the CX 8100 provides AI-driven telemetry, proactive health checks, and streaming analytics that deliver actionable insights in real time. Centralized management through Aruba Central or on-prem solutions, plus RESTful APIs and standard data models, enable automation of common tasks, rapid configuration rollouts, and seamless integration with existing IT workflows. This reduces operational toil and helps teams deliver consistent, repeatable network experiences across locations and users.
- Flexible deployment for campus and data centers — The CX 8100 48XF4C supports a range of deployment models, from campus core and distribution to edge data center applications. Its modular approach and flexible uplink/downlink options allow organizations to consolidate gear, simplify cabling, and accelerate time-to-value for new services. Whether consolidating multiple campuses or expanding a single site, this switch offers a scalable platform that grows with evolving requirements, including high-density client access, IoT device proliferation, and rapid app deployment.
- Management simplicity and reliability — With built-in analytics, intuitive policy-based configuration, and streamlined provisioning, the CX 8100 minimizes complexity while delivering robust reliability. Features such as redundant power options, simplified firmware updates, and clear visibility into network health help IT teams maintain uptime and deliver consistent user experiences. The device integrates with modern network management ecosystems, enabling administrators to monitor, troubleshoot, and optimize performance from a single pane of glass.
Technical Details of HPE CX 8100 48XF4C Ethernet Switch
Exact specifications for the HPE CX 8100 48XF4C Ethernet Switch are not listed in this description. This section provides a high-level overview of the capabilities you can expect from the CX 8100 series and points you toward official datasheets for precise numbers. Key characteristics include robust core/aggregation functionality, policy-based automation, secure management, and scalable performance designed for campus networks and data-center edge. For the most accurate specifications, refer to the official product datasheet and the Synnex specifications repository using the product UPC or SKU as your reference.
- Form factor — 1U, rack-mountable chassis designed for dense deployments in campus core/distribution and data-center edge environments.
- Ports and density — High-density port capacity to support large numbers of wired users and devices, with flexible uplink options to connect to aggregation layers and data centers. Port configurations are designed to balance access, uplink, and spine requirements in mixed Ethernet environments.
- Operating system — AOS-CX, offering modern policy-driven automation, centralized telemetry, and rich analytics. Includes support for APIs, scripting, and integration with orchestration platforms.
- Security features — Built-in zero-trust architecture, segmentation, and policy enforcement to reduce attack surfaces. Includes capabilities for secure management access, encrypted control channels, and traffic isolation for sensitive workloads.
- Management and analytics — Integrated telemetry, ML-assisted diagnostic insights, and management through Aruba Central or local controllers. Open APIs enable automation and seamless integration with existing IT workflows.
- Power and reliability — Redundant power options and reliable hardware design intended for continuous operation in campus and data-center environments. Firmware update mechanisms and health monitoring support long-term stability.
- Warranty and support — Standard warranty and support options vary by region. For precise terms, consult the vendor or regional distributors.
How to install HPE CX 8100 48XF4C Ethernet Switch
Installing the HPE CX 8100 48XF4C is a straightforward process designed to minimize downtime while delivering a solid, scalable network foundation. Begin by preparing a suitable 19-inch rack with appropriate mounting rails and ensuring adequate ventilation and power capacity for the device and any neighboring equipment. Secure the switch in the rack, connect the power cords to a stable power source, and verify that redundant power options are ready if your configuration supports them. Before powering on, plan your cable layout to optimize cable management and airflow; label uplink and downlink connections to prevent confusion during future changes.
Next, connect essential network links. Attach downlinks to access-layer switches or directly to servers and virtualization hosts as required, and configure uplinks toward the aggregation layer or data-center spine devices. If you are using a chassis with multiple control planes, you may connect management interfaces to your out-of-band network for secure administration. Once physical connections are in place, power on the device and access the management interface via console or web UI. From there, you can perform initial onboarding, update firmware to the latest stable release, and apply baseline configurations that reflect your security posture and architectural design.
Initial configuration should focus on establishing administrative credentials, enabling secure management channels, and setting up basic network policies. Leverage the AOS-CX features to define segmentation rules, access-control policies, and QoS templates tailored to your workloads. If you use Aruba Central or another centralized management platform, register the switch as a managed device and import baseline templates to accelerate deployment across multiple sites. Take advantage of ML-based analytics to monitor performance metrics such as latency, jitter, and packet loss, and set up alerts to proactively address potential issues before they impact users.
Post-deployment validation is essential. Verify connectivity from client devices and servers, test uplink stability, and confirm that security policies are properly enforced across all segments. Run standardized performance tests to ensure bandwidth and latency meet your service-level objectives. Finally, document the configuration, inventory, and cabling layout to facilitate future maintenance, upgrades, or troubleshooting. Properly maintaining firmware, security patches, and configuration backups will extend the life of your CX 8100 deployment and help your IT team respond quickly to changing requirements.
Frequently asked questions
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Q: What is the primary role of the HPE CX 8100 48XF4C Ethernet Switch in a campus or data-center network?
A: It serves as a high-density, scalable core/aggregation switch designed to handle heavy traffic between campus access networks, virtualization platforms, and data-center edge, while supporting advanced security, automation, and analytics for efficient administration.
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Q: Does this switch integrate with Aruba Central for cloud-based management?
A: Yes. The CX 8100 family integrates with Aruba Central for centralized provisioning, monitoring, and policy management, in addition to its on-device management capabilities through AOS-CX.
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Q: What security capabilities are included?
A: The switch supports zero-trust security, dynamic segmentation, policy-based access control, encrypted management paths, and telemetry-driven threat detection to help protect workloads across wired networks and IoT devices.
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Q: Is the HPE CX 8100 suitable for both campus networks and data-center edge deployments?
A: Yes. Its flexible design and feature set are intended for multi-site campuses and data-center edge scenarios, enabling consistent policy enforcement and simplified operations across environments.
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Q: What is required to install and maintain this switch?
A: You’ll need rack space, power and cooling capacity, appropriate cabling, initial credentials, and access to the management platform (Aruba Central or on-prem). Regular firmware updates, backups of configurations, and monitoring through analytics are recommended for ongoing reliability.
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