HPE JC091A
800 4-Port 10GbE SFP+ Expansion Module– High-Speed Uplink Module
The HPE JC091A is a 4-port 10 Gigabit Ethernet SFP+ Expansion Module designed to boost network capacity on compatible HPE 5800 Series switches. It delivers high-speed fiber uplinks, enabling seamless connectivity to aggregation layers, data centers, or high-performance network cores.
Features
Engineered for environments demanding scalability and speed, the JC091A module offers four 10GbE SFP+ ports that support a variety of fiber transceivers and DAC cables. Its hot-swappable capability allows for quick deployment and future-proof expansion without network downtime, making it ideal for enterprises looking to increase uplink capacity or enable 10Gb backbone links.
Advanced Options
Whether you’re upgrading an existing infrastructure or scaling out a growing network, this Expansion Module ensures smooth integration and long-term flexibility in both layer 2 and layer 3 architectures.
Product Key Features
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4 × 10GbE SFP+ ports for high-performance uplinks
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Seamless expansion for HPE 5800 Series Switches
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Hot-swappable design for zero-downtime upgrades
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Compact module form factor for flexible deployment
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Supports a wide range of 10GbE SFP+ transceivers
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Ideal for aggregation, distribution, and data center uplinks
Reliability & Performance
Built with reliability and high throughput in mind, the JC091A maintains low-latency performance even under heavy data loads. It supports industry-standard 10GbE SFP+ transceivers for adaptable connectivity options and provides non-blocking performance when paired with HPE 5800 Series switches. Its modular design simplifies maintenance and minimizes risk of hardware failure during upgrades.
Key Features :
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4 × 10GbE SFP+ ports
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Compatible with HPE 5800 Series Switches
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Hot-swappable module design
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Supports SFP+ DAC and fiber transceivers
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Provides high-speed uplink or stacking options
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Non-blocking 10Gbps per port bandwidth
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Ideal for distribution and aggregation layers
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Tool-less installation and removal
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Industry-compliant interface standards
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Energy-efficient design with minimal heat output



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