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HP JD236AR 2 x Ports 10GbE XFP SD Extended Module
- 2 x 10GbE (10 Gigabit Ethernet) ports.
- Utilizes XFP transceiver form factor.
- Supports extended reach or specific SD features.
- Provides high-speed network connectivity.
- Ideal for data center and high-performance networking.
- Enables high-bandwidth data transfer.
- Likely a spare or replacement part.
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Product Overview
The HP JD236AR is a 2-port 10GbE XFP SD Extended Module. It offers high-speed 10 Gigabit Ethernet connectivity using XFP transceivers, designed for demanding network environments. This module is likely a spare or replacement part for the JD236-61201, offering similar functionality.
Technical Information
| Product Type | 10GbE Module |
| Ethernet Speed | 10GbE (10 Gigabit Ethernet) |
Additional Specifications
| Port Type | XFP |
| Number of Ports | 2 |
Product Description
The HP JD236AR is a 2-port 10 Gigabit Ethernet module that utilizes XFP (10 Gigabit Small Form Factor Pluggable) transceivers. This module is designed to provide high-speed network connectivity, essential for data-intensive environments like enterprise data centers, high-performance computing, and core network infrastructure. The 'AR' designation often signifies a spare part or a specific configuration variant within HP's product catalog. Similar to the JD236-61201, this module offers two 10GbE interfaces, enabling high-bandwidth communication between network devices. The use of XFP transceivers provides flexibility, allowing administrators to choose the appropriate transceiver type based on distance and fiber optic requirements. The 'SD Extended' aspect suggests potential enhancements for specific HP platforms, possibly related to environmental specifications or advanced features. This module is critical for upgrading network infrastructure to support the increasing demands for data throughput and reduced latency. Its deployment allows for faster data transfers, improved application performance, and the ability to handle large volumes of network traffic efficiently. The dual-port design also supports redundancy and load balancing strategies, contributing to a more resilient and robust network.



