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Product Overview |
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The HP 1.92TB SATA 6Gb/s Read Intensive 2.5-inch SSD is a storage device designed to provide sturdy and efficient read performance within ProLiant G8, G9, and G10 servers. It fits in environments where read speed and capacity matter, serving as a solid choice for storage that needs to handle frequent data reads smoothly without excessive wear. |
General Information |
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| Brand | HP |
| Part Number | 875513-X21 |
Technical Information |
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| Capacity | 1.92TB |
| Form Factor | 2.5-inch |
| Interface | SATA 6GB/s |
| Hot Swappable | Yes |
| Hot Pluggable | Yes |
Physical Characteristics |
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| Weight | 1.10 |
| Condition | Refurbished |
Product Description |
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This HP 1.92TB SATA 6Gb/s solid state drive is built for environments demanding reliable, high-speed read operations. It’s commonly used in ProLiant G8, G9, and G10 servers where consistent performance under read-heavy tasks is critical. Often found in data centers and enterprise setups, this drive benefits system administrators and IT professionals who need effective storage solutions for applications like database querying, web hosting, and virtualization. Key Features
These drives are typically deployed in mid to large-scale enterprise servers, handling workloads that require quick access to large volumes of data. Their role is to maintain system responsiveness while managing heavy read demands without sacrificing reliability. |
Use Cases |
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The HP 1.92TB SATA 6Gb/s Read Intensive SSD is specifically tailored for deployment in enterprise servers where consistent read performance is critical. IT teams operating ProLiant G8, G9, and G10 server environments benefit from its balance of capacity and read efficiency, particularly in workloads that demand frequent data retrieval without the overhead of high write cycles. How It's Used:
This SSD enables organizations to optimize read-centric workloads while maintaining operational stability. Its form factor and interface compatibility ensure seamless integration into existing server clusters, supporting scalable storage architectures without compromising on data retrieval speed. |