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Product Overview |
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The HP 1.92TB PCI Express NVMe Read Intensive Mainstream 2.5-inch SSD provides a reliable storage solution focused on fast data reads in standard server and workstation setups. It fits well in environments that prioritize swift retrieval of information, such as databases and virtualized systems, without the need for heavy write operations. |
General Information |
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| Brand | HP |
| Part Number | P20613-001 |
Technical Information |
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| Capacity | 1.92TB |
| Form Factor | 2.5-inch |
| 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 PCIe NVMe solid state drive is built for environments where fast access to large volumes of data is critical. Its read-intensive design makes it ideal for applications that require frequent data retrieval rather than heavy write activity. Often found in enterprise servers, data centers, and high-performance workstations, it supports workloads like database querying, content delivery, and virtualization where speed and reliability matter. Key Features
This drive is commonly deployed in data centers and enterprise environments where quick read access reduces bottlenecks and improves overall system responsiveness. Its endurance and performance make it a practical choice for IT teams managing large datasets without needing write-heavy SSDs. |
Use Cases |
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The HP 1.92TB NVMe PCIe Read Intensive SSD is ideal for IT environments that demand rapid data access with minimal write activity. It suits applications where read performance directly impacts efficiency, such as in enterprise data centers and virtualized infrastructures that handle large volumes of sequential or random read requests. How It's Used:
This SSD supports operational efficiency by providing consistent read throughput and endurance tailored for environments with high read-to-write ratios. Its form factor and interface compatibility facilitate scalable deployment across mainstream server and workstation platforms, ensuring balanced performance without excess write endurance overhead. |