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Product Overview |
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The HP 3.2TB PCI Express NVMe 3.0 x8 Read Intensive HHHL Add-In Card Solid State Drive offers a balance of high storage capacity and swift read speeds. It fits into standard server slots, making it suitable for enterprise applications that demand fast and reliable access to large volumes of data. |
General Information |
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| Brand | HP |
| Part Number | 874432-002 |
Technical Information |
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| Capacity | 3.2TB |
| Memory Technology | Enterprise Triple-Level Cell (eTLC) |
| Form Factor | PCIe Add-in Card |
| Interface | PCIe Gen 3.0 x8 |
| Hot Swappable | No |
| Hot Pluggable | No |
Physical Characteristics |
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| Weight | 1.10 |
| Condition | Refurbished |
Product Description |
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This HP 3.2TB PCI Express NVMe solid state drive is built to deliver high-capacity storage with rapid read performance. It's commonly used in data centers and enterprise servers where fast access to large datasets is critical. IT professionals and system administrators often choose this SSD for read-heavy applications such as database querying, content delivery, and virtualization. Key Features
This SSD is typically deployed in enterprise environments requiring reliable and fast data access, such as cloud infrastructure and analytics platforms. Its read-focused design helps improve efficiency where quick retrieval outweighs write frequency, making it a practical choice for many IT setups. |
Use Cases |
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The HP 3.2TB PCI Express NVMe 3.0 x8 Read Intensive HHHL Add-In Card SSD is designed for data-heavy environments where rapid read performance is critical. It is particularly suited for enterprise IT infrastructures that require reliable high-capacity storage optimized for read-dominant workloads, such as large-scale databases and analytics platforms. How It's Used:
This SSD enables organizations to scale storage capacity while maintaining rapid data access, helping to optimize operational workflows. Its form factor and interface support seamless integration into existing server architectures, contributing to efficient resource utilization and improved overall system performance. |