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HP 875583-B21 400GB PCI Express NVMe 3.0 x4 MLC M.2 22110 SSD
- Capacity: 400GB
- Interface: PCI Express (PCIe) NVMe 3.0 x4
- Form Factor: M.2 22110
- Drive Type: Solid State Drive (SSD)
- NAND Type: Multi-Level Cell (MLC)
- Designed for high performance and endurance
- Offers significantly faster data access than SATA SSDs
- Suitable for mixed workloads including read and write operations
- Enterprise-grade reliability for mission-critical applications
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Product Overview
The HP 875583-B21 is a 400GB PCI Express NVMe 3.0 x4 MLC M.2 22110 SSD. It provides high-speed, enterprise-grade storage optimized for demanding workloads with a focus on endurance and performance.
Technical Information
| Storage Capacity | 400 GB |
| Interface | PCIe NVMe 3.0 x4 |
| Form Factor | M.2 22110 |
| Drive Type | Solid State Drive |
Additional Specifications
| NAND Flash Type | MLC |
| Protocol | NVMe |
| Manufacturer | HP |
Product Description
The HP 875583-B21 is a high-performance solid-state drive designed for enterprise environments that demand speed, reliability, and endurance. Featuring the NVMe protocol over a PCIe 3.0 x4 interface, this drive offers substantially higher throughput and lower latency compared to traditional SATA-based storage solutions. Its 400GB capacity provides a solid foundation for operating systems, critical applications, and datasets that require rapid access. The drive utilizes Multi-Level Cell (MLC) NAND flash memory, which typically offers a good balance between performance, endurance, and cost for enterprise applications. The M.2 22110 form factor, characterized by its longer length, allows for more NAND flash chips and potentially better thermal dissipation, enabling sustained high performance under demanding conditions. This makes it suitable for a wide range of mixed workloads, including transactional databases, virtualization, and application acceleration. By employing the NVMe protocol, the 875583-B21 communicates directly with the host system's CPU via PCIe lanes, bypassing the bottlenecks associated with the SATA interface and AHCI driver. This direct communication path results in significantly improved IOPS (Input/Output Operations Per Second) and reduced latency, leading to faster application response times and more efficient data processing. It is an excellent choice for servers and workstations requiring top-tier storage performance for mission-critical operations.



