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HP E7W25B 920GB 6Gb/s SAS Multi-Level Cell 3.5-inch Solid State Drive
- Capacity: 920GB
- Interface: 6Gb/s SAS
- Form Factor: 3.5-inch
- NAND Type: Multi-Level Cell (MLC)
- Designed for high-performance enterprise servers and storage systems.
- Provides significantly faster data access than traditional HDDs.
- Supports mixed read/write workloads with good endurance.
- SKU: E7W25B
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Product Overview
The HP E7W25B is a 920GB 3.5-inch Solid State Drive (SSD) with a 6Gb/s SAS interface. It utilizes Multi-Level Cell (MLC) NAND flash, offering a blend of performance, capacity, and endurance for enterprise applications.
Technical Information
| Capacity | 920GB |
| Interface | 6Gb/s SAS |
| Form Factor | 3.5-inch |
Additional Specifications
| NAND Type | MLC |
| Drive Type | Solid State Drive (SSD) |
| Manufacturer | HP |
Product Description
The HP E7W25B is a 920GB 3.5-inch solid-state drive designed for enterprise environments. It features a 6Gb/s SAS (Serial Attached SCSI) interface, which provides a high-speed, reliable connection suitable for demanding server and storage applications. The drive utilizes Multi-Level Cell (MLC) NAND flash memory, offering a robust balance between performance, capacity, and endurance for mixed workloads. This SSD is engineered to deliver significantly improved performance over traditional hard disk drives, reducing latency and accelerating application response times. Its 3.5-inch form factor ensures compatibility with a wide range of enterprise server chassis. The 6Gb/s SAS interface offers advantages such as dual-porting capabilities for redundancy and higher throughput compared to SATA interfaces. The HP E7W25B is an ideal solution for businesses requiring fast and dependable storage for critical applications, databases, virtualization, and high-performance computing. The MLC NAND technology provides good endurance characteristics, making it suitable for environments with frequent read and write operations. This drive represents a substantial upgrade for servers seeking enhanced I/O performance and reliability.


