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HP LK0800GEYMU 800GB 6Gb/s SATA Multi-Level Cell 2.5-inch SSD
- Capacity: 800GB
- Interface: SATA 6Gb/s (SATA III)
- Form Factor: 2.5-inch
- NAND Flash Type: Multi-Level Cell (MLC)
- Designed for enterprise-grade performance and endurance.
- High read/write speeds for demanding workloads.
- Supports TRIM command for performance optimization.
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Typically 1-2 handling + 3-7 transit days
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For government, enterprise, data center, and small business customers.
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Product Overview
The HP LK0800GEYMU is an 800GB 2.5-inch Solid State Drive (SSD) utilizing SATA 6Gb/s interface and Multi-Level Cell (MLC) NAND flash technology. It is designed for enterprise environments requiring high performance and reliability.
Technical Information
| Capacity | 800GB |
| Interface | SATA 6Gb/s (SATA III) |
| Form Factor | 2.5-inch |
| NAND Flash Type | Multi-Level Cell (MLC) |
Additional Specifications
| Drive Type | Solid State Drive (SSD) |
| Rotation Speed | N/A (Solid State) |
| Cache | Varies by specific model revision, typically enterprise-grade |
| Features | TRIM Support, Power Loss Protection (typical for enterprise SSDs) |
Product Description
The HP LK0800GEYMU is an enterprise-class 2.5-inch Solid State Drive offering a substantial 800GB of storage capacity. It connects via the SATA 6Gb/s interface, also known as SATA III, which provides significantly higher data transfer rates compared to older SATA standards. This makes it suitable for servers, workstations, and storage arrays that demand fast access to data. This SSD utilizes Multi-Level Cell (MLC) NAND flash memory. MLC technology offers a good balance between performance, endurance, and cost for enterprise applications. It allows for higher data density compared to Single-Level Cell (SLC) NAND, while generally providing better endurance and performance than Triple-Level Cell (TLC) or Quad-Level Cell (QLC) NAND, making it a reliable choice for read-intensive and mixed-use workloads in demanding environments. The 2.5-inch form factor ensures compatibility with a wide range of server and storage chassis. The drive is engineered for enterprise-level reliability and performance, featuring advanced wear-leveling algorithms, error correction code (ECC), and support for the TRIM command to maintain optimal performance over its lifespan. It is designed to handle the rigorous demands of continuous operation and heavy I/O operations.



