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Samsung MZ-WLL6T4A 6.4TB PCI Express 3.0 x4 TLC U.2 2.5-in SSD
- 6.4TB storage capacity
- PCI Express 3.0 x4 interface
- U.2 (SFF-8639) connector
- TLC (Triple-Level Cell) NAND flash
- 2.5-inch form factor
- Optimized for enterprise servers and workstations
- High throughput and IOPS
- Low latency
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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 Samsung MZ-WLL6T4A is a 6.4TB 2.5-inch U.2 SSD featuring a PCIe 3.0 x4 interface and TLC NAND. It is designed for high-performance enterprise storage solutions.
Technical Information
| Capacity | 6.4TB |
| Interface | PCIe 3.0 x4 |
| Form Factor | 2.5-inch U.2 |
Additional Specifications
| NAND Type | TLC |
| Connector | SFF-8639 |
Product Description
This Samsung MZ-WLL6T4A SSD offers a massive 6.4TB of storage capacity, making it suitable for environments that handle vast amounts of data. It utilizes the PCIe 3.0 x4 interface, providing significantly higher bandwidth than traditional SATA interfaces, and is coupled with the NVMe protocol for reduced latency and improved performance. The U.2 (SFF-8639) connector ensures a robust physical and electrical connection, commonly found in enterprise-grade servers and storage arrays. The drive employs TLC (Triple-Level Cell) NAND flash technology, which offers a good balance between storage density, performance, and cost-effectiveness for enterprise applications. This makes it a versatile choice for a wide range of workloads, including databases, virtualization, and data analytics. The 2.5-inch form factor is standard for enterprise SSDs, allowing for easy integration into existing server infrastructure. Designed for demanding enterprise use, the MZ-WLL6T4A is built for reliability and sustained performance. It is capable of handling high volumes of read and write operations, crucial for applications requiring fast data access and processing. Its combination of high capacity, speed, and enterprise-grade features makes it an excellent solution for upgrading storage performance and density in data centers.



