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Micron MTFDHAL6T4TDR-1AT1ZA 6.4TB PCI Express NVMe 3.0 x4 TLC U.2 SSD
- Capacity: 6.4TB
- Interface: PCI Express (PCIe) 3.0 x4
- Protocol: NVMe (Non-Volatile Memory Express)
- NAND Type: TLC (Triple-Level Cell)
- Form Factor: U.2 (2.5-inch)
- Designed for enterprise and data center use
- High read/write performance
- Low latency
- Supports hot-swap
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Product Overview
The Micron MTFDHAL6T4TDR-1AT1ZA is a 6.4TB enterprise-grade Solid State Drive (SSD). It features a PCI Express (PCIe) 3.0 x4 interface utilizing NVMe protocol and TLC NAND flash, designed for high-performance computing and data center applications.
Technical Information
| Capacity | 6.4TB |
| Interface | PCIe 3.0 x4 |
| Protocol | NVMe |
| NAND Flash Type | TLC |
Additional Specifications
| Form Factor | U.2 (2.5-inch) |
| Brand | Micron |
| Model | MTFDHAL6T4TDR-1AT1ZA |
| Target Application | Enterprise / Data Center |
Product Description
The Micron MTFDHAL6T4TDR-1AT1ZA is a high-capacity, enterprise-class Solid State Drive (SSD) engineered for demanding workloads in data centers and high-performance computing environments. With a massive 6.4TB capacity, it provides ample storage for large datasets, virtual machines, and intensive applications. The drive utilizes the NVMe protocol over a PCIe 3.0 x4 interface, which is specifically designed to take full advantage of flash memory, delivering significantly higher throughput and lower latency compared to traditional SATA-based SSDs. This SSD employs Triple-Level Cell (TLC) NAND flash technology, offering a good balance between storage density, performance, and cost for enterprise applications. The U.2 form factor (also known as SFF-8639) allows it to be installed in standard 2.5-inch drive bays, often found in modern servers and storage arrays, and supports hot-swapping capabilities for easier maintenance and upgrades without system downtime. The combination of NVMe, PCIe 3.0 x4, and a large TLC NAND capacity makes the MTFDHAL6T4TDR-1AT1ZA an ideal solution for applications requiring rapid data access, such as big data analytics, high-frequency trading, large-scale databases, and content delivery networks. Its robust design and performance characteristics are tailored to meet the rigorous demands of continuous operation in enterprise settings.



