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Micron MTFDHAL3T8TDP-1AT1ZA 3.84TB PCI Express NVMe 3.0 x4 TLC U.2 SSD
- Capacity: 3.84TB
- Interface: PCI Express NVMe 3.0 x4
- Form Factor: U.2 (2.5-inch)
- NAND Type: TLC (Triple-Level Cell)
- Designed for high-performance enterprise applications.
- Offers fast data transfer rates via NVMe protocol.
- Provides significant storage capacity for data-intensive tasks.
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Product Overview
The Micron MTFDHAL3T8TDP-1AT1ZA is a 3.84TB U.2 SSD utilizing a PCI Express NVMe 3.0 x4 interface. It employs TLC NAND flash technology, offering a balance of performance, endurance, and cost-effectiveness for demanding enterprise workloads.
Technical Information
| Capacity | 3.84TB |
| Interface | PCI Express NVMe 3.0 x4 |
| Form Factor | U.2 (2.5-inch) |
Additional Specifications
| NAND Flash Type | TLC |
| Manufacturer | Micron |
| Part Number | MTFDHAL3T8TDP-1AT1ZA |
Product Description
The Micron MTFDHAL3T8TDP-1AT1ZA represents a high-performance storage solution designed for the most demanding enterprise environments. This 3.84TB U.2 SSD leverages the cutting-edge PCI Express NVMe 3.0 x4 interface, enabling significantly faster data transfer speeds compared to traditional SATA interfaces. The NVMe protocol is optimized for flash storage, reducing latency and maximizing throughput, making this drive ideal for applications requiring rapid data access and processing. Utilizing TLC (Triple-Level Cell) NAND flash technology, this SSD strikes an effective balance between capacity, performance, and cost. TLC NAND offers higher densities and is more cost-effective per gigabyte than MLC or SLC NAND, while still providing sufficient endurance and speed for a wide range of enterprise workloads. The U.2 form factor ensures compatibility with servers and storage systems that support this modern interface standard. This drive is engineered for mission-critical applications such as large-scale databases, high-performance computing, real-time analytics, and intensive virtualization environments. Its substantial capacity combined with the raw speed of NVMe makes it capable of handling massive datasets and complex I/O operations with exceptional efficiency, contributing to overall system performance and responsiveness.


