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Micron MTFDHBE960TDF-1AW1ZABYY 960GB PCIE NVMe 3.0 x4 TLC U.2 SSD
- Capacity: 960GB
- Interface: PCIe 3.0 x4 NVMe
- Form Factor: U.2 (SFF-8639)
- NAND Type: TLC (Triple-Level Cell)
- Designed for high-performance computing and servers
- Offers significant improvements in read/write speeds and latency
- Supports NVMe protocol for enhanced efficiency
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Product Overview
The Micron MTFDHBE960TDF-1AW1ZABYY is a 960GB PCIe NVMe SSD utilizing TLC NAND flash. It features a U.2 form factor and connects via PCIe 3.0 x4, offering high-speed data transfer for demanding applications.
Technical Information
| Capacity | 960GB |
| Interface | PCIe 3.0 x4 NVMe |
| Form Factor | U.2 |
Additional Specifications
| NAND Type | TLC |
| Brand | Micron |
| Part Number | MTFDHBE960TDF-1AW1ZABYY |
Product Description
The Micron MTFDHBE960TDF-1AW1ZABYY is a high-performance solid-state drive engineered to meet the rigorous demands of modern data centers and high-performance computing environments. With a substantial 960GB capacity, it provides ample storage for large datasets and demanding applications. The drive leverages the NVMe protocol over a PCIe 3.0 x4 interface, unlocking significantly higher throughput and lower latency compared to traditional SATA or SAS interfaces. This SSD utilizes Triple-Level Cell (TLC) NAND flash memory, which offers a favorable balance of capacity, performance, and cost for enterprise applications. The U.2 form factor (also known as SFF-8639) is designed for hot-swappable installation in servers and workstations that support this connector, facilitating easier maintenance and upgrades. The PCIe 3.0 x4 connection ensures that the drive can operate at its full potential, delivering sequential read/write speeds and random IOPS that are orders of magnitude greater than older storage technologies. Ideal for workloads such as large-scale data analytics, virtualization, high-frequency trading, and content creation, the Micron MTFDHBE960TDF-1AW1ZABYY provides the speed and responsiveness required to accelerate these tasks. Its robust design and advanced flash management ensure data integrity and consistent performance, making it a reliable component in mission-critical systems.



