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Micron MTFDKBG3T8TFR-1BC1ZABYY 3.84TB PCI Express NVMe 4.0 TLC M.2 SSD
- Capacity: 3.84TB.
- Form Factor: M.2.
- Interface: PCI Express NVMe 4.0.
- NAND Type: TLC (Triple-Level Cell).
- Designed for high-performance computing.
- Offers significantly faster read/write speeds than SATA SSDs.
- Suitable for workstations, servers, and high-end desktops.
- Leverages NVMe protocol for optimized performance.
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Typically 1-2 handling + 3-7 transit days
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Product Overview
The Micron MTFDKBG3T8TFR-1BC1ZABYY is a 3.84TB M.2 Solid State Drive (SSD) utilizing the NVMe 4.0 interface. It employs TLC NAND flash memory and is designed for high-speed data storage and retrieval in performance-critical applications.
Technical Information
| Product Type | Solid State Drive (SSD) |
| Capacity | 3.84TB |
| Form Factor | M.2 |
Additional Specifications
| Interface | PCI Express NVMe 4.0 |
| NAND Flash Type | TLC |
| Brand | Micron |
Product Description
The Micron MTFDKBG3T8TFR-1BC1ZABYY is a cutting-edge Solid State Drive (SSD) that leverages the latest advancements in storage technology to deliver exceptional performance. With a substantial capacity of 3.84TB, this drive provides ample space for large datasets, operating systems, applications, and media files. Its M.2 form factor allows for compact integration into modern motherboards and laptops, while the PCI Express NVMe 4.0 interface unlocks unprecedented data transfer speeds. Utilizing the NVMe (Non-Volatile Memory Express) protocol, this SSD is optimized for flash storage, enabling it to communicate directly with the CPU via PCIe lanes. This bypasses the traditional SATA bottleneck, resulting in significantly lower latency and much higher sequential read and write speeds compared to SATA-based SSDs. The drive employs TLC (Triple-Level Cell) NAND flash memory, which offers a good balance between performance, endurance, and cost-effectiveness for high-capacity storage solutions. This Micron SSD is ideal for users and professionals who demand the utmost in storage performance. Applications such as high-resolution video editing, large-scale data analysis, complex simulations, and demanding gaming environments will benefit immensely from the rapid data access provided by this drive. Its combination of high capacity, advanced interface, and efficient NAND technology makes it a powerful component for building high-performance computing systems.



