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Micron MTFDKCB1T9TDZ-1AZ1ZABYYR 1.92TB PCI Express NVMe 4.0 2.5-inch SSD
- 1.92TB storage capacity
- NVMe (Non-Volatile Memory Express) protocol
- PCI Express 4.0 interface
- 2.5-inch form factor
- High-speed data transfer rates
- Designed for enterprise and high-performance computing
- Offers significant improvements in read/write performance over SATA SSDs
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Product Overview
The Micron MTFDKCB1T9TDZ-1AZ1ZABYYR is a 1.92TB NVMe SSD utilizing PCI Express 4.0 interface in a 2.5-inch form factor. It offers high-speed data storage and retrieval for demanding applications.
Technical Information
| SKU | MTFDKCB1T9TDZ-1AZ1ZABYYR |
| Brand | Micron |
| Capacity | 1.92TB |
Additional Specifications
| Form Factor | 2.5-inch |
| Interface | PCI Express NVMe 4.0 |
| Protocol | NVMe |
Product Description
The Micron MTFDKCB1T9TDZ-1AZ1ZABYYR is a high-capacity solid-state drive (SSD) engineered for performance-intensive computing environments. With a substantial storage capacity of 1.92 Terabytes, it provides ample space for large datasets, operating systems, applications, and virtual machines. The drive leverages the NVMe protocol, which is specifically designed to take full advantage of the high bandwidth and low latency offered by the PCI Express interface. Utilizing the PCI Express 4.0 interface, this SSD delivers significantly faster data transfer speeds compared to older PCIe generations and traditional SATA interfaces. This translates to quicker boot times, faster application loading, and accelerated file transfers, making it ideal for workstations, servers, and high-performance storage arrays. The 2.5-inch form factor ensures broad compatibility with standard drive bays found in most servers and desktops. This Micron SSD is built for reliability and sustained performance, making it a suitable choice for mission-critical applications where speed and responsiveness are paramount. Its advanced NAND flash technology and NVMe architecture enable it to handle demanding workloads, including heavy read and write operations, with exceptional efficiency.



