Overview The Micron MTFDKCC25T6TGJ-1BC1ZABYYR is a high-capacity enterprise NVMe solid state drive designed to deliver exceptional speed and endurance for demanding data center applications. With a massive 25.6TB storage capacity and PCIe 4.0 interface, it achieves up to 7,000 MB/s for sequential reads and writes, making it well suited for workloads that require fast, consistent data access. Its U.3 2.5-inch form factor fits standard 15 mm drive bays, allowing easy integration into existing server and storage systems. Key features Delivers ultra-fast sequential read and write speeds of up to 7,000 MB/s to accelerate data-intensive tasks and reduce processing times. Supports up to 1.5 million random read IOPS and 300,000 random write IOPS, ensuring responsive performance for real-time analytics and virtualization. Endurance rating of 140,160 terabytes written supports heavy write workloads such as log collection, online transaction processing, and AI dataset preparation. U.3 interface and 2.5-inch 15 mm form factor enable straightforward upgrades in many enterprise chassis without requiring specialized adapters. Backed by a 5-year limited warranty, providing confidence in reliability and long-term operation in critical environments. Key specs Capacity: 25.6 TB Interface: PCIe 4.0 x4 NVMe Form factor: U.3 2.5-inch, 15 mm height Sequential read speed: up to 7,000 MB/s Sequential write speed: up to 7,000 MB/s Random read IOPS: up to 1.5 million Random write IOPS: up to 300,000 Endurance: 140,160 terabytes written (TBW) Weight: approximately 0.55 lb Warranty: 5-year limited Connectivity and compatibility This drive uses the U.3 interface, which combines NVMe performance with compatibility for standard 2.5-inch 15 mm drive bays commonly found in enterprise servers and storage arrays. The PCIe 4.0 x4 connection ensures maximum throughput when paired with compatible motherboards and controllers, making it a strong choice for data centers upgrading to next-generation storage solutions. Ideal uses and environments The 9400 MAX excels in environments where sustained high performance and large capacity are essential. It is well suited for accelerating databases, media streaming servers, edge analytics devices, and high-performance computing clusters. Its endurance and speed make it a reliable option for workloads that generate heavy write traffic, such as transaction processing and AI data preparation, fitting well into enterprise infrastructures that demand predictable latency and consistent throughput.