| Brand | Micron |
|---|---|
| Model | 7450 PRO |
| Capacity | 3840GB |
| Usage Class | Enterprise |
| Host Interface | PCIe Gen4 NVMe |
|---|---|
| Total Interface Bandwidth | 16 Gb/s |
| Form Factor | U.3 7mm |
|---|
| NAND Flash | 3D TLC |
|---|---|
| Drive Writes Per Day | 1 |
| Total Bytes Written | 7300 TBW |
| Sequential Read | 6800 MB/s |
|---|---|
| Sequential Write | 5300 MB/s |
| Random Read IOPS | 1000000 |
| Random Write IOPS | 180000 |
| Average Latency | 80 μs |
| Mean Time Between Failures | 2 Million Hours |
|---|---|
| Uncorrectable Bit Error Rate | 1.0×10⁻¹⁷ |
| Power Loss Protection | Yes |
The Micron 7450 PRO 3.84TB is purpose-built for mixed-read/write enterprise workloads such as virtualized infrastructure, cloud boot volumes, and SQL/NoSQL databases, pairing PCIe Gen4 throughput up to 6800/5300 MB/s with 1,000,000 random read IOPS to reduce latency under sustained concurrency. With 3D TLC NAND, 1 DWPD endurance, and 7300 TBW in a mainstream U.2-class capacity point, it delivers a strong balance of performance density, predictable endurance, and cost efficiency for always-on data center deployments.
With an endurance rating of 7,300 TBW and 1 DWPD, the MTFDKCC3T8TFR-1BC1ZA is designed to handle a full drive write per day over its rated service life, which is more than sufficient for typical enterprise system-disk and mixed-read/write workloads. In practical terms, under normal OS, application, logging, and virtualization usage, this level of endurance supports long-term deployment with a wide margin and can comfortably serve as a reliable system drive for many years. For enterprise reliability, the drive includes power-loss protection (PLP), which helps preserve in-flight data and protects metadata integrity during unexpected power interruptions, reducing the risk of corruption and unclean shutdown issues. Its UBER of 1.0E-17 indicates an extremely low unrecoverable bit error rate, while the 2 million-hour MTBF further reflects a design optimized for stable, continuous operation in business-critical environments.
1. The PCIe Gen4 NVMe interface gives this drive the bandwidth needed to keep virtualization clusters, analytics nodes, and GPU servers fed without the storage bus becoming the bottleneck.
2. Its class-leading sequential read performance accelerates large file movement and dataset staging, reducing backup restores, media processing, and AI model load times in enterprise environments.
3. Extremely strong random read capability makes it ideal for high-concurrency workloads such as OLTP databases, VDI boot storms, and read-heavy cloud applications where fast access to small blocks drives user experience.
4. With enterprise-grade endurance paired with 3D TLC NAND, it offers a practical balance of write sustainability, capacity efficiency, and cost control for mainstream server deployments running steady daily updates.
5. Very low typical latency helps deliver more predictable response times for transaction systems and real-time services, supporting tighter SLA compliance under mixed workload pressure.
For the MTFDKCC3T8TFR-1BC1ZA 3840GB model, the nearest lower capacity in the same enterprise SSD family is typically 1920GB, and the next higher capacity is 7680GB. In this lineup, 3840GB is the sweet-spot capacity: it offers much better headroom than 1920GB for dataset growth, mixed workloads, and reduced overfill risk, while avoiding the higher acquisition cost of 7680GB. Since sequential throughput and random IOPS are generally similar across these capacities, 3840GB delivers the best cost-per-usable-space balance. It is especially well suited for a mid-scale virtualization cluster hosting around 40–60 general-purpose virtual machines.
Q: Is MTFDKCC3T8TFR-1BC1ZA suitable for a write-heavy database server?
A: Yes, it can support database workloads well. With 1 DWPD, 7300 TBW, 3D TLC NAND, low 80 µs latency, and PCIe Gen4 NVMe, it fits mixed to moderately write-heavy enterprise deployments.
Q: How many full drive writes per day can it actually endure over its warranty period?
A: This model is rated for 1 DWPD, meaning it can sustain one full drive write per day over its warranty period. For a 3840GB drive, that equals about 3.84TB of writes daily.
Q: Does it include power loss protection (PLP) and why is that critical?
A: Yes, it includes power loss protection. PLP helps preserve in-flight data and metadata during sudden power failure, reducing corruption risk and improving reliability in databases, virtualization, and other enterprise environments.
Q: What RAID level is recommended for this SSD?
A: The recommended RAID level depends on workload goals. RAID 1 or RAID 10 is preferred for performance and redundancy, while RAID 5 or RAID 6 may suit capacity-focused environments with acceptable write overhead.