Micron MTFDLBQ1T9THG-1BP1DFCYYT 1920GB 7600 PRO PCIe Gen5 NVMe E3.S Data Center Solid State Drive

MPN:MTFDLBQ1T9THG-1BP1DFCYYT By:Micron Warranty:1 year
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General

BrandMicron
Model7600 PRO
Capacity1920GB
Usage ClassData Center

Interface

Host InterfacePCIe Gen5 NVMe
Total Interface Bandwidth32 Gb/s

Physical Dimension

Form FactorE3.S

Flash & Endurance

NAND Flash3D TLC
Drive Writes Per Day1
Total Bytes Written3500 TBW

Performance

Sequential Read12000 MB/s
Sequential Write3300 MB/s
Random Read IOPS1800000
Random Write IOPS180000
Average Latency60 μs

Reliability

Mean Time Between Failures2.5 Million Hours
Uncorrectable Bit Error Rate1.0×10⁻¹⁷
Power Loss ProtectionYes

Engineer's Note

Micron 7600 PRO 1920GB is purpose-built for read-intensive AI data staging, high-frequency content delivery, and low-latency boot/storage tiers, combining PCIe Gen5 bandwidth with up to 12,000 MB/s sequential read and 1.8M random read IOPS in a compact 1 DWPD 3D TLC design. Compared with typical mainstream Gen4 SSDs in the same capacity class, it delivers a clear step up in host read throughput and transaction density, making it a strong fit for infrastructure that must accelerate dataset access and fan-out reads without overprovisioning endurance.

Endurance & Reliability

With an endurance rating of 3,500 TBW and 1 DWPD, the MTFDLBQ1T9THG-1BP1DFCYYT is designed to sustain the equivalent of writing its full capacity once per day across its rated service life, which is more than sufficient for typical enterprise boot, OS, and mixed read/write application workloads. In practical terms, for common system-disk usage and many server-side deployments, this level of endurance supports long-term operation with substantial write headroom, making 10-year worry-free use for light-to-moderate workloads a realistic expectation from a wear perspective. For enterprise reliability, built-in power loss protection helps preserve in-flight data and metadata during unexpected power interruption, reducing the risk of corruption and improving recovery confidence. Its UBER specification of 1.0E-17 indicates an extremely low unrecoverable bit error rate for high-integrity data environments, while the 2.5 million-hour MTBF further reflects a design optimized for dependable continuous operation.

Technical Specs & Insights

1. The PCIe Gen5 NVMe interface provides next-generation host bandwidth and lower protocol overhead, helping dense servers feed GPUs, databases, and analytics pipelines with less storage-side contention.
2. Its sequential read performance is built for moving massive datasets fast, shortening AI model staging, backup restore windows, and large-scale media or genomic scan times.
3. The very high random read capability enables consistently fast access to small-block data, which is critical for virtualized infrastructure, OLTP databases, and high-concurrency cloud workloads.
4. The endurance profile is well aligned with mainstream enterprise read-intensive deployments, allowing predictable daily rewrite capacity without overpaying for heavier mixed-use endurance tiers.
5. Built on 3D TLC NAND with low typical latency, the drive balances cost-efficient enterprise capacity with responsive QoS, reducing tail-latency impact in latency-sensitive applications.

Capacity Sweet

Lower capacity: 960GB Higher capacity: 3840GB At 1920GB, this SSD sits at the sweet spot of the family. Compared with the 960GB model, it gives substantially more headroom for OS images, application growth, logs, and overprovisioning flexibility, reducing early capacity pressure in always-on enterprise environments. Compared with the 3840GB option, it delivers nearly the same class of enterprise read/write and random IOPS behavior while keeping acquisition cost, rebuild exposure, and per-node storage budgeting under better control. It is especially well suited for mid-scale virtualization clusters, such as hosting boot and application volumes for about 40 to 60 mixed-workload virtual machines.

FAQ

Q: Is MTFDLBQ1T9THG-1BP1DFCYYT suitable for a write-heavy database server?

A: Yes, it can support database workloads, but with 1 DWPD it is better suited for mixed or moderate write-intensive environments rather than extremely write-heavy servers with continuously high daily overwrite rates.

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 handle one full drive write per day over its warranty period, consistent with its 3500 TBW endurance specification.

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 unexpected power failure, which is critical for maintaining data integrity and reducing corruption risk.

Q: What RAID level is recommended for this SSD?

A: RAID 1, RAID 10, or RAID 5/6 may be selected depending on performance, redundancy, and capacity goals. For database and enterprise workloads, RAID 10 is commonly recommended for balanced performance and protection.

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