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Samsung PM983 3.84 TB PCIe Gen3 x4 NVMe SSD | Enterprise Storage
Samsung
MPN: MZQLB3T8HALS-00007
$1,328.92$1,503.76
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 3.84 TB enterprise solid-state storage
- PCIe Gen3 x4 host interface
- NVMe protocol support
- 2.5-inch drive form factor
- Samsung PM983 series
- Internal server storage deployment
- High-capacity flash for data-center workloads
- Accelerate application response times with PCIe Gen3 x4 NVMe connectivity
Sustain demanding server workloads with the Samsung PM983 3.84 TB enterprise SSD. Built around PCIe Gen3 x4 NVMe, it delivers the low-latency access pattern modern infrastructure expects from primary flash storage. The 2.5-inch form factor makes it easy to deploy in dense server bays where capacity, airflow, and serviceability all matter.
This drive is designed for environments where storage is part of the application experience, not just a repository. Virtualization hosts, database tiers, and mixed read-heavy workloads benefit from the responsiveness of NVMe over legacy SATA designs. With 3.84 TB available in a single drive, teams can reduce drive counts, simplify cabling, and improve usable density per chassis.
For procurement teams, the PM983 sits in the right place between commodity SSDs and higher-cost specialty media. It offers enterprise-class flash capacity and interface performance without forcing a redesign of the storage stack. For infrastructure teams, that means a cleaner path to faster boot volumes, application tiers, and local cache layers that need predictable behavior under load.
Ideal For
- Primary storage for virtualization hosts
- High-speed database and analytics tiers
- Boot and application volumes in rack servers
- Local flash cache for latency-sensitive workloads
Why This Product
- 1Higher capacity than typical 1.92 TB enterprise SSDs
- 2NVMe over PCIe Gen3 x4 for lower latency than SATA SSDs
- 32.5-inch format fits standard server bays
- 4Enterprise flash architecture suited to always-on workloads






