Lenovo
2.5IN U.2 PS1010 3.84TB RI NVME HS
Out of Stock
Lenovo PS1010 3.84TB U.2 NVMe SSD 4XB7A97901 | Enterprise Storage
Lenovo
MPN: 4XB7A97901
$13,221.65$14,499.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 3.84 TB storage capacity
- NVMe drive interface
- 2.5-inch U.2 form factor
- Read-intensive SSD profile
- Hot-swappable design
- Lenovo PS1010 series
- MPN 4XB7A97901
- Accelerate read-heavy workloads with 3.84 TB of NVMe flash
Move read-heavy workloads onto storage that keeps pace with demand. This Lenovo PS1010 3.84 TB U.2 NVMe solid-state drive is built for enterprise environments that need fast access, predictable response times, and efficient serviceability. The 2.5-inch U.2 form factor fits modern server bays, while NVMe connectivity gives infrastructure teams the throughput advantage expected from flash in performance-sensitive tiers.
Its read-intensive profile makes it a practical choice for boot volumes, virtualization layers, analytics staging, and application data that is read often and written less frequently. That balance helps preserve endurance where it matters, while still delivering the responsiveness needed to keep systems moving.
For procurement teams, this is the kind of drive that earns its place in the bill of materials. Lenovo qualification supports platform alignment, and the PS1010 family is positioned for enterprise deployments where uptime, service access, and storage density all matter. When the workload justifies flash, this drive delivers the right mix of capacity and operational discipline.
Ideal For
- Boot drives for enterprise servers
- Virtualization storage for read-heavy VM clusters
- Analytics staging and query acceleration
- Application data tiers requiring low-latency access
Why This Product
- 1Faster response than SATA SSDs in latency-sensitive tiers
- 2Read-intensive design better aligned to mixed-read enterprise workloads
- 3U.2 NVMe format supports modern server platforms
- 4Hot-swappable serviceability reduces maintenance disruption



