Lenovo
E3.S 1T VA 12.8TB MU NVME HS V2
Out of Stock
Lenovo 4XB7A93139 E3.S 12.8 TB MU NVMe HS v2 | Enterprise SSD
Lenovo
MPN: 4XB7A93139
$27,812.32$30,499.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 12.8 TB storage capacity
- NVMe solid-state drive
- E3.S form factor
- Hot-swap capable design
- Mixed-use workload class
- Lenovo OEM storage drive
- Enterprise server deployment
- Expand performance storage tiers with 12.8 TB capacity
Keep performance tiers responsive as data sets grow with Lenovo’s 12.8 TB E3.S NVMe hot-swap drive. Designed for mixed-use enterprise workloads, it gives storage architects a way to add substantial flash capacity without moving to larger drive footprints or sacrificing serviceability.
The E3.S form factor is built for dense server platforms that need efficient airflow, high media density, and straightforward maintenance. In environments where downtime is expensive, hot-swap support helps teams replace or service drives without taking the system offline. That matters in virtualization clusters, database nodes, and storage-heavy application servers where every bay has a job to do.
This drive is a practical choice when you need more than commodity SSD capacity. It is aimed at infrastructure teams that care about predictable behavior under mixed read/write activity, consistent rack utilization, and a storage layer that can keep pace with enterprise workloads. For buyers comparing lower-cost alternatives, the value here is in the combination of capacity, NVMe responsiveness, and deployment flexibility in a modern hot-swap design.
Ideal For
- Virtualization hosts needing dense flash capacity
- Database servers requiring low-latency storage tiers
- Scale-out storage nodes with hot-swap serviceability
- Application servers consolidating mixed read/write workloads
Why This Product
- 1Higher capacity than typical 800 GB and 1.92 TB enterprise SSDs
- 2E3.S format supports denser server designs than 2.5-inch drives
- 3Hot-swap serviceability reduces maintenance disruption
- 4NVMe interface suits latency-sensitive mixed workloads



