
Subscribe To Our Newsletter!
Subscribe to the newsletter to stay up to date with the latest news and most useful
Newsletter
↑
Back to Top
Product Overview |
|---|
The P63849-B21 HPE 3.2 TB NVMe MU SFF BC U.3 CM7 SSD offers a high-capacity, NVMe-based solid state drive solution tailored for enterprise storage needs. Designed with a Multi-Use Small Form Factor and U.3 interface, it fits within HPE systems requiring scalable and compact storage components. |
General Information |
|
|---|---|
| Brand | HPE |
Technical Information |
|
|---|---|
| Capacity | 3.2TB |
| NAND Flash | 3D TLC NAND |
| Memory Technology | Triple-Level Cell (TLC) |
| MTBF | 2000000 hours |
| Hot Swappable | Yes |
| Hot Pluggable | Yes |
Physical Characteristics |
|
|---|---|
| Weight | 0.60 |
| Condition | Refurbished |
Miscellaneous |
|
|---|---|
| Eco Friendly | Yes |
| Compliance Standards | WEEE, RoHS, CE, FCC, UL, TUV, cULus |
Product Description |
|---|
The P63849-B21 HPE 3.2 TB NVMe MU SFF BC U.3 CM7 SSD is a solid state drive engineered to provide substantial storage capacity within a compact form factor. It is primarily utilized in enterprise server and storage environments where reliable and scalable storage is required. This drive is suitable for IT professionals managing data centers and enterprise infrastructures that demand large volume storage with NVMe technology advantages. Key Features
By integrating this SSD, organizations can maintain extensive data storage capabilities while utilizing space-efficient hardware. Its design supports data center environments where capacity and compatibility are critical factors. |
Use Cases |
|---|
This SSD is typically deployed in enterprise data centers and server environments where substantial storage capacity and NVMe technology are essential. It serves workloads requiring fast data access and reliable storage within HPE server architectures. How It's Used:
Overall, this SSD plays a crucial role in enabling efficient storage management in enterprise systems, balancing capacity with form factor constraints. It aligns with operational requirements for data-intensive workloads. |
FAQ's |
|---|
|