
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 HP 1.92TB TLC SATA 6Gb/s 3.5-inch SSD offers a solid mix of storage capacity and performance for environments that need dependable mixed-use drives. It fits well into enterprise hardware setups where consistent data handling and value are key considerations rather than peak speed alone. |
| General Information | |
|---|---|
| Brand | HP |
| Part Number | P19984-K21 |
| Technical Information | |
|---|---|
| Capacity | 1.92TB |
| NAND Flash | Triple-Level Cell (TLC) |
| Memory Technology | Triple-Level Cell (TLC) |
| Form Factor | 3.5-inch |
| Interface | SATA 6GB/s |
| Hot Swappable | Yes |
| Hot Pluggable | Yes |
| Performance | |
|---|---|
| Max Sequential Read | Up to 560 MB/s |
| Max Sequential Write | Up to 520 MB/s |
| Physical Characteristics | |
|---|---|
| Dimensions | 26.1 x 101.6 x 146.99 mm |
| Weight | 1.10 |
| Condition | Refurbished |
| Miscellaneous | |
|---|---|
| Eco Friendly | Yes |
| Compliance Standards | WEEE, RoHS, CE, FCC |
| Product Description |
|---|
This HP 1.92TB SATA solid-state drive delivers a blend of capacity and performance tailored for mixed-use workloads. It features TLC NAND technology, providing a reliable storage solution for environments that demand consistent read and write operations. Often found in enterprise servers, storage arrays, and data centers, this drive is built to handle diverse applications such as database management, virtualization, and content delivery. IT professionals and system administrators benefit from its balance of speed and endurance without sacrificing storage space. Key Features
In practice, this SSD is typically deployed within server environments where both capacity and moderate endurance matter. It plays a significant role in ensuring smooth operation of business-critical applications without the expense of higher-endurance drives. Users appreciate its practical balance between performance and capacity in mixed workload scenarios. |