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✔ 1.92TB SATA 2.5-Inch Solid State Drive for read-intensive applications
✔ Max sequential read speeds up to 560 MB/s and write speeds up to 500 MB/s
✔ High random read and write IOPS for fast data access
✔ Uses Triple-Level Cell (TLC) NAND for efficient storage performance
| Product Overview |
|---|
The Dell 1.92TB 6Gb/s SATA 2.5-Inch Read Intensive Solid State Drive (part number 33R2T) is an excellent choice for businesses and environments requiring large storage capacity with fast data transfer speeds. The combination of high sequential read and write speeds, along with strong random IOPS performance, makes it a reliable storage solution for read-heavy applications. Ideal for enterprise settings, this SSD enhances productivity and system efficiency. |
| General Information | |
|---|---|
| Brand | Dell |
| Part Number | 33R2T |
| Drive Type | Internal (SSD) |
| Technical Information | |
|---|---|
| Capacity | 1.92TB |
| Memory Technology | Triple-Level Cell (TLC) |
| Form Factor | 2.5-inch |
| Interface | SATA 6GB/s |
| Performance | |
|---|---|
| Max Sequential Read | Up to 560 MB/s |
| Max Sequential Write | Up to 500 MB/s |
| Random Read | Up to 97,000 IOPS |
| Random Write | Up to 46,000 IOPS |
| Physical Characteristics | |
|---|---|
| Dimensions | 0.28 x 2.75 x 4.00 inches |
| Weight | 0.50 |
| Condition | Refurbished |
| Product Description |
|---|
The Dell 1.92TB 6Gb/s SATA 2.5-Inch Read Intensive Solid State Drive (part number 33R2T) is designed to meet the performance needs of demanding storage environments. This SSD offers impressive sequential read speeds up to 560 MB/s and write speeds up to 500 MB/s, providing a significant performance boost over traditional hard drives. With its 1.92TB capacity, this drive is ideal for read-intensive applications that require large data throughput. Key Features
This SSD delivers outstanding performance for data-centric applications, improving overall system responsiveness and reducing latency. It is a reliable solution for enterprises seeking efficient, high-performance storage for read-intensive workloads. |