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Product Overview |
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The HPE 1.92TB TLC Read Intensive SATA 6Gb/s 2.5-Inch SSD provides solid-state storage primarily designed for read-intensive workloads. Featuring a 1.92TB capacity, TLC NAND technology, and a SATA 6Gb/s interface, it fits typical enterprise environments requiring standard 2.5-inch drives for data access-focused applications. |
General Information |
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| Brand | HPE |
Technical Information |
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| Capacity | 1.92TB |
| NAND Flash | TLC |
| Memory Technology | Triple-Level Cell (TLC) |
| Form Factor | 2.5-inch |
| Interface | SATA 6GB/s |
| Hot Swappable | Yes |
| Hot Pluggable | Yes |
Physical Characteristics |
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| Weight | 0.60 |
| Condition | Refurbished |
Product Description |
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The HPE 1.92TB TLC Read Intensive SATA 6Gb/s 2.5-Inch SSD is a solid-state drive designed to provide substantial storage capacity with a focus on read-intensive performance. It is commonly used in enterprise IT environments that require reliable data access with efficient read operations. This SSD employs TLC (Triple-Level Cell) NAND technology, making it suitable for workloads dominated by reading rather than writing. The SATA 6Gb/s interface ensures compatibility with a wide range of systems using standard SATA connections, while the 2.5-inch form factor aligns with conventional enterprise server and storage device bays. Key Features
This SSD plays a practical role in enterprise data centers and storage arrays where read operations predominate, such as database queries and content delivery. Its configuration supports maintaining consistent read throughput in systems requiring large-capacity solid-state storage. |
Use Cases |
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This SSD is typically deployed in enterprise IT settings where read-intensive workloads are common. It is suited for environments that demand high-capacity, reliable storage with standard SATA connectivity and form factor compatibility, benefiting database management and content distribution systems. How It's Used:
The drive’s role centers on delivering dependable read access within enterprise storage environments. It facilitates maintaining operational efficiency in systems where reading data is the primary activity over writing. |
FAQ's |
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