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Product Overview |
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The 0B24935-CML Compellent 200GB Single-Level Cell SAS SSD provides fast, dependable storage optimized for enterprise-level solutions. It fits into 2.5-inch drive slots and connects via a 6Gb/s SAS interface, making it a solid choice for use within Dell Compellent arrays and similar storage platforms that demand speed and endurance. |
General Information |
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| Brand | Compellent |
| Part Number | 0B24935-CML |
Technical Information |
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| Capacity | 200GB |
| NAND Flash | Single-Level Cell (SLC) |
| Memory Technology | Single-Level Cell (SLC) |
| Form Factor | 2.5-inch |
| Interface | SAS 6Gb/s |
| Hot Swappable | Yes |
| Hot Pluggable | Yes |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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This 200GB Single-Level Cell SAS solid-state drive is built for enterprise storage systems requiring reliable, high-speed data access. Commonly found in data centers and high-demand environments, it offers consistent performance and endurance. IT professionals and system administrators often use it to enhance storage arrays and improve overall system responsiveness. Key Features
Typically deployed in enterprise storage environments, this SSD helps reduce latency and improves storage reliability. It’s well suited for applications like databases, virtualization, and transactional systems where performance and data integrity matter. |
Use Cases |
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The 0B24935-CML Compellent 200GB Single-Level Cell SAS SSD is designed for environments where high-speed, reliable storage is critical. It is particularly suited for enterprise data centers and virtualization platforms requiring consistent low-latency access to frequently accessed data. IT teams managing storage clusters in mid to large-scale deployments benefit from its endurance and SAS connectivity. How It's Used:
This SSD contributes to operational efficiency by delivering consistent, high-throughput storage suitable for demanding workloads. Its integration into scalable storage arrays supports expanding enterprise infrastructure without compromising performance. |