DELL
DELL C9R60 960GB 24Gbps SAS 2.5 enterprise SSD
A 960 GB enterprise SAS SSD with 24 Gbps interface for read-intensive workloads in Dell PowerEdge servers
- InterfaceSAS
- 960 GB capacity supports large enterprise workloads
- 24 Gbps SAS interface delivers high-speed data transfer
- Read-intensive TLC design optimised for frequent read operations
- 5 inch form factor fits standard server drive bays
- Compatible with Dell PowerEdge servers including R740 and R750
Dell 960 GB SAS enterprise SSD
This Dell C9R60 drive delivers 960 GB of read-intensive TLC storage over a 24 Gbps SAS interface in a 2.5-inch form factor. It is built for Dell PowerEdge servers that require high-throughput, low-latency storage for database and virtualization workloads.
Suited for read-heavy server workloads
The drive targets read-intensive applications such as web serving, content delivery and virtual desktop infrastructure where write endurance demands are modest. Environments with sustained heavy write traffic or mixed read-write profiles should evaluate higher endurance alternatives.
24 Gbps SAS interface speed
The 24 Gbps SAS link is the decisive specification; the host backplane and controller must support this signalling rate to realise the rated throughput. Systems limited to 12 Gbps SAS will operate the drive at the lower speed.
Puntos fuertes
- 960 GB capacity supports large enterprise workloads
- 24 Gbps SAS interface delivers high-speed data transfer
- Read-intensive TLC design optimised for frequent read operations
- 5 inch form factor fits standard server drive bays
- Compatible with Dell PowerEdge servers including R740 and R750
Especificaciones
| Brand | Dell |
|---|---|
| Model | C9R60, KPM6XRUG960G |
| Interface | SAS |
Preguntas sobre este artículo
Does the 2.5 inch form factor fit the drive bays in a PowerEdge R740?
Yes, the 2.5 inch SSD matches the standard hot-plug bays used in the R740 and other listed PowerEdge models.
What SAS backplane speed is required to run the drive at 24Gbps?
A 24Gbps SAS backplane or HBA is needed; the drive will negotiate down to 12Gbps if the controller only supports that speed.
How do I know when the read-intensive TLC NAND is nearing its write endurance limit?
Monitor the SMART attributes for media wear-out indicator and percentage used; replace the drive before the counter reaches the rated threshold.
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