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.
Besonderheiten
- 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
Technische Daten
| Brand | Dell |
|---|---|
| Model | C9R60, KPM6XRUG960G |
| Interface | SAS |
Fragen zu diesem Artikel
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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