HP Solid State drives deliver exceptional performance for customers with high random read IOPs performance application requirements. The products, based on NAND Single Level Cell (SLC) or Multi level Cell (MLC) NAND Flash technology are available as SFF and LFF hot plug devices, non-hot plug SFF and SFF Quick Release devices supporting HP ProLiant servers and server storage platforms. These drives deliver higher performance, lower latency and low power solutions when compared with traditional rotating media and fit seamlessly into the existing HP server infrastructure.
What's New
Entirely re-designed Small Form Factor (SFF) and Large Form Factor (LFF) universal hot plug carriers exclusively for HP ProLiant Gen8 servers
Intuitively designed drive activity and status LEDs and a DO NOT Remove indicator
Ideal environment
Ideal for...
Ideal solutions for IO bottlenecks in many different enterprise workload environments ranging from boot/swap
Key benefits
Ideal for...
A Wide Range of High Performance Enterprise Workload Solutions
6G SAS SLC NAND flash hot plug solutions for enterprise performance (unrestricted reads/writes) workloads. SLC delivers the highest performance with the best endurance. Great behind expanders for external storage solutions or direct attach internal to the sever
6G SAS MLC NAND flash hot plug solutions for enterprise mainstream environments with mixed read/writes workloads. Great behind expanders for external storage solutions or direct attach internal to the sever. Perfect for high random read workloads
3G SATA MLC NAND flash hot plug and non-hot plug enterprise mainstream solutions for environments with mixed read/writes workloads. Perfect for direct attached storage solutions
HP Solid State drives can deliver over 60X the random read performance (mix 70/30 workload/400GB SLC) than a 15K SAS hard drive. Do more with less as a single drive can provide more performance than several hard drives. TCO savings is measured in $/IOP/watt
Supported by HP SMARTSSD Wear Gauge™ reporting utility to help monitor wear usage