
Subscribe To Our Newsletter!
Subscribe to the newsletter to stay up to date with the latest news and most useful
Newsletter
↑
Back to Top
Product Overview |
|---|
The 507129-017 HP 900GB 10K RPM SAS 2.5-inch hard drive offers a dependable storage solution with robust performance, dual-port redundancy, and hot-swap capability. Ideal for enterprise systems prioritizing availability and speed, it integrates smoothly into modern server infrastructures. |
General Information |
|
|---|---|
| Brand | HP |
| Part Number | 507129-017 |
Technical Information |
|
|---|---|
| Capacity | 900GB |
| Form Factor | 2.5-inch |
| Spindle Speed | 10000 RPM |
Interfaces/Ports |
|
|---|---|
| Interface | SAS 6Gb/s |
Physical Characteristics |
|
|---|---|
| Condition | Refurbished |
| Weight | 3.00 |
Miscellaneous |
|
|---|---|
| Eco Friendly | Yes |
Product Description |
|---|
The HP 507129-017 900GB 10K RPM SAS hard drive is engineered for performance-intensive enterprise environments where uptime, speed, and flexibility are crucial. Its dual-port, hot-pluggable design allows for high availability and simplified maintenance in active data centers. Key Features
This drive is well-suited for use in virtualization environments, transaction-heavy databases, and storage arrays that require speed and reliability. Its flexible architecture ensures minimal disruption during maintenance and optimal performance in demanding scenarios. |
Use Cases |
|---|
The 507129-017 HP 900GB 10K RPM SAS 2.5-inch hard drive is typically deployed in enterprise data centers where high-speed, reliable storage is crucial for maintaining application performance. It is well-suited for IT environments that demand continuous data availability and fast access, such as virtualization clusters and transactional databases. How It's Used:
This drive’s dual-port SAS interface and hot-pluggable design contribute to operational efficiency by enabling seamless integration into high-availability storage arrays. Its robustness supports scalability in growing IT environments while maintaining consistent performance under demanding workloads. |