
Subscribe To Our Newsletter!
Subscribe to the newsletter to stay up to date with the latest news and most useful
Newsletter
↑
Back to Top
✔ 10GB storage capacity for basic data needs
✔ Ultra ATA/66 interface for reliable data transfer
✔ 4200 RPM spindle speed for smooth operation
✔ Compact 2.5-inch form factor for portable devices
Product Overview |
|---|
The Toshiba 10GB Ultra ATA/66 2.5-Inch Hard Drive (HDD2152) is a compact and efficient storage solution for basic data requirements. With a 4200 RPM spindle speed, 1MB cache, and reliable data transfer rates of up to 66 MB/s, it provides dependable performance for older systems or portable devices needing modest storage capacities. |
General Information |
|
|---|---|
| Brand | Toshiba |
| Part Number | hdd2152 |
Technical Information |
|
|---|---|
| Capacity | 10GB |
| Drive Type | Internal Hard Drive |
| Form Factor | 2.5-inch |
| Disk Format | 512n |
| Cache | 1 MB |
Interfaces/Ports |
|
|---|---|
| Interface | ATA-66 |
Physical Characteristics |
|
|---|---|
| Condition | Refurbished |
| Weight | 3.00 |
Product Description |
|---|
The Toshiba 10GB Ultra ATA/66 2.5-Inch Hard Drive (model HDD2152) is a compact and reliable storage solution for entry-level data needs. Designed for compatibility with older systems, this hard drive offers a solid combination of performance and efficiency. Its 4200 RPM spindle speed ensures steady data access, while the 2.5-inch form factor makes it ideal for portable devices. Key Features
This hard drive offers a dependable and straightforward solution for light storage requirements, making it suitable for legacy systems and basic computing needs. |
Use Cases |
|---|
The Toshiba 10GB 2.5-Inch Hard Drive (HDD2152) is ideal for legacy systems and embedded applications where compact storage with reliable performance is essential. It suits environments requiring steady data access without the demand for high-speed or high-capacity drives, often found in specialized or cost-sensitive deployments. How It's Used:
This drive supports operational stability in environments where large capacity and fast transfer rates are secondary to steady, dependable storage. Its compact size and standard interface facilitate integration in systems requiring efficient use of physical space without sacrificing essential data retention capabilities. |