
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 M2693S Fujitsu 938.8MB hard drive provides steady storage with a 4400 RPM spin speed and a 50-pin SCSI connection, fitting into 3.5-inch bays. It delivers reliable data access and moderate capacity, making it a straightforward component for maintaining or restoring legacy computer systems. |
General Information |
|
|---|---|
| Brand | Fujitsu |
| Part Number | M2693S |
Technical Information |
|
|---|---|
| Form Factor | 3.5-inch |
| Disk Format | Fast SCSI (50-pin) |
| Cache | 64KB |
| Spindle Speed | 4400 RPM |
| Hot Pluggable | No |
| Hot Swappable | No |
| Hybrid Drive | No |
Interfaces/Ports |
|
|---|---|
| Interface | SCSI-2 |
Physical Characteristics |
|
|---|---|
| Condition | Refurbished |
| Weight | 1.76 |
Product Description |
|---|
The M2693S Fujitsu internal hard drive is built for systems requiring reliable storage with moderate capacity. It's often found in older workstations and servers that depend on SCSI technology for data transfer. Users maintaining legacy equipment or specialized setups benefit from its compatibility and consistent performance. Key Features
This drive typically appears in environments where legacy hardware remains in use, such as industrial equipment or archival servers. Its dependable nature suits situations that need steady data access without high-speed demands. It’s a practical choice when upgrading or replacing parts in older machines. |
Use Cases |
|---|
The M2693S Fujitsu 938.8MB internal hard drive is commonly deployed in legacy server environments and specialized industrial systems requiring stable, moderate-capacity storage. It suits IT professionals maintaining or refurbishing equipment where compatibility with older SCSI-based infrastructures is critical. How It's Used:
This hard drive supports operational continuity by providing dependable storage in environments where upgrading to newer interfaces is impractical. Its consistent performance and compatibility help prolong the utility of existing infrastructure without compromising data access stability. |