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Product Overview |
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The ST41600ND from Seagate is a 1GB, 5.25-inch hard drive with a 5400 RPM speed designed for systems that rely on SCSI connections. It's a practical choice for maintaining older servers and workstations where stable, moderate-capacity storage is necessary without requiring modern high-speed drives. |
General Information |
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| Brand | Seagate |
| Part Number | ST41600ND |
Technical Information |
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| Capacity | 1GB |
| Form Factor | 5.25-inch |
| Disk Format | Fast SCSI |
| Spindle Speed | 5400 RPM |
| Hot Pluggable | No |
| Hot Swappable | No |
| Hybrid Drive | No |
Interfaces/Ports |
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| Interface | SCSI |
Physical Characteristics |
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| Condition | Refurbished |
| Weight | 3.00 |
Product Description |
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This Seagate ST41600ND is a 1GB hard drive designed to provide steady and reliable storage for older computing environments. It’s often found in systems where consistent data access and moderate storage capacity are needed. Built for use in servers, workstations, and legacy setups, it supports tasks that require dependable data throughput without the demand for high capacity or speed. Key Features
These drives are typically installed in mid-90s to early 2000s hardware environments, supporting legacy software and data storage needs. They provide a dependable option where newer storage solutions may not be compatible, ensuring continued operation of critical systems. |
Use Cases |
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The Seagate ST41600ND 1GB 5400RPM Fast SCSI 5.25-inch Hard Drive is commonly deployed in legacy enterprise environments and specialized industrial systems where maintaining older hardware infrastructure is critical. IT teams managing vintage servers or archival storage setups find this drive suitable for stable and consistent data access without the need for modern high-capacity storage. How It's Used:
This hard drive supports operational continuity in environments where hardware refresh cycles are extended due to compatibility constraints. Its design caters to maintaining stable throughput in mixed-generation storage arrays, ensuring efficient use of existing infrastructure without compromising system reliability. |