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Product Overview |
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The iDiskOnChip 961U1280501B is a 128MB IDE NAND Flash SSD, providing a dependable storage solution for legacy systems and embedded applications. With its 40-Pin IDE/ATA interface and 2.5-inch form factor, this SSD offers seamless compatibility and long-lasting performance in industrial and specialized computing environments. |
General Information |
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| Part Number | 961U1280501B |
| Drive Type | Internal (SSD) |
Technical Information |
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| NAND Flash | NAND |
| Form Factor | 2.5-inch |
| Interface | IDE/ATA |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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The iDiskOnChip 961U1280501B is a 128MB NAND Flash-based Solid State Drive (SSD) designed for legacy and embedded computing applications. Featuring a 40-Pin IDE/ATA interface, this drive provides a reliable storage solution for older systems that require a compact, solid-state alternative to traditional hard drives. Its internal 2.5-inch form factor allows for easy integration into compatible devices, ensuring seamless functionality in various industrial and embedded environments. Built with durable NAND Flash memory, the iDiskOnChip SSD delivers enhanced reliability with no moving parts, reducing the risk of mechanical failure. It is well-suited for specialized applications such as industrial automation, embedded systems, and legacy computing hardware where traditional hard drives may no longer be a viable option. Key Features
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Use Cases |
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The 961U1280501B iDiskOnChip 128MB SSD is primarily utilized in environments where legacy hardware requires reliable, solid-state storage without the need for modern interfaces. Embedded systems and industrial automation setups benefit from its compact IDE interface and robust NAND flash memory, ensuring data integrity and longevity in constrained or specialized applications. How It's Used:
This SSD supports operational stability in specialized computing environments by providing a consistent storage medium that matches legacy system architectures. Its solid-state design reduces maintenance needs and improves system uptime, making it a practical choice for sustaining legacy infrastructure without extensive redesign. |