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Product Overview |
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The Micron 7450 PRO 7.68TB drive offers robust storage with a PCIe 4.0 NVMe interface, making it suitable for servers and data centers requiring dense, high-speed solid state storage. Its self-encrypting capability and compact E1.S form factor align with modern enterprise needs for security and space efficiency. |
General Information |
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| Brand | Micron |
| Part Number | MTFDKBZ7T6TFR |
Technical Information |
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| Capacity | 7.68TB |
| Memory Technology | Triple-Level Cell (TLC) |
| Form Factor | E1.S |
| Interface | PCIe Gen 4.0 x4 |
| Hot Swappable | No |
| Hot Pluggable | No |
Physical Characteristics |
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| Dimensions | 5.9mm x 31.5mm x 100mm |
| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Compliance Standards | WEEE, RoHS, CE, FCC |
Product Description |
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The Micron 7450 PRO 7.68TB solid state drive is built for enterprise storage applications requiring large capacity and high throughput. It commonly fits into data center servers and storage arrays where space is limited but performance is critical. IT professionals and system administrators often choose this drive to support demanding workloads and safeguard sensitive information. Key Features
This drive is typically deployed in enterprise environments such as hyperscale data centers and cloud infrastructures. Its combination of size, speed, and security makes it a reliable component for handling heavy transactional or analytic workloads. The Micron 7450 PRO helps maintain system responsiveness while protecting critical stored information. |
Use Cases |
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The Micron 7450 PRO 7.68TB SSD is designed for high-density, performance-critical environments such as enterprise data centers and cloud infrastructure. Its compact E1.S form factor and self-encrypting features make it ideal for IT professionals managing secure, space-constrained storage arrays and virtualization workloads that demand rapid data access. How It's Used:
This SSD supports operational efficiency by delivering consistent high throughput and strong security controls while allowing dense storage configurations. Its design facilitates scalability in environments where both performance and data integrity are critical for sustained business workloads. |