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Product Overview |
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The HP ioDrive Duo 320GB combines MLC solid-state technology with PCIe 3.0 x4 and NVMe standards to deliver reliable, fast storage suited for enterprise use. It fits well in data centers and servers requiring efficient handling of large data volumes and consistent performance under heavy workloads. |
General Information |
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| Brand | HP |
| Part Number | 600279-B21 |
Technical Information |
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| Capacity | 320GB |
| NAND Flash | Multi-Level Cell (MLC) |
| Memory Technology | Multi-Level Cell (MLC) |
| Form Factor | PCIe Add-in Card |
| Interface | PCIe Gen 2.0 x8 |
| Hot Swappable | No |
| Hot Pluggable | No |
Physical Characteristics |
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| Weight | 1.10 |
| Condition | Refurbished |
Product Description |
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The HP ioDrive Duo 320GB MLC PCIe 3.0 x4 NVMe SSD is built to provide fast storage solutions for enterprise environments. It is commonly used in data centers and high-performance computing setups where speed and reliability are critical. Often found in servers and storage arrays, this drive benefits system administrators and IT professionals who need rapid access to large datasets and efficient handling of intensive workloads. Key Features
This SSD is typically deployed in high-demand server environments where low latency and high throughput are necessary. Its role is crucial in accelerating database access, virtualization, and real-time analytics applications without compromising on durability. |
Use Cases |
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The HP ioDrive Duo 320GB SSD is optimized for enterprise environments that demand high throughput and low latency storage solutions. It is ideal for data centers and server infrastructures where rapid access to large datasets and reliable performance under sustained workloads are critical. How It's Used:
This drive contributes to operational efficiency by delivering consistent high-speed data transfer and low latency, making it suitable for scaling storage infrastructure. Its compatibility with PCIe 3.0 and NVMe protocols ensures integration with modern server platforms, supporting demanding workloads without bottlenecks. |