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Samsung MZ1LB960HAJQ-00007 960GB PCI Express NVMe 3.0 x4 TLC M.2 SSD
- Capacity: 960GB
- Form Factor: M.2 2280
- Interface: PCI Express (PCIe) 3.0 x4
- Protocol: NVMe (Non-Volatile Memory Express)
- NAND Type: TLC (Triple-Level Cell)
- Designed for high-speed data access and low latency
- Ideal for workstations, servers, and performance PCs
- Offers significantly faster performance than SATA SSDs
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Typically 1-2 handling + 3-7 transit days
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Product Overview
The Samsung MZ1LB960HAJQ-00007 is a high-performance 960GB M.2 NVMe SSD designed for demanding computing tasks. It utilizes the PCIe 3.0 x4 interface for extremely fast data transfer speeds and TLC NAND flash for a balance of performance and endurance. This SSD is ideal for workstations, servers, and high-end PCs requiring rapid storage access.
Technical Information
| Capacity | 960GB |
| Form Factor | M.2 2280 |
| Interface | PCIe 3.0 x4 |
Additional Specifications
| Protocol | NVMe |
| NAND Type | TLC |
Product Description
The Samsung MZ1LB960HAJQ-00007 is a cutting-edge solid-state drive that leverages the NVMe protocol over a PCIe 3.0 x4 interface to deliver exceptional storage performance. NVMe is specifically designed for flash storage, allowing SSDs to communicate directly with the CPU via the PCIe bus, bypassing the limitations of older SATA interfaces. This results in dramatically reduced latency and significantly higher sequential and random read/write speeds, making it ideal for the most demanding applications. With a capacity of 960GB, this M.2 form factor SSD provides ample space for operating systems, applications, and large datasets. The M.2 2280 form factor is compact and commonly found in modern laptops, workstations, and servers, offering high storage density. The use of TLC (Triple-Level Cell) NAND flash memory strikes a balance between performance, endurance, and cost-effectiveness, suitable for a wide range of enterprise and enthusiast workloads. This SSD is an excellent choice for users who require the fastest possible storage performance. It can drastically reduce boot times, application loading times, and file transfer durations. Its suitability extends to professional environments such as video editing, 3D rendering, large-scale data analysis, and high-performance computing where storage speed is a critical factor in productivity and workflow efficiency.


