Lexar 512GB LNM800 Pro Internal M.2 PCIe Gen4 NVMe SSD Price in Kenya

Lexar 512GB LNM800 Pro Internal M.2 PCIe Gen4 NVMe SSD Technical Specifications

The Lexar 512GB LNM800 Pro Internal M.2 PCIe Gen4 NVMe SSD represents the cutting edge of storage technology, offering blazing-fast speeds and ample capacity in a compact form factor. This drive harnesses the power of the latest PCIe Gen4 interface to deliver performance that pushes the boundaries of consumer-grade storage.

Performance Overview

  • Capacity: 512GB
  • Form Factor: M.2 2280
  • Interface: PCIe Gen4 x4, NVMe 1.4
  • Sequential Read: Up to 7,400 MB/s
  • Sequential Write: Up to 5,800 MB/s
  • Random Read (4K): Up to 800,000 IOPS
  • Random Write (4K): Up to 700,000 IOPS

Key Features

  1. PCIe Gen4 Interface: Doubles the bandwidth of Gen3 for extreme speeds
  2. Advanced NVMe 1.4 Protocol: Optimized for ultra-low latency and high throughput
  3. Dynamic SLC Caching: Maintains high write speeds during intensive operations
  4. LDPC Error Correction: Ensures data integrity and drive longevity

Pros and Cons


  • Exceptional read/write speeds for demanding workloads
  • Future-proof with PCIe Gen4 technology


  • Higher price point compared to Gen3 NVMe SSDs
  • Requires a PCIe Gen4 compatible motherboard for full performance

Ideal Usage Scenarios

The Lexar 512GB LNM800 Pro NVMe SSD excels in:

  1. High-end gaming: Near-instantaneous game loads and level transitions
  2. Professional content creation: Smooth 4K/8K video editing and quick exports
  3. Data-intensive applications: Rapid processing of large datasets
  4. OS and application hosting: Lightning-fast boot times and software launches

Target Audience

This Lexar NVMe Gen4 SSD is particularly well-suited for:

  • Enthusiasts and professionals demanding cutting-edge storage performance
  • Gamers looking for the fastest possible load times
  • Content creators working with high-resolution media and complex projects
  • Data scientists and researchers handling massive datasets

The Lexar 512GB LNM800 Pro Internal M.2 PCIe Gen4 NVMe SSD represents a quantum leap in storage technology, offering speeds that were unthinkable just a few years ago. Its PCIe Gen4 interface provides double the bandwidth of Gen3, allowing for truly remarkable data transfer rates that can transform workflows and user experiences.

For gamers, this drive enables near-instant game loads and seamless open-world experiences, potentially giving a competitive edge in fast-paced titles. Content creators will appreciate the ability to scrub through 4K or even 8K video timelines without stuttering and export large projects in record time. In data-intensive applications, the drive’s exceptional IOPS and throughput can dramatically reduce processing times for complex computations.

The 512GB capacity offers a good balance between high-speed storage and space, providing ample room for your operating system, a substantial application library, and frequently accessed files. This makes it an excellent choice as a primary drive for high-performance systems.

It’s worth noting that to fully leverage the capabilities of this drive, you’ll need a motherboard with PCIe Gen4 support. For users with older systems, this SSD is still backward compatible with PCIe Gen3, but will operate at Gen3 speeds.

For those looking to build a comprehensive storage solution, this NVMe SSD pairs excellently with our range of high-capacity HDDs for bulk data storage. If you’re considering a full system upgrade to take advantage of PCIe Gen4 speeds, explore our selection of cutting-edge laptops and desktops designed to harness the full potential of this next-generation storage technology.

The Lexar 512GB LNM800 Pro Internal M.2 PCIe Gen4 NVMe SSD represents a significant investment in future-proof technology that can dramatically enhance your computing experience. While it commands a premium price, its performance benefits are undeniable for users who push their systems to the limit, whether you’re a competitive gamer, a professional content creator, or a data scientist dealing with complex, data-intensive workloads.

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