Don't buy a NVME M.2 SSD before watching this video. I am going to compare Netac NV7000 NVMe 2TB, Kioxia Exceria Plus G2 2TB, Kingston SNVS2000G 2TB and SanDisk Ultra 3D NVMe 1TB. After watching this video, you will know both performance of these disks and also what you need to be careful before purchasing them.
Video Link > https://youtu.be/fTgd8lU9EJw
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0:00 Introduction to the NVMe M.2 SSDs review, guide and benchmarking
1:44 How to set a different disk / folder as default cache folder of Hugging Face models
2:15 Used CrystalDiskMark version for testing the disks
2:48 Starting CrystalDiskMark benchmarking
3:27 The technique used during testing to keep the disks cool
3:37 CrystalDiskMark 1GB testing results of Netac NVMe 2TB
4:20 CrystalDiskMark 16GB testing results of Netac NVMe 2TB
4:56 CrystalDiskMark 1GB and 16GB testing results of Kioxia Exceria Plus G2, Kingston SNVS2000G and SanDisk Ultra 3D NVMe
6:13 Starting to the massive writing test on Netac NV7000 2TB
7:40 Massive writing (150GB single file) test result of Netac NV7000 2TB
8:10 Starting to the massive writing test on SanDisk Ultra 3D NVMe 1TB
9:13 Massive writing (150GB single file) test result of SanDisk Ultra 3D NVMe 1TB
9:45 Starting to the massive writing test on Kingston SNVS2000G 2TB
11:10 Massive writing (150GB single file) test result of Kingston SNVS2000G 2TB
11:40 Starting to the massive writing test on Kioxia Exceria Plus G2 2TB
13:02 Massive writing (150GB single file) test result of Kioxia Exceria Plus G2 2TB
13:15 Massive writing (150GB single file) test results of all 4 NVME M.2 disks
Netac NV7000 NVMe 2TB
Type: M.2 NVMe SSD
Capacity: 2TB
Interface: PCIe Gen4 x4, compatible with PCIe Gen3 systems but with reduced performance
Performance: Likely offers high read/write speeds characteristic of Gen4 NVMe drives, potentially up to 7000 MB/s read and 5000 MB/s write or more, depending on the specific model and conditions.
Application: Suitable for gaming, high-resolution video editing, and other data-intensive applications that benefit from fast data transfer rates.
Durability and Reliability: Likely includes features like dynamic SLC caching, 3D NAND technology, and possibly an endurance rating (TBW - Terabytes Written) that reflects its durability over time.
Kioxia Exceria Plus G2 2TB
Type: M.2 NVMe SSD
Capacity: 2TB
Interface: Likely PCIe Gen3 x4, considering the naming convention and market positioning.
Performance: Offers solid read and write speeds, possibly around 3000-3500 MB/s read and 3000 MB/s write, suitable for general use, gaming, and productivity tasks.
Application: A good choice for mainstream PCs and laptops needing a balance between performance and value.
Durability and Reliability: Expected to feature 3D NAND flash for reliable storage and possibly a good TBW rating for longevity.
Kingston SNVS2000G 2TB
Type: M.2 NVMe SSD
Capacity: 2TB
Interface: PCIe Gen3 x4, providing compatibility with a wide range of systems.
Performance: Typically designed for budget-conscious users, offering decent read/write speeds that significantly outpace SATA SSDs, potentially in the range of 2000-2500 MB/s read and a similar range for write speeds.
Application: Ideal for upgrading older systems or for users needing more storage without the premium cost of Gen4 drives.
Durability and Reliability: Likely includes features like a limited warranty and 3D NAND technology to ensure a balance of performance and durability.
SanDisk Ultra 3D NVMe 1TB
Type: M.2 NVMe SSD
Capacity: 1TB (notably smaller than the other mentioned drives)
Interface: Likely PCIe Gen3 x4, aimed at mainstream users.
Performance: Designed for fast boot times, quick application loading, and improved overall system responsiveness. Expected read/write speeds could be in the range of 2400 MB/s read and 1900 MB/s write, offering a noticeable improvement over SATA SSDs.
Application: Suitable for general-purpose use, including gaming, productivity, and everyday computing tasks.
Durability and Reliability: SanDisk is known for its quality flash memory products, so this drive likely includes robust wear leveling, error correction, and a solid TBW rating for durability.
Additionally, compatibility with your specific system (e.g., motherboard M.2 slot type and available PCIe lanes) should be verified to ensure optimal performance.
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