96 layer 3D NAND With QLC Technology From Toshiba Can Lead to 5TB SSD Storage

AAnother milestone has come to the SSD market with Toshiba new technology that gets success in 96 layer 3D NAND memory. The best future of SSD memories is closer than ever and surely it will benefit us all. The arrival of the smallest SSD cards, economical and with more capacity is much closer than we imagine since the engineers of Toshiba have officially announced the development of 96-layer 3D NAND memory.

96 layer 3D NAND memory Vs 64 layer 3D NAND memory

A new way of assembling the SSD hard drives. That will drive a capacity increase of up to 40% as compared to the 64-layer 3D NAND memories. Something that will change with this new project is the price of these modules. And that will benefit users who will buy it. So, its price, speed, and capacity all these points will help to users.

If we focus on this type of memory, TLC is a lower standard than the SLC memory type. That is true regarding the reliability of the module, but without any doubt, the new memory will be much more economical, and that will lead to significant improvements. With this technology, you will have high capacity storage for a much more affordable price. That will be a perfect balance between price and quality.

Before we see these modules in the market, we will have to wait until next year, 2018. And this type of SSD will arrive with a capacity of 256 gigabits. However, from the signature, it is clear that it will be able to progress 128 gigabytes of memory progressively.

QLC 5TB 96 layer 3D NAND Technology

The models that have greater capacity will go from the regular TLC to the new QLC (four bits per cell). That is a novelty which it is still in its early steps. And this technology can raise the storage capacity ranging from 1 to 5 Terabytes.

Undoubtedly, the market for NAND flash memory has become one of the most important in the technological world. Since SSD memories have been gaining too much attention these days and every gamer wants it on his computer.