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SK hynix PCB01 5th-Gen of 8-Channel PCIe Up to 2TB SSD for AI PCs

Up to 14GB/s and 12GB/s sequential RW speeds, with SLC caching and root of trust security solution

  • Development of PCB01, 5th-gen of 8-channel PCIe, to be followed by mass production within this year
  • PCB01 SSD for PCs, optimized for on-device AI

  • Advancement in NAND solution to extend success story of HBM, solidify leadership in AI memory space

SK hynix Inc. announced that it developed PCB01, an SSD product with industry’s best specs, for on-device (*) AI PCs.

Sk Hynix Develops Pcb01

The product marks the 1st case where the industry adopts the 5th-gen of the 8-channel (**) PCIe (***) technology and brings innovation to performance including the data processing speed.

The company expects the latest advancement in the NAND solution space to add to its success stories in the high-performance DRAM area led by HBM, enhancing its leadership in the overall AI memory space.

With a validation process with a global PC customer underway, the firm plans to mass produce and start shipping the products to both corporate customers and general consumers within this year.

PCB01 comes with the capabilities of sequential RW speeds of 14GB/s and 12GB/s, respectively, bringing the performance of an SSD to the level unseen before. The speeds allow the operation of a large language model (****), or LLM, for AI training and inference, in a second.

The product also comes with an improvement in power efficiency of more than 30% compared with the previous-gen, enhancing the stability of the large-scale AI computing tasks.

The company also adopted the SLC (*****) caching for the production of PCB01. With the adoption of the technology that places the SLC, in some parts of the NAND cell to accelerate performance, a PC user can experience a faster performance for both AI services and conventional computing.

The product is also equipped with the capability aimed at protecting personal data. The firm’s engineers built the root of trust, or ROT (******), a security solution, in the PCB01 to prevent external cybersecurity attacks and forging and falsification of information, while protecting a user’s password.

The company plans to launch PCB01 in 3 capacities – 512GB, 1TB, and 2TB.

Ahn Hyun, head, N-S Committee, SK hynix, said that numerous global providers of CPU for on-device AI PCs are requesting collaboration for compatibility validation process: “We will work towards enhancing our leadership as the global top AI memory provider also in the NAND solution space by successfully completing the customer validation and mass production of PCB01, which will be in the limelight.”

(*) On-device AI: a technology that implements AI functions on the device itself, instead of going through computation by a physically separated server. A smartphone’s direct collection and computation of information allows fast reactions of the AI performance, while promising an improved customized AI service.
(**) Channel: a route for the input/output of data between a NAND flash and a controller on the SSD. An increase in the number of channels leads to advancement of the PCIe to the next generations and an improvement in the data processing speed. A 4-channel SSD is typically adopted for the conventional PCs, while an 8-channel SSD is for high-performance PC.
(***) PCle: a serial-structured, high-speed input/output interface used on the motherboard of digital devices.
(****) Large language model (LLM): a language model trained on vast amounts of data, which is essential for performance of generative AI tasks such as creating, summarizing, and translating texts.
(*****) SLC: a type of memory cell used in NAND Flash that stores one bit of data in a single cell. As the amount of data stored increases, the memory cell becomes a MLC, a TLC, and a QLC) An increase in the storage means more data can be stored in the same area, but the speed and stability decreases. An SLC enables faster processing of selected data.
(******) Root of Trust (RoT): an area of the hardware that can always be trusted in terms of security, while enabling prevention of forging and falsification of information.

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