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  1. The "14 nanometer process" refers to a marketing term for the MOSFET technology node that is the successor to the "22 nm" (or "20 nm") node. The "14 nm" was so named by the International Technology Roadmap for Semiconductors (ITRS). Until about 2011, the node following "22 nm" was expected to be "16 nm".

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      In semiconductor manufacturing, the "3 nm" process is the...

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      Together with the Huawei Mate 40 lineup using the HiSilicon...

  2. May 25, 2023 · The 14 nanometer (14 nm) lithography process is a semiconductor manufacturing process node serving as shrink from the 22 nm process. The term "14 nm" is simply a commercial name for a generation of a certain size and its technology, as opposed to gate length or half pitch.

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  4. Semiconductor device fabrication is the process used to manufacture semiconductor devices, typically integrated circuits (ICs) such as computer processors, microcontrollers, and memory chips (such as NAND flash and DRAM ).

  5. Apr 15, 2014 · Summary. Intel has developed a true 14 nm technology with industry-leading performance, power, density and cost per transistor. The 14 nm technology and the lead processor product are now qualified and in volume production. A full menu of SoC transistor and interconnect features are provided.

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  6. The "14 nanometer process" refers to a marketing term for the MOSFET technology node that is the successor to the "22 nm" (or "20 nm") node. The "14 nm" was so named by the International Technology Roadmap for Semiconductors (ITRS). Until about 2011, the node following "22 nm" was expected to be "16 nm".

  7. en.wikipedia.org › wiki › Die_shrinkDie shrink - Wikipedia

    The term die shrink (sometimes optical shrink or process shrink) refers to the scaling of metal–oxide–semiconductor (MOS) devices. The act of shrinking a die creates a somewhat identical circuit using a more advanced fabrication process, usually involving an advance of lithographic nodes. This reduces overall costs for a chip company, as ...

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