The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
The most sophisticated manufacturing processes where a thin monocrystalline wafer is slowly transformed into a matrix of microchips. Chips are built from many layers where each layer has to be placed with nanometer precision. This is performed in a special chamber that employs ultraviolet technology - substances reacting with light to form the layers. Microchips typically go through lot of stages including washing and coating in between. It is good to start small and then expand. Small setups can be connected in form of a loop with a sorter.
微細集積回路のマトリックスに変化していく最も高度な製造工程。回路は多くの層から構成され、各層はナノメートルの精度で配置されなければならない。この工程は、光に反応する物質を用いて層を形成する紫外線技術を用いた特殊なチャンバーで行われます。微細集積回路は通常、洗浄やコーティングなど多くの工程を経て作られます。小さく始めて、大きくしていくのがいいと思います。小さなセットアップは、ソーターとループ状に接続する事が出来ます。