Used KASPER / EATON Custom #318 for sale
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KASPER / EATON Custom is an advanced mask aligner equipment that is used for the production of integrated circuits in a cost-effective manner. This system enables high-speed processing of photomasks for fabrication of integrated circuit devices. It is tailored to the exact specifications of the companies using it to provide increased flexibility, accuracy and higher yields. The main components of EATON Custom mask aligner are its mono stepper, optical table, microprocessor-based controller, electrical/mechanical arms, and workstation. The mask aligner is configured to provide high speed and accuracy with high automation capability. Its mono stepper uses a laser beam to expose the mask patterns to the wafer. This allows for precise pattern registration and very accurate alignment. Its optical table provides a tilting movement in order to adjust the angle of the beam and achieve the desired angle of projection for the mask patterns. The microprocessor-based controller is used to control the movement of the arms and optimize the image overlap with the pattern on the mask. This helps to ensure that the device features are accurately aligned on the wafer and the device performance is not compromised. The electrical/mechanical arms are used to position the mask and workstation, enabling it to be constantly adjusted without stopping production. KASPER Custom can also be used for automatic alignment and wafer centering. It is equipped with a vision unit that is capable of providing high resolution images of the wafer layers and a manual tool positioning machine for accurate alignment and centering. Additionally, the tool is powered by advanced software that enables efficient parameter setting and calculation. This helps to provide cost-efficient alignment of the integrated circuit devices. In conclusion, Custom is a reliable and highly advanced mask aligner asset that offers excellent precision. Its components enable high-speed processing and automated alignment, ensuring that the desired device features are accurately aligned and the device performance remains uncompromised. Additionally, its high flexibility provides cost-effective fabrication of integrated circuit devices.
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