Used SVG / PERKIN ELMER / ASML PE SVGL #9187411 for sale
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SVG/PerkinElmerSVG / PERKIN ELMER / ASML PE SVGL is a mask aligner used in the semiconductor industry for lithography. This device is used to place patterns on a mask (photomask or reticle) and accurately transfer them onto a substrate such as silicon or glass. The SVGL is capable of creating ultra precise alignment of multiple levels of patterns, allowing for high resolution in the resulting chip design. The SVGL also features an advanced optical equipment that can focus on both wafer and reticle surfaces for optimal imaging resolution. The SVGL uses a laser steerer for guiding throughout the lithography process, allowing for precise control for each transfer step. The scanning linear motors enable highly accurate movement of the stage. The alignment signals are based on edge measurement, which generate the position data. The device can also compensate for individual component variations while still maintaining high levels of precision. The SVGL's onboard imaging system uses dual cameras for automatic information such as pattern switching and substrate shift measurement. The control unit for the SVGL can be programmed with the controller's dedicated software package. This control machine allows for customization of parameters such as substrate and reticle positions, optical settings, laser steerer control, and the user-defined settings the process requires. This is why the SVGL is often used in production lines. The SVGL also benefits from predictive and preventive maintenance features. This device can be used for over 3500 wafer locations per day and can cut defects in chips by up to 30%. It also provides an easy-to-use graphical interface and high accuracy. In conclusion, ASML/PerkinElmerSVG PE SVGL is a mask aligner used in semiconductor lithography. It features a laser steerer for precise alignment and a scanning linear motor for accurate positioning. Additionally, the SVGL offers an advanced imaging tool, a programmed control asset, predictive and preventive maintenance features, and an intuitive user-interface. Due to its high levels of precision, the SVGL is an excellent choice for those looking to achieve high-resolution results in their chip design.
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