Used STRASBAUGH 6DE-2 #9260757 for sale
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STRASBAUGH 6DE-2 is a comprehensive wafer grinding, lapping and polishing equipment designed to provide highly reflective, defect-free surfaces in a variety of flexible and user-friendly configurations for a variety of semiconductor applications. A core component of 6DE-2 system is its integrated grinding, lapping, and polishing technologies. Grinding is used to achieve wafer thickness accuracy and dimensional uniformity, while lapping is used to evenly distribute a layer of abrasive particles onto the wafer surface, providing a high-end surface finish. Polishing is used to further refine the surfaces, in order to ensure an optically smooth and flat surface for higher product yields. STRASBAUGH 6DE-2 unit can be customized to suit a variety of needs, making it ideal for production and research and development. The machine is operated from a modern, graphical-based user interface, allowing for quick and easy setup. Additionally, the tool comes with an in-line optical monitor, which allows users to verify the quality of the surface before and after processing. This ensures higher yields and reduces manual inspection times. The operation of the asset is fully automated, including the loading and unloading of wafers. It also features a particle filtration model, which reduces particle contamination while improving product quality. The equipment's flexibility allows it to be configured for a variety of wafer sizes, including non-uniform wafers. Mobile robotic arms are available to automatically move wafers between the grinding, lapping, and polishing processes, depending on the customer's configuration requirements. In addition, 6DE-2 allows for the integration of specialized peripheral equipment, such as laser scanners and thermographic cameras. This system is designed to reduce overall cycle times and costs, allowing customers to produce higher yields and improve product quality. Overall, STRASBAUGH 6DE-2 is an ideal solution for applications requiring precise, defect-free, and highly reflective surfaces.
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