Used NTT-AT ATP3000-XO1 #9282249 for sale

NTT-AT ATP3000-XO1
ID: 9282249
Polishing machine.
NTT-AT ATP3000-XO1 is a wafer grinding, lapping and polishing equipment that provides superb mechanical planarization of wafers for semiconductor and MEMS device fabrication. The system is designed to accommodate 4- to 6- or 8-inch wafers, and uses a patented dual-axis, linear-motor-driven unit to provide sub-micron accuracy and repeatability. An integrated CNC controller drives the machine, and features a full-featured user interface that allows for programming of parameters such as feed rate, spindle speed, and pressure. The tool's automatic grinding and lapping elements will automatically adjust to choose the best combination of feed rate, speed, and pressure to ensure uniformity of the surface quality and accuracy of the final wafer. The asset is designed to employ both fixed and servo-controlled grinding and lapping plates. The fixed plates have a fixed design with consistent physical attributes, while the servo-controlled plates can be adjusted using software to create the desired grinding pattern. The model's robust drive and control systems, coupled with its state-of-the-art motor controls, ensure an optimal grinding and polishing process that won't damage the wafer. In addition to the main grinding and polishing equipment, ATP3000-XO1 also features an integrated Wafer Deburring System. This deburring unit uses special tools and techniques to effectively smooth out uneven surfaces on the wafer, without causing any damage or contamination. The integrated CNC-controlled Deburring Machine also features a built-in tool changer, so that different types of deburring tools can be quickly exchanged for optimal efficiency. Built with an all-stainless steel construction, NTT-AT ATP3000-XO1 provides excellent durability in harsh operational environments. The design also meets EMC standards for operation in cleanroom-class 6. Additionally, the tool is designed to be both quiet and energy efficient, providing a low total cost of ownership without compromising the performance of the process.
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