Used EATON NOVA / AXCELIS NV 1060 #9013660 for sale
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EATON NOVA / AXCELIS NV 1060 is an ion implanter and monitor used to precisely control the deposition of ions in semiconductor manufacturing processes. AXCELIS NV 1060 has an innovative but simple design that allows it to achieve greater control over the deposition of ions than other types of implanters. EATON NOVA NV 1060 consists of a turret assembly that is mounted onto a rail that can be moved into different positions. The turret houses two ion sources (one for low current and one for high current) and a control system for the voltage and power level of the ion sources. The turret also contains a magnetometer that provides feedback to the ion sources to ensure its accuracy and consistency. NV 1060 uses a radio-frequency sputtering technique to deposit the ions onto the substrate. It is capable of producing a variety of doses depending on the voltage and other parameters that are adjusted to meet the specific requirements of the application. EATON NOVA / AXCELIS NV 1060 can provide doses up to 5 AMs, while some other types of implanters can only reach a few 100 kV. AXCELIS NV 1060 features an automated monitoring system that continually sends data to the host computer to track the progress of the implantation process. This data can be analyzed to make sure the ion doses are consistent. A variety of protection features are built into EATON NOVA NV 1060 to protect against over-voltage and other conditions that could damage sensitive components. NV 1060 also features a touchscreen and intuitive user interface that allows users to quickly make changes and adjustments to each implantation process. The interface can display graphs and charts that display the progress of the implantation process and allow users to easily access all the parameters of the implantation program. Overall, EATON NOVA / AXCELIS NV 1060 is a powerful and reliable ion implanter and monitor that has been designed for accuracy, control, and user-friendliness. Its versatility and durability have made it a popular choice for semiconductor manufacturers who require precise deposition rates that are consistent and reliable over a long period of time.
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