Used KARL SUSS / MICROTEC 1000W #189541 for sale

KARL SUSS / MICROTEC 1000W
ID: 189541
Lamp house.
KARL SUSS / MICROTEC 1000W is a wafer stepper that is used for digital lithography processing. It is a flexible and cost-effective stepper for medium-volume production in advanced technology environments. MICROTEC 1000W is equipped with a variety of hardware and software options to meet the needs of various lithography processes. It features an improved optical equipment with a variable illumination system to provide a full range of the most advanced imaging techniques. KARL SUSS 1000W is also equipped with an automatic focusing unit, allowing users to maintain process accuracy and reliability. This feature is especially useful when processing larger wafers, as it allows the stepper to adjust the focus automatically to maintain resolution. 1000W is designed to support a wide range of advanced processes, including 2D external optically-directed lithography (ODL) and maskless contact lithography (MCL). The stepper is also capable of performing 3D lithography using UV projection techniques, allowing for smaller features at higher throughputs. Additionally, KARL SUSS / MICROTEC 1000W is equipped with a user-friendly control interface, allowing for easy management and optimization of the machine. The built-in SEMS analysis software provides real-time monitoring of process parameters, allowing users to identify and eliminate sources of errors. To ensure repeatable and accurate processing, MICROTEC 1000W offers optional enhancements such as a real-time overlay measurement tool. The asset also includes an auto-tune feature to adjust the exposure parameters according to the type of substrate being processed, eliminating the need for frequent calibration steps. Overall, KARL SUSS 1000W is an efficient and reliable wafer stepper for advanced lithography applications, providing a wide range of imaging techniques and seamless process control. It is also equipped with a variety of options to help ensure accurate and repeatable results, making it an ideal choice for high-volume production of advanced microelectronic components.
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