Used MACTRONIX UKA-425A3 #293600497 for sale

Manufacturer
MACTRONIX
Model
UKA-425A3
ID: 293600497
Wafer Size: 4"
Wafer transfer system, 4".
MACTRONIX UKA-425A3 is a high-performance automated wafer handler developed to facilitate the increasing demands of semiconductor manufacturing. This automated system is designed to provide efficient, safe, and precise handling of 200mm and 300mm wafers. MACTRONIX UKA425A3 is a three-axis robot— X, Y, and Z— driven by dual servo motors. All three axes are equipped with brushless DC motors for smooth and precise movement. The high level of precision and accuracy of this system makes it ideal for controlling a variety of processes such as precise wafer picking, placement and transfer. In addition, advanced algorithms can be added to enable advanced pattern recognition and algorithms for defect recognition. This automated wafer handler is integrated with a professional software interface for easy operation. This user-friendly software simplifies the setup and configuration process, ensuring efficient and precise handling of wafers and other components. In addition, the integrated software allows users to manage and control various functions such as status monitoring, alarm setting, and user data maintenance. UKA-425 A3 also provides excellent reliability and stability. Its sturdy and durable construction allows it to withstand harsh environments and high frequency of use. The system also includes safety measures such as built-in alarms and sensors to detect potential hazards. MACTRONIX UKA-425 A3 offers a wide range of features that can be customized to meet specific needs. It can handle wafer sizes of up to 200mm and 300mm in diameter. Its modular design also allows users to easily customize the number of wafers and robots used in order to increase production output and throughput. Overall, UKA-425A3 is an efficient and reliable automated wafer handler designed to maximize production output. With its advanced features, it is well-suited for use in a wide range of semiconductor fabrication processes. Its efficient and precise design leads to improved throughput and yield, increased safety, and cost savings.
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