Sonix provides manual and automated wafer inspection and metrology systems for wafers ranging from 100mm to 300mm, with extensive analysis capabilities at both the wafer and device level. These industry-leading automated wafer inspection systems are used by the world’s top manufacturers to ensure quality from development through production.
AutoWafer pro is our most advanced ultrasonic equipment for detecting defects in bonded wafers in a production environment, providing fast, high-resolution scanning of 200mm and 300mm bonded wafers.See More >
Installed in more wafer applications than all other automatic ultrasonic testing tools combined, AutoWafer provides a complete, production-ready wafer scanner for wafers from 100mm to 200mm, including multiple sizes in a single batch.See More >
The ECHO VS system adds our Image Enhancement Suite to the ECHO platform to provide industry-leading image quality and defect identification capabilities. It’s our most accurate ultrasonic NDT equipment for development labs and for production environments that require the highest precision. The Echo system can be fitted with an optional chuck for manual wafer inspection.See More >
The ECHO scanning acoustic microscope is a nondestructive ultrasonic flaw detector designed to simplify testing, increase yield and maximize productivity in the lab or on the production floor. This industry-leading scanning acoustic microscope provides a universal inspection tool for packaged semiconductor development, production and failure analysis. With the ability to detect air defects as thin 0.05 micron and spatially resolve defects down to 10 microns, the ECHO is perfect for bump detection, stacked die (3D packaging) inspection, complex flip chip inspection and more traditional plastic packages.See More >
Sonix S-series ultrasonic NDT transducers are designed in-house to meet the demanding nondestructive testing requirements of semiconductor manufacturing. We offer the collaborative expertise to help customers choose the best ultrasonic NDT transducer for their application, based on three primary considerations.See More >
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