Hsinchu, Taiwan

Chih-Chieh Yu

USPTO Granted Patents = 3 

Average Co-Inventor Count = 3.6

ph-index = 1


Company Filing History:


Years Active: 2015-2018

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3 patents (USPTO):Explore Patents

Title: Innovator Chih-Chieh Yu: Advancing Crystal Growth Technology

Introduction

Chih-Chieh Yu is a distinguished inventor hailing from Hsinchu, Taiwan, with a notable portfolio comprising three patents. His innovative contributions primarily focus on advanced apparatuses for crystal growth and ingot casting, enhancing efficiency and quality in material processing.

Latest Patents

Yu’s recent inventions include a patent for a crystal growth apparatus, which consists of a crucible, heating device, thermal insulation cover, and a driving device. This apparatus effectively prevents heat loss, ensuring optimal melting conditions for the materials contained within the crucible. His other significant patent is a stirring apparatus for ingot casting furnaces, designed with a rotating shaft and specially shaped fins. This design allows for more uniform mixing of materials, resulting in higher quality ingots by integrating dopants systematically during the stirring process.

Career Highlights

Chih-Chieh Yu has made impactful strides in his field through his collaborations with prominent companies such as GlobalWafers Co., Ltd. and Lite-On Technology Corporation. His work has contributed significantly to advancements in wafer production and electronic components.

Collaborations

Throughout his career, Yu has worked alongside notable colleagues, including Lu-Chung Chuang and Wen-Chieh Lan. Their combined expertise has enabled them to tackle complex challenges in crystal growth and material processing, underscoring the importance of teamwork in innovation.

Conclusion

Chih-Chieh Yu stands out as a leading inventor in crystal growth technology, with a commendable track record of patents that reflect his dedication to improving manufacturing processes. His innovations not only demonstrate technical prowess but also have the potential to influence the broader landscape of semiconductor and material sciences.

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