Ilan, Taiwan

Ya-Wen Yang


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2003

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Ya-Wen Yang and His Contributions to Crystal Growth Technology

Introduction: Ya-Wen Yang is a notable inventor based in Ilan, Taiwan, recognized for his innovative advancements in crystal growth technologies. His work primarily revolves around the development of efficient systems that enhance the quality of crystal growth, which is crucial in various industrial applications.

Latest Patents: Ya-Wen Yang holds a patent for a "Rational directional solidification crystal growth system and method." This innovative system comprises a vertical furnace and a crucible integrated with a rotational support device. The design includes high-temperature and low-temperature portions in the furnace, with a crucible featuring a seed well and growth region. This unique configuration allows for effective crystal growth as the crucible transitions between temperature zones or adapts the thermal profile during operation. The apparatus ensures that the tangent velocity of the rotated crucible reaches speeds of at least about \( \frac{5\pi}{3} \) cm/s, optimizing the crystallization process.

Career Highlights: Yang's career is marked by his tenure at National Taiwan University, where he contributes his expertise in materials science and engineering. His focus on advancing crystallization techniques has positioned him as a key figure in the research community, facilitating numerous studies and discussions surrounding innovative manufacturing processes.

Collaborations: Throughout his career, Ya-Wen Yang has collaborated with several esteemed professionals, including Chung-Wen Lan. As a talented colleague, Lan has played a significant role in supporting Yang's research initiatives and driving forward their shared goals in crystal growth technology.

Conclusion: Ya-Wen Yang's inventions, particularly his patent on the rational directional solidification crystal growth system, exemplify the profound impact of innovative thinking in engineering. His contributions continue to pave the way for advancements in crystal growth methodologies, reinforcing the significance of collaboration and research in achieving technological progress.

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