This inventor holds 13 USPTO granted patents and 2 published patent applications. Top assignees: National Tsing Hua University, Other. Active years: 2006-2020.
Company Filing History:
Years Active: 2006-2020
Title: Swe-Kai Chen: Innovator in Magnetic Sensors and Toughened Ceramics
Introduction
Swe-Kai Chen is a prominent inventor based in Hsinchu, Taiwan. He has made significant contributions to the field of materials science, particularly in the development of advanced cermets and toughened ceramic materials. With a total of 13 patents to his name, Chen's work has garnered attention for its innovative applications in magnetic sensors and high-performance ceramics.
Latest Patents
Chen's latest patents include groundbreaking advancements in cermets for magnetic sensors. These cermets incorporate at least six carbides and one refractory metal, specifically tungsten. They are designed to operate effectively at temperatures ranging from 100 to 3000 K, achieving magnetic precision between 99.6% and 99.9%. This makes them highly suitable for high-temperature applications in magnetic sensors. Additionally, he has developed a toughened ceramic material that consists of at least one boride and a refractory metal, or at least two borides and one carbide. This material is created through a heating and smelting process, resulting in a toughened ceramic with high toughness and minimal metallic cemented phase.
Career Highlights
Throughout his career, Swe-Kai Chen has been associated with National Tsing Hua University, where he has contributed to research and development in materials science. His innovative work has positioned him as a key figure in the advancement of ceramic materials and their applications.
Collaborations
Chen has collaborated with various professionals in his field, including Min-Shen Ouyang, enhancing the scope and impact of his research.
Conclusion
Swe-Kai Chen's contributions to the fields of magnetic sensors and toughened ceramics highlight his role as a leading inventor. His innovative patents and collaborations continue to influence advancements in materials science.