This inventor holds 1 USPTO granted patent. Top assignees: National Science Council of Republic of China, Precision Instrument Development Center. Active years: 2000.
Company Filing History:
Years Active: 2000
Title: Innovations of Jin-Shyang Lin in Maglev Technology
Introduction
Jin-Shyang Lin is a notable inventor from Jang Hauh Shian, Taiwan, recognized for his contributions to the field of magnetic levitation technology. His innovative approach has led to the development of advanced rotational bearing apparatuses that utilize magnetic forces for enhanced performance.
Latest Patents
One of his significant patents is titled "Geometrical structure configuration of maglev forces in a maglev rotational bearing apparatus." This invention presents a unique geometrical structure that employs magnetic forces as suspension support for the rotational shaft. The design incorporates a radial maglev support module that provides two perpendicular constraint forces and an axial maglev support module that offers three non-coplanar constraint forces. This configuration allows for a frictionless suspension of the main axis, improving the axial suspension force compared to existing maglev bearings. The technology is particularly beneficial for high-speed rotational machines, including turbo molecular vacuum pumps and high-speed machine tool spindles.
Career Highlights
Throughout his career, Jin-Shyang Lin has worked with esteemed organizations such as the Precision Instrument Development Center and the National Science Council of the Republic of China. His experience in these institutions has significantly contributed to his expertise in the field of precision instruments and magnetic levitation technology.
Collaborations
Jin-Shyang Lin has collaborated with notable colleagues, including Hong-Ping Cheng and Yu-Wen Chang, to further advance his research and innovations in maglev technology.
Conclusion
Jin-Shyang Lin's innovative work in the field of magnetic levitation has paved the way for advancements in high-speed rotational machinery. His contributions continue to influence the development of efficient and frictionless technologies.