This inventor holds 2 USPTO granted patents. Top assignee: Automotive Research & Testing Center. Active years: 2021-2023.
Company Filing History:
Years Active: 2021-2023
Title: Hsin-Chuan Lin: Innovator in Automotive Braking Systems
Introduction
Hsin-Chuan Lin is a notable inventor based in Changhua, Taiwan. He has made significant contributions to the field of automotive technology, particularly in the development of advanced braking systems. With a total of 2 patents to his name, Lin's work focuses on enhancing vehicle safety and performance.
Latest Patents
Hsin-Chuan Lin's latest patents include an Anti-lock Braking System and a control method thereof. This innovative system involves a control method that is executed after a control module intervenes in a vehicle's braking system. The method includes receiving wheel speed signals and vehicle acceleration signals, computing a tire-slip feedback value, and generating a feedback control voltage. Additionally, it generates a braking control voltage that adjusts braking pressure through a proportioning-valve brake. Another significant patent is a braking control method that adjusts according to the friction of the road surface. This method computes real-time wheel speed, estimates vehicle deceleration, and adjusts the time length of pressure control stages based on the friction coefficient of the road surface.
Career Highlights
Hsin-Chuan Lin is currently employed at the Automotive Research & Testing Center, where he continues to innovate in automotive technologies. His work has been instrumental in improving vehicle safety features, particularly in braking systems.
Collaborations
Lin collaborates with talented coworkers, including Jia-Le Wei and Hsuan-Yung Chang, who contribute to the research and development of automotive technologies.
Conclusion
Hsin-Chuan Lin's contributions to automotive braking systems demonstrate his commitment to enhancing vehicle safety and performance. His innovative patents reflect a deep understanding of automotive technology and a dedication to improving driving experiences.
