Ann Arbor, MI, United States of America

Hsin-Hsiang Yang

USPTO Granted Patents = 40 

Average Co-Inventor Count = 3.2

ph-index = 5

Forward Citations = 97(Granted Patents)


Company Filing History:


Years Active: 2015-2025

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40 patents (USPTO):Explore Patents

Title: Innovations of Hsin-Hsiang Yang: A Leader in Vehicle Control Technologies

Introduction: Hsin-Hsiang Yang, based in Ann Arbor, MI, is a prominent inventor known for his significant contributions to automotive control systems. With an impressive portfolio of 39 patents, Yang has made substantial advancements in vehicle technology, particularly in the areas of velocity control and steering mechanisms.

Latest Patents: Among Hsin-Hsiang Yang's latest patents are a "System and method to control the velocity of a vehicle" and a "System and method to estimate a tie-rod force and control the steering of a vehicle." The first patent outlines a comprehensive system that includes a processor in communication with a velocity sensor, throttle actuator, and brake actuator. This innovative system allows for the precise control of vehicle speed based on various parameters. The second patent focuses on enhancing vehicle steering by utilizing data from sensors to estimate tie-rod force, thereby improving steering response and vehicle dynamics.

Career Highlights: Throughout his career, Hsin-Hsiang Yang has held key positions at renowned companies. He has worked at Ford Global Technologies, LLC and Veoneer US, Inc., where he applied his expertise to develop cutting-edge automotive technologies and systems that prioritize safety and efficiency.

Collaborations: Yang has collaborated with notable peers in his field, including Kwaku O Prakah-Asante and Fling Finn Tseng. These partnerships have bolstered his work, enabling the blending of innovative ideas and technical skills to foster advancements in vehicle control systems.

Conclusion: Hsin-Hsiang Yang's dedication to innovation in automotive technology is evident through his numerous patents and impactful collaborations. His work continues to shape the future of vehicle control, making significant strides towards enhanced safety and performance in automotive applications.

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