Taipei, Taiwan

Ching-Yang Liu


Average Co-Inventor Count = 6.5

ph-index = 1

Forward Citations = 4(Granted Patents)


Location History:

  • Hsin-Chu, TW (2014)
  • New Taipei, TW (2015)

Company Filing History:


Years Active: 2014-2015

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2 patents (USPTO):Explore Patents

Title: Innovations by Ching-Yang Liu: Advancements in Organic Semiconductors and Thin-Film Transistors

Introduction: Ching-Yang Liu, an accomplished inventor from New Taipei, Taiwan, has made significant contributions to the field of organic semiconductor materials and thin-film transistor technology. With a record of two patents, Liu's innovations are pushing the boundaries of electronic materials and devices.

Latest Patents: Liu's latest patents include the development of an organic semiconductor material and a novel pixel structure with an electrical bridging structure. The organic semiconductor material is defined by a unique compound formula involving a range of variables, showcasing flexibility in component selection. On the other hand, the pixel structure incorporates a thin-film transistor device with an insulating layer and pixel electrode, further enhanced by a floating conductive pad that leads to improved performance and connectivity in electronic devices.

Career Highlights: Liu works at AU Optronics Corporation, a prominent player in the display technology industry. His role at the company marks a significant milestone in his career, allowing him to apply his expertise in the advancing field of organic electronics.

Collaborations: Throughout his career, Ching-Yang Liu has collaborated with talented individuals, including his coworkers Wei-Hsiang Lin and Shu-Wei Chu. These partnerships have played a crucial role in driving forward the innovations that characterize his work and have reinforced a robust research environment within his organization.

Conclusion: Ching-Yang Liu stands out as a dedicated inventor whose work in organic semiconductor materials and thin-film transistors is paving the way for future technological advancements. His collaborations and contributions at AU Optronics Corporation demonstrate how innovations in material science can lead to significant improvements in electronic device performance.

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