This inventor holds 1 USPTO granted patent. Top assignee: Industrial Technology Research Institute. Active years: 2009.
Company Filing History:
Years Active: 2009
Title: Kuo-Tong Lin: Innovator in Organic Electroluminescent Displays
Introduction
Kuo-Tong Lin is a prominent inventor based in Hsinchu, Taiwan. He has made significant contributions to the field of organic electroluminescent displays, showcasing his innovative spirit and technical expertise. His work has implications for advancements in display technology, which is crucial in various electronic devices.
Latest Patents
Kuo-Tong Lin holds a patent for a "Color organic electroluminescent display and method for fabricating the same." This invention involves a sophisticated method of fabricating a color organic electroluminescent display. The process includes forming cathode electrodes on a substrate and creating a first organic semiconductor layer with electron-injection transporting properties. The method further details how solutions containing organic light-emitting materials are patterned on the first organic semiconductor layer. After removing the solvent, regions with second organic semiconductor layers and mixed organic semiconductor layers are formed. Anode electrodes are then created over these layers, resulting in a functional color organic electroluminescent display.
Career Highlights
Kuo-Tong Lin is associated with the Industrial Technology Research Institute, where he has been instrumental in research and development. His innovative work in organic electroluminescent displays has positioned him as a key figure in advancing display technologies.
Collaborations
Kuo-Tong Lin has collaborated with notable colleagues, including Jhih-Ping Lu and Hsuan-Ming Tsai. These partnerships have contributed to the successful development of his patented technologies.
Conclusion
Kuo-Tong Lin's contributions to the field of organic electroluminescent displays highlight his role as an innovator in technology. His patent reflects a significant advancement in display fabrication methods, showcasing the potential for future developments in this area.
