Company Filing History:
Years Active: 2025
Title: Innovator of Quantum Dot Technology: Chen-Yang Huang
Introduction: Chen-Yang Huang, based in Hsinchu, Taiwan, is a notable inventor recognized for his contributions to the field of optical devices. With a focus on innovative manufacturing methods involving quantum dots, he has made significant advancements that enhance the functionality and efficiency of optical technologies.
Latest Patents: Huang holds a patent titled "Manufacturing method of optical device, optical device with quantum dots, and illumination apparatus with quantum dots." This patent outlines a comprehensive manufacturing method that involves several key steps. It includes the provision of a lower transparent substrate with an upper surface, the introduction of a quantum dot film element surrounded by a glue-material enclosure wall, and the covering of these components with an upper transparent substrate. The process concludes with cutting the substrates to yield protective films that encapsulate the quantum dot film element, resulting in a sophisticated optical device.
Career Highlights: Chen-Yang Huang currently works at Qdlux Inc., where he applies his expertise to develop cutting-edge optical solutions. His work in the area of quantum dots represents a significant milestone in optical device manufacturing, potentially impacting various applications in illumination and display technologies.
Collaborations: Throughout his career, Huang has collaborated with talented professionals such as Jung-Hua Chang and Ching-Liang Yi. These partnerships reflect a commitment to teamwork and innovation, fostering an environment where groundbreaking ideas can thrive.
Conclusion: Chen-Yang Huang stands out as a prominent inventor in the realm of optical devices. His patent on manufacturing methods involving quantum dots showcases his innovative spirit and dedication to advancing technology. With continued collaboration and exploration, Huang's contributions are poised to influence the future of optical engineering significantly.