Company Filing History:
Years Active: 2013-2015
Title: Guo-Chen Lee: Innovator in Illumination Technologies
Introduction
Guo-Chen Lee, a distinguished inventor based in Taoyuan, Taiwan, has made significant contributions to the field of lighting technology. With a portfolio of 4 patents, Lee has showcased his innovative spirit and technical prowess in designing advanced illumination devices that enhance user experience.
Latest Patents
Among Lee's latest patents is the "Illumination Apparatus," which includes an innovative illumination shell crafted from a light guide plate. This design integrates a circuit with multiple contacts, allowing efficient electrical connection to the light source positioned on the illumination shell. This invention aims to optimize lighting efficiency and quality.
Another notable patent is Lee's inventive "Keyboard," which comprises a key module featuring a light-transmissive section combined with an electric circuit substrate. This keyboard also integrates a backlight module consisting of a light guide plate and a reflection unit. The design effectively projects light from the lateral side of the guide plate, ensuring that light is reflected and transmitted seamlessly through the key part for enhanced visibility.
Career Highlights
Guo-Chen Lee has held pivotal roles in innovative firms, notably at Global Lighting Technologies Inc. and Global Lighting Technology Inc. His work in these establishments underscores his commitment to advancing lighting technologies and driving impactful innovations.
Collaborations
Throughout his career, Lee has collaborated with notable coworkers, including Chung-Lin Tsai and Tsung-Yung Hung. Their combined expertise suggests a dynamic approach in tackling complex problems and developing cutting-edge products in the lighting sector.
Conclusion
In summary, Guo-Chen Lee stands out as a forward-thinking inventor whose contributions to illumination technology reflect a blend of creativity and engineering excellence. His patents not only enhance the design and functionality of lighting devices but also illustrate the potential for future advancements in user-centric innovations.