Company Filing History:
Years Active: 2013
Title: Innovator Spotlight: Chao-Hsien Chang from Zhonghe, Taiwan
Introduction
Chao-Hsien Chang is a notable inventor based in Zhonghe, Taiwan, known for his significant contributions to the field of light-emitting technologies. With a focus on enhancing the efficiency of light-emitting devices, his work exemplifies innovation and practical application in electronic design.
Latest Patents
Chao-Hsien Chang holds a patent for an invention titled "Light Emitting Devices Having Heat-Dissipating Surface." This innovative design features a heat-dissipating base that is crucial for effective thermal management in light-emitting devices. The device includes a light-emitting unit, housing, and conductive contacts, all meticulously designed to ensure that heat generated during light emission is efficiently dissipated. The integration of light-emitting diodes (LEDs) with the heat-dissipating base allows for improved performance and longevity of the devices.
Career Highlights
Chao-Hsien Chang works at the Industrial Technology Research Institute, an esteemed organization renowned for its research and development in technology. His dedication to advancing light-emitting device technologies has not only earned him a patent but has also placed him at the forefront of innovation in this critical area of electronics.
Collaborations
Throughout his career, Chang has collaborated with notable colleagues, including Kung-Hsia Wang and Ra-Min Tain. These partnerships have contributed to the development of cutting-edge technologies effectively addressing challenges in light emission and heat dissipation within electronic devices.
Conclusion
Chao-Hsien Chang's work in developing light-emitting devices with efficient heat-dissipating surfaces demonstrates his commitment to innovation and excellence. His contributions to the Industrial Technology Research Institute and the broader field of electronics mark him as a prominent inventor whose work continues to shape the landscape of technology in Taiwan and beyond.