This inventor holds 1 USPTO granted patent. Top assignee: Mediatek Corporation. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: The Innovations of Chun-Yueh Kuo
Introduction
Chun-Yueh Kuo is a notable inventor based in Hsinchu, Taiwan. He has made significant contributions to the field of semiconductor technology. His work focuses on enhancing the efficiency and functionality of semiconductor devices.
Latest Patents
Chun-Yueh Kuo holds a patent for a "Semiconductor die having on-die power switch for selecting target operation voltage from operation voltages provided by different power sources." This innovative semiconductor die features an on-die power switch that includes multiple power input nodes, a power output node, and a switch circuit. The power input nodes receive various operation voltages from different power sources. The power output node then outputs a target operation voltage selected from these operation voltages. The switch circuit selectively couples one of the power input nodes to the power output node, allowing the target device to operate according to the supplied target operation voltage. This design separates the on-die power switch and the target device into distinct circuit blocks within the semiconductor die.
Career Highlights
Chun-Yueh Kuo is currently employed at MediaTek Corporation, a leading global semiconductor company. His role involves developing advanced semiconductor technologies that drive innovation in various electronic devices. His expertise in semiconductor design has positioned him as a valuable asset to his team.
Collaborations
Chun-Yueh Kuo collaborates with talented colleagues, including Bo-Yun Lin and Fan-Wei Liao. Together, they work on projects that push the boundaries of semiconductor technology and contribute to the advancement of the industry.
Conclusion
Chun-Yueh Kuo's contributions to semiconductor technology through his innovative patent and collaborative efforts at MediaTek Corporation highlight his importance in the field. His work continues to influence the development of efficient electronic devices.
