Taichung, Taiwan

Te-An Tsai


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2003

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1 patent (USPTO):Explore Patents

Title: Te-An Tsai: Innovator in Active Power Factor Correction Circuits

Introduction

Te-An Tsai is a notable inventor based in Taichung, Taiwan. He has made significant contributions to the field of electrical engineering, particularly in the development of active power factor correction circuits. His innovative work has led to the filing of a patent that showcases his expertise and creativity in this area.

Latest Patents

Te-An Tsai holds a patent for an active power factor correction circuit. This circuit comprises a voltage source with a first end and a second end, an inductor connected to the first end of the voltage source, and a first rectifying device with its anode coupled to the other end of the inductor. Additionally, it includes a second rectifying device, two switching devices, a capacitor, and an auxiliary circuit designed to switch the first and second switching devices under zero voltage. This invention aims to enhance the efficiency of power systems by improving power factor correction.

Career Highlights

Te-An Tsai is associated with the Industrial Technology Research Institute, where he has been involved in various research and development projects. His work focuses on advancing technologies that contribute to energy efficiency and sustainability. With a patent portfolio that includes 1 patent, he has established himself as a key player in his field.

Collaborations

Te-An Tsai collaborates with talented individuals such as Pao-Chuan Lin and Yung-Hsiang Liu. These partnerships foster innovation and drive the development of cutting-edge technologies in their research endeavors.

Conclusion

Te-An Tsai's contributions to the field of active power factor correction circuits highlight his innovative spirit and dedication to advancing electrical engineering. His work not only reflects his expertise but also contributes to the broader goal of improving energy efficiency in power systems.

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