Wappingers Falls, NY, United States of America

Woo-Tang Kang


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2005

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1 patent (USPTO):

Title: Woo-Tang Kang: Innovator in Semiconductor Technology

Introduction

Woo-Tang Kang is a notable inventor based in Wappingers Falls, NY (US). He has made significant contributions to the field of semiconductor technology, particularly in the development of gate electrode structures for CMOS devices. His innovative work has led to the filing of a patent that addresses critical challenges in semiconductor manufacturing.

Latest Patents

Woo-Tang Kang holds a patent for the "Formation of dual work function gate electrode." This patent describes a method for creating a dual work function gate electrode in a CMOS semiconductor structure. The method ensures that there is no boron penetration in the channel region and no boron depletion near the gate oxide. The process involves several steps, including the formation of a gate oxide layer, the use of undoped polysilicon, and specific ion implantations to achieve the desired electrical properties without damaging the gate oxide.

Career Highlights

Kang is currently employed at Infineon Technologies AG, where he continues to work on advancing semiconductor technologies. His expertise in the field has positioned him as a valuable asset to the company, contributing to innovative solutions that enhance the performance and reliability of semiconductor devices.

Collaborations

Throughout his career, Woo-Tang Kang has collaborated with esteemed colleagues, including Kilho Lee and Rajesh Rengarajan. These collaborations have fostered a productive environment for innovation and have led to advancements in semiconductor technology.

Conclusion

Woo-Tang Kang's contributions to the semiconductor industry exemplify the importance of innovation in technology. His patent on dual work function gate electrodes showcases his commitment to solving complex challenges in semiconductor manufacturing. His work continues to influence the field and drive advancements in electronic devices.

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