Yongin-si, South Korea

Seonah Nam


Average Co-Inventor Count = 6.5

ph-index = 1

Forward Citations = 6(Granted Patents)


Location History:

  • Seoul, KR (2015)
  • Suwon-si, KR (2023)
  • Yongin-si, KR (2022 - 2024)

Company Filing History:


Years Active: 2015-2025

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5 patents (USPTO):Explore Patents

Title: Seonah Nam: Innovator in Semiconductor Technology

Introduction: Seonah Nam, an accomplished inventor based in Yongin-si, South Korea, is known for her significant contributions to the field of semiconductor technology. With five patents to her name, she has been instrumental in advancing innovations that enhance semiconductor device performance.

Latest Patents: Seonah's recent patents focus on semiconductor devices featuring circuit active elements and dummy active elements. Her first patent describes a semiconductor device that incorporates first and second external dummy areas with a circuit area positioned between them. This design includes circuit active regions and circuit gate lines, with external dummy active regions shaped linearly or configured with isolated active portions. Her subsequent patent offers improvements by optimizing the layout of circuit and external dummy areas, ensuring efficient spatial arrangement and functionality.

Career Highlights: Seonah Nam has established her career at Samsung Electronics Co., Ltd., where she continues to push the boundaries of semiconductor design. Her innovative work is recognized for addressing complex challenges in circuit design, leading to enhanced device efficiency and performance.

Collaborations: Throughout her career, Seonah has collaborated with talented colleagues, including Byungju Kang and Byungsung Kim. These partnerships have enabled her to enrich her research with diverse perspectives, fostering cutting-edge advancements in semiconductor technologies.

Conclusion: Seonah Nam is a remarkable inventor whose work in semiconductor technology reflects her commitment to innovation. With a strong portfolio of patents, she continues to make a substantial impact in her field, contributing to the advancement of modern electronics and shaping the future of semiconductor devices.

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