San Diego, CA, United States of America

Seung Hyuk Kang

Average Co-Inventor Count = 3.8

ph-index = 23

Forward Citations = 2,254(Granted Patents)

Forward Citations (Not Self Cited) = 2,008(Sep 21, 2024)

DiyaCoin DiyaCoin 2.81 

Inventors with similar research interests:


Location History:

  • Macungie, PA (US) (2009)
  • Sinking Springs, PA (US) (2012)
  • Sinking Spring, PA (US) (2006 - 2013)
  • San Diego, CA (US) (2010 - 2023)


Years Active: 2006-2023

where 'Filed Patents' based on already Granted Patents

246 patents (USPTO):
2 patents (CIPO):

Title: Seung Hyuk Kang: Innovator Driving Advancements in Semiconductor Technology

Introduction:

Seung Hyuk Kang, an accomplished inventor based in San Diego, CA, has made significant contributions to the field of semiconductor technology. With an impressive track record of 234 patents, Kang has continuously pushed the boundaries of innovation in his field. This article will delve into his latest patents, highlight his career achievements, explore his notable collaborations, and showcase his impact on the industry.

Latest Patents:

1. Vertical Power Grid Standard Cell Architecture:

Kang's vertical power grid standard cell architecture patent introduces a novel MOS IC logic cell design. This design incorporates a series of gate interconnects extending on tracks in a specific direction, supplemented by intra-cell routing interconnects. These intra-cell Mx layer interconnects, located on the lowest metal layer, enable efficient and optimized routing within the logic cell.

2. MIMCAP Architecture:

In this patent, Kang presents an innovative cell design for integrated circuits (ICs) featuring a unique MIM (Metal-Insulator-Metal) capacitor structure. The MIM capacitor structure includes a CTM (Top Metal Capacitor), a CBM (Bottom Metal Capacitor), and an insulator layer between them. This architecture enables efficient coupling of the first and second sets of M layer interconnects to different voltages, offering enhanced performance in IC designs.

Career Highlights:

Seung Hyuk Kang has had an illustrious career, with noteworthy stints at renowned companies and institutions.

1. Qualcomm Incorporated:

Kang contributed significantly to Qualcomm Incorporated, a leading semiconductor and telecommunications equipment company. His inventive mind and expertise helped drive the company's technological advancements in areas such as wireless communications and mobile processors.

2. Industry-academic Cooperation Foundation, Yonsei University:

During his tenure at the Industry-academic Cooperation Foundation of Yonsei University, Kang worked on cutting-edge research projects, further solidifying his expertise in semiconductor technology. His contributions played a vital role in bridging the gap between academia and industry.

Collaborations:

Seung Hyuk Kang has collaborated with several esteemed professionals, establishing himself as a respected figure within the semiconductor community.

1. Xia Li:

Collaborating with Xia Li, Kang explored and developed innovative solutions for challenges in semiconductor design. Their combined expertise led to breakthroughs in layout strategies and optimization techniques, benefiting numerous IC designs.

2. Xiaochun Zhu:

Working alongside Xiaochun Zhu, Kang focused on the development of advanced manufacturing processes and materials for semiconductor fabrication. Through their collaboration, they paved the way for more efficient and high-performance semiconductor devices.

Conclusion:

Seung Hyuk Kang's extensive patent portfolio and significant contributions to the semiconductor industry highlight his immense talent and dedication as an innovator. His latest patents, including the vertical power grid standard cell architecture and MIMCAP architecture, demonstrate his continuous pursuit of optimized and efficient semiconductor designs. Collaborating with esteemed professionals such as Xia Li and Xiaochun Zhu has further propelled Kang's impact on the industry. As Kang continues to push the boundaries of innovation, his work will undoubtedly shape the future of semiconductor technology.

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