Taipei, Taiwan

Yi-Hsin Ko


Average Co-Inventor Count = 5.5

ph-index = 2

Forward Citations = 7(Granted Patents)


Location History:

  • New Taipei, TW (2020 - 2023)
  • Hsinchu, TW (2022 - 2023)

Company Filing History:


Years Active: 2020-2025

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7 patents (USPTO):

Title: Innovator Yi-Hsin Ko: Leading the Charge in Semiconductor Innovations

Introduction: Yi-Hsin Ko, based in New Taipei, Taiwan, stands as a prominent figure in the field of semiconductor technology, with an impressive portfolio of seven patents. His innovative contributions have significantly advanced the design and functionality of semiconductor devices.

Latest Patents: Among his latest patents, Yi-Hsin Ko has developed two notable inventions. The first is a method for designing semiconductor devices, titled "Reduced Area Standard Cell Abutment Configurations." This method involves analyzing vertical abutments between standard cell blocks and determining modifications to reduce mismatches and spacing in layouts. The second patent, "Metal Cut Optimization for Standard Cells," describes a technique for optimizing metal cuts in standard cells, enhancing their overall efficiency through strategic placement of metal cuts.

Career Highlights: Yi-Hsin Ko is currently a key contributor at Taiwan Semiconductor Manufacturing Company, Limited (TSMC), a leading player in the semiconductor industry. His work focuses on enhancing the design and capabilities of semiconductor devices, aligning with the industry's push for smaller, more efficient technology.

Collaborations: Throughout his career, Yi-Hsin Ko has collaborated with fellow innovators such as Hui-Zhong Zhuang and Chi-Yu Lu. Together, they have explored advanced methodologies that push the boundaries of semiconductor technology.

Conclusion: With a firm foothold in the semiconductor field, Yi-Hsin Ko continues to make significant contributions that shape the future of technology. His patented inventions reflect a commitment to innovation, making him a vital asset in his field. As the industry progresses, the impact of his work will undoubtedly resonate throughout technology sectors worldwide.

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