Hsinchu, Taiwan

Sheng Hsun Wu


Average Co-Inventor Count = 1.8

ph-index = 3

Forward Citations = 35(Granted Patents)


Location History:

  • Tan Shui, Taipei Hsien, Taiwan, TW (1978)
  • Hsinchu, TW (2005 - 2013)

Company Filing History:


Years Active: 1978-2013

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7 patents (USPTO):Explore Patents

Title: Innovations of Sheng Hsun Wu

Introduction

Sheng Hsun Wu is a prominent inventor based in Hsinchu, Taiwan. He has made significant contributions to the field of technology, particularly in the development of advanced detection platforms and memory manufacturing methods. With a total of seven patents to his name, Wu's work showcases his innovative spirit and technical expertise.

Latest Patents

One of Wu's latest patents is a single molecule detection platform, which comprises a light-transmissive substrate, a plurality of spherical particles, and a thin film. The design features etched cone-shaped structures on the substrate, allowing for the attachment of single proteins to individual spherical particles. This platform is poised to enhance detection capabilities in various applications. Another notable patent is a method of manufacturing a silicon-oxide-nitride-oxide-silicon (SONOS) memory. This method involves forming a bottom silicon oxide layer, creating a patterned mask layer, and establishing a charge-trapping layer, ultimately leading to the formation of a functional memory device.

Career Highlights

Wu has worked with Powerchip Semiconductor Corporation, where he has applied his innovative ideas to real-world applications. His experience in the semiconductor industry has allowed him to contribute to advancements in memory technology and detection systems.

Collaborations

Some of Wu's notable coworkers include Da Sung and Tsai-Yu Huang, who have collaborated with him on various projects, further enhancing the impact of his inventions.

Conclusion

Sheng Hsun Wu's contributions to technology through his patents and collaborations highlight his role as a leading inventor in the field. His innovative work continues to influence advancements in detection platforms and memory manufacturing methods.

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