Kanagawa, Japan

Makoto Sasaki

Average Co-Inventor Count = 1.7

ph-index = 7

Forward Citations = 169(Granted Patents)

Forward Citations (Not Self Cited) = 160(Sep 21, 2024)

DiyaCoin DiyaCoin 0.39 

Inventors with similar research interests:


Location History:

  • Yokosuka, JP (2003)
  • Urayasu, JP (2005)
  • Nakai-machi, JP (2006)
  • Ashigarakami-gun, JP (2007 - 2016)
  • Toyama, JP (2018)
  • Kanagawa, JP (1998 - 2023)


Years Active: 1998-2023

where 'Filed Patents' based on already Granted Patents

78 patents (USPTO):

Title: Makoto Sasaki: An Innovator With 200 Patents

Introduction:

Makoto Sasaki, a prolific inventor based in Kanagawa, Japan, has contributed significantly to the field of image processing and amorphous alloy ribbon production. With an impressive portfolio of 200 patents, Sasaki has made a lasting impact on the technological landscape. His groundbreaking work showcases his mastery of image processing techniques and the development of advanced materials. Through his employment at reputable companies like Alps Electric Company and CASIO Computer, as well as collaborations with esteemed colleagues like Shozo Tsuchiya and Fumiyoshi Kittaka, Sasaki has played a crucial role in advancing innovation and shaping the industry.

Image Processing Innovations:

One of Sasaki's noteworthy inventions is an image processing apparatus and non-transitory computer-readable medium storing an image processing program. This apparatus combines cutting-edge computer vision algorithms with intuitive user interaction to detect and extract foreground objects from images. By displaying boundaries enclosing candidate regions corresponding to foreground objects, the user can select a target region with a single operation. Sasaki's work in image processing has revolutionized the way we manipulate and analyze visual data, finding applications in fields such as computer graphics, surveillance systems, and autonomous vehicles.

Advancements in Amorphous Alloy Ribbon Production:

Sasaki's contributions to the production of laminated amorphous alloy ribbons have paved the way for significant breakthroughs in material science. By utilizing a method involving laser irradiation, Sasaki has developed a highly efficient process for creating single-layer amorphous alloy ribbons with laser irradiation marks. These ribbons are subsequently laminated, resulting in the production of a superior laminated amorphous alloy ribbon. This innovative approach offers improved performance characteristics, making it an ideal material for various industrial applications, including electrical transformers and sensors.

Collaborations and Career:

During his career, Sasaki has collaborated with esteemed colleagues, including Shozo Tsuchiya and Fumiyoshi Kittaka, who have contributed significantly to his research. Their close collaboration has led to numerous successful projects and mutual innovation. Notably, Sasaki has worked in prominent companies such as Alps Electric Company and CASIO Computer, renowned for their contributions to the electronics industry. These organizations have provided Sasaki with the resources and platforms to realize his creative ideas, resulting in many of his patented inventions.

Conclusion:

Makoto Sasaki's remarkable journey as an inventor highlights his exceptional expertise in image processing and amorphous alloy ribbon production. With an extensive patent portfolio of 200 inventions, Sasaki has made substantial contributions to technology and advanced various industries. His work in image processing has improved visual data analysis and user interaction, while his advancements in amorphous alloy ribbon production have impacted the materials science field. Collaborations with notable colleagues and careers at renowned companies further solidify Sasaki's position as an influential innovator. As we anticipate his future contributions, Sasaki's legacy continues to inspire aspiring inventors within the realm of innovations and patents.

Disclaimer: The information provided is based on the available data and may not encompass the entirety of Makoto Sasaki's accomplishments. Further research is recommended for a comprehensive understanding of his work.

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