Mino, Japan

Hideo Kawahara


Average Co-Inventor Count = 3.7

ph-index = 11

Forward Citations = 367(Granted Patents)


Location History:

  • Toyonaka, JP (1984 - 1992)
  • Mino, JP (1990 - 1993)
  • Minoo, JP (1992 - 1993)
  • Osaka, JP (1988 - 1994)
  • Kawanishi, JP (1994)

Company Filing History:


Years Active: 1984-1994

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20 patents (USPTO):Explore Patents

Title: Innovations and Contributions of Hideo Kawahara

Introduction

Hideo Kawahara is a distinguished inventor based in Mino, Japan, recognized for his significant contributions to the field of materials science and optical devices. With a remarkable portfolio comprising 20 patents, he has demonstrated a commitment to innovation and research that stands out in the industry.

Latest Patents

Among his latest innovations, Kawahara developed a method for producing silicon dioxide film which effectively prevents the escape of silicon. Additionally, he designed a groundbreaking light controlling device that incorporates a pair of substrates and a viscoelastic or elastic dispersing medium containing finely aligned particles. This device allows for the control of light transmission non-linearly by applying shear stress to alter the particle alignment regarding the incident light.

Career Highlights

Throughout his career, Hideo Kawahara has been associated with notable companies such as Nippon Sheet Glass Company, Limited and Saint-Gobain Vitrage. His work in these organizations has solidified his reputation as an innovator in optical technology and materials processing.

Collaborations

Kawahara has collaborated with talented individuals in the industry, including Hirotsugu Nagayama and Hiroaki Tada. Together, they have contributed to advancements in light manipulation and materials science, showcasing the power of teamwork in achieving innovative solutions.

Conclusion

Hideo Kawahara's contributions to the fields of material science and optoelectronics exemplify the spirit of innovation. With a strong foundation of patents and collaborations, his work continues to influence the development of advanced technologies that enhance light control and materials performance.

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