This inventor holds 1 USPTO granted patent. Top assignee: Mitsui Minings & Melting Co., Ltd.. Active years: 1996.
Company Filing History:
Years Active: 1996
Title: The Innovative Contributions of Mitsuhiko Hasuo
Introduction
Mitsuhiko Hasuo is a notable inventor based in Fukuoka, Japan. He is recognized for his significant contributions to the field of materials science, particularly in the development of electrically-conductive materials. His work has implications for various technological applications, making him a key figure in his industry.
Latest Patents
Hasuo holds a patent for a "Method for preparing electrically-conductive needle-like zinc oxide." This innovative method involves preparing a vapor mixture by admixing zinc vapor with dopant-forming compounds. The process is designed to create needle-like zinc oxide that is electrically conductive, which can be utilized in various electronic applications. The patent highlights the stepwise oxidation of the vapor mixture, ensuring a controlled and efficient production process.
Career Highlights
Mitsuhiko Hasuo is associated with Mitsui Mining & Smelting Co., Ltd., where he has made significant strides in research and development. His expertise in materials science has led to advancements in the production of conductive materials, which are essential for modern electronics. His work has not only contributed to his company but has also influenced the broader field of materials engineering.
Collaborations
Hasuo has collaborated with notable colleagues such as Hiroyuki Tokuichi and Katsuhiko Yoshimaru. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas, further enhancing the quality of their research and development efforts.
Conclusion
Mitsuhiko Hasuo's contributions to the field of materials science, particularly through his patented method for producing electrically-conductive zinc oxide, underscore his role as an influential inventor. His work continues to impact the industry, paving the way for future innovations in electronic materials.