This inventor holds 1 USPTO granted patent. Top assignee: Shin-Kobe Electric Machinery Co., Ltd.. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Koutaro Kobayashi: Innovator in Lithium Secondary Battery Technology
Introduction
Koutaro Kobayashi is a notable inventor based in Okayama, Japan. He has made significant contributions to the field of battery technology, particularly in the development of lithium secondary batteries. His innovative work focuses on enhancing the performance and longevity of these batteries, which are crucial for various applications in modern technology.
Latest Patents
Koutaro Kobayashi holds a patent for a lithium secondary battery that effectively improves high-temperature cycle life characteristics without compromising discharge capacity. The patent describes a unique composition that utilizes amorphous carbon powder with a specific surface area of 10.0 m²/g and a mean particle diameter of 7.0 µm as the negative electrode active material. Additionally, lithium manganate with a Li/Mn ratio of 0.58 is employed as the positive electrode active material. This innovative design allows for a larger surface area of the negative electrode active material layer, which enhances the battery's performance even under high-temperature conditions.
Career Highlights
Koutaro Kobayashi is associated with Shin-Kobe Electric Machinery Co., Ltd., where he continues to contribute to advancements in battery technology. His work has been instrumental in addressing the challenges faced by lithium secondary batteries, particularly in terms of cycle life and efficiency.
Collaborations
Koutaro collaborates with talented individuals such as Yoshimasa Koishikawa and Kensuke Hironaka. Their combined expertise fosters an environment of innovation and progress in the field of battery technology.
Conclusion
Koutaro Kobayashi's contributions to lithium secondary battery technology exemplify the importance of innovation in enhancing energy storage solutions. His patent reflects a significant advancement that could lead to more efficient and durable batteries in the future.