This inventor holds 3 USPTO granted patents and 1 EPO patent. Top assignee: Hitachi Metals, Ltd.. Active years: 2015-2023.
Location History:
- Mishima-gun, JP (2015 - 2018)
- Tokyo, JP (2023)
Company Filing History:
Years Active: 2015-2023
Title: Satoshi Shiota: Innovator in Scintillator Technology
Introduction
Satoshi Shiota is a prominent inventor based in Mishima, Japan. He has made significant contributions to the field of scintillator technology, holding a total of 3 patents. His work focuses on enhancing the performance and manufacturing methods of scintillator structures.
Latest Patents
One of his latest patents is titled "Scintillator structure and manufacturing method thereof." This invention features a scintillator structure that includes a plurality of cells and a reflector covering these cells. Each cell comprises a resin and a phosphor, with the phosphor containing gadolinium oxysulfide. Notably, the breaking strength of the interface between each cell and the reflector is 900 gf or more. Another significant patent is the "Production method of scintillator dual array." This method involves bonding first and second scintillator bar arrays with different sensitivity distributions of X-ray energy detection. The process includes cutting the integrally bonded bar array and coating one cut surface of each bonded bar array piece with resin.
Career Highlights
Satoshi Shiota is currently employed at Hitachi Metals, Ltd., where he continues to innovate in the field of scintillator technology. His work has been instrumental in advancing the capabilities of scintillator materials, which are crucial in various applications, including medical imaging and radiation detection.
Collaborations
Throughout his career, Satoshi has collaborated with notable colleagues such as Akira Shigekawa and Hideo Nitta. These collaborations have further enriched his research and development efforts in scintillator technology.
Conclusion
Satoshi Shiota's contributions to scintillator technology through his innovative patents and collaborations highlight his role as a key figure in this field. His work continues to influence advancements in materials used for X-ray energy detection and medical imaging applications.
