This inventor holds 3 USPTO granted patents and 1 published patent application and 2 EPO patents. Top assignees: Niigata University, Sumco Corporation. Active years: 2011-2013.
Company Filing History:

Years Active: 2011-2013
Title: Terutaka Goto: Innovator in Silicon Wafer Technology
Introduction
Terutaka Goto is a prominent inventor known for his significant contributions to the field of silicon wafer technology. He is based in Niigata, Japan, and has been awarded three patents that focus on the evaluation and manufacturing of silicon wafers. His work has advanced the understanding and efficiency of silicon wafer production, which is crucial for various electronic applications.
Latest Patents
Goto's latest patents include a method for quantitatively evaluating the concentration of atomic vacancies existing in silicon wafers, a method for manufacturing silicon wafers, and a silicon wafer manufactured by this method. These innovations enable more efficient evaluation of atomic vacancies in silicon wafers. The quantitative evaluation method involves oscillating an ultrasonic wave pulse while applying an external magnetic field to the silicon wafer. This process allows for the detection of phase differences between the ultrasonic wave pulse and the measurement wave pulse, leading to the calculation of an elastic constant that corresponds to changes in the external magnetic field.
Career Highlights
Throughout his career, Terutaka Goto has worked with notable institutions such as Niigata University and Sumco Corporation. His experience in these organizations has contributed to his expertise in silicon wafer technology and has facilitated his innovative research and development efforts.
Collaborations
Goto has collaborated with esteemed colleagues, including Hiroshi Kaneta and Yuichi Nemoto. Their joint efforts have furthered advancements in the field and have led to the successful development of new technologies related to silicon wafers.
Conclusion
Terutaka Goto's contributions to silicon wafer technology through his patents and collaborations have made a significant impact in the field. His innovative methods for evaluating and manufacturing silicon wafers continue to influence advancements in electronics and materials science.