Company Filing History:
Years Active: 2020-2025
Title: Innovative Contributions of Yuichiro Noguchi
Introduction: Yuichiro Noguchi, an accomplished inventor based in Tokyo, Japan, has made significant strides in the field of mounting apparatus and detection methods. With a total of eight patents to his name, Noguchi’s work focuses on enhancing technology in manufacturing and assembly processes, particularly in the electronics sector.
Latest Patents: Among his recent innovations is a Mounting Apparatus and Parallelism Detection Method in Mounting Apparatus. This invention streamlines the parallelism detection process, which includes a first height detection phase and a second height detection phase to calculate the necessary alignment between the stage's placement surface and the holding surface of the mounting tool. Additionally, Noguchi developed a Mounting Apparatus and Film Supply Apparatus, designed to effectively place a film between electronic components and a mounting head. This apparatus features a film winding mechanism that ensures a fresh film is presented with each component mounting, along with a tension detection unit and control system for optimal operation.
Career Highlights: Yuichiro Noguchi has a robust professional background, having contributed to notable companies such as Shinkawa Ltd. and Yamaha Motor Robotics Holdings Co., Ltd. His expertise in engineering and invention has driven advancements in technologies that are critical to modern electronic assembly.
Collaborations: Throughout his career, Noguchi has worked alongside talented colleagues, including Kohei Seyama and Tetsuya Utano. Their collaborative efforts reflect a shared commitment to fostering innovation and developing cutting-edge solutions within the industry.
Conclusion: Yuichiro Noguchi's patent portfolio and career achievements underscore his role as a pivotal figure in advancing mounting technology and apparatus. His inventions demonstrate the potential for continual innovation in manufacturing processes, contributing significantly to the evolution of electronic assembly systems.