Niwa-gun, Japan

Hikaru Iryoda


Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations by Hikaru Iryoda

Introduction

Hikaru Iryoda is a notable inventor based in Niwa-gun, Japan. He has made significant contributions to the field of sheet metal processing through his innovative patents. His work primarily focuses on enhancing the efficiency and precision of laser machining systems.

Latest Patents

Hikaru Iryoda holds a patent for a "Sheet metal working system, laser machining apparatus, sheet metal working method, and machining region setting program for laser machining." This invention includes a laser machining apparatus designed for processing sheet metal within a designated laser machining region. The system features a camera for capturing images of the machining area, an illuminator for lighting the sheet metal, and circuitry that processes the captured images. The apparatus is equipped with a sheet metal support member that has elongated projections to hold the sheet metal in place during machining. The camera is strategically positioned to ensure optimal alignment for effective image capture, allowing the circuitry to identify bright regions as available machining areas.

Career Highlights

Hikaru Iryoda is associated with Yamazaki Mazak Corporation, a leading company in the manufacturing of advanced machine tools. His work at the corporation has been instrumental in developing innovative solutions for the machining industry.

Collaborations

Hikaru has collaborated with notable colleagues such as Yoshihiko Sakai and Tetsuro Nakamoto, contributing to various projects that enhance the capabilities of laser machining technologies.

Conclusion

Hikaru Iryoda's contributions to the field of laser machining and sheet metal processing demonstrate his commitment to innovation and excellence. His patent reflects a significant advancement in the industry, showcasing the potential for improved efficiency and precision in manufacturing processes.

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