Aichi, Japan

Akira Iseki

USPTO Granted Patents = 4 

 

Average Co-Inventor Count = 3.7

ph-index = 1

Forward Citations = 4(Granted Patents)


Location History:

  • Aichi pref., JP (2006)
  • Aichi, JP (2007)

Company Filing History:


Years Active: 2006-2025

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4 patents (USPTO):Explore Patents

Title: Akira Iseki: Innovator in Machine Tool Technology

Introduction

Akira Iseki is a notable inventor based in Aichi, Japan, recognized for his contributions to machine tool technology. With a total of 4 patents to his name, Iseki has made significant advancements in the field, particularly in the areas of controllers and numerical control systems.

Latest Patents

Iseki's latest patents include a controller that features data collection circuitry designed to gather machining data, including timestamps of machined portions of workpieces. This controller also incorporates temperature circuitry to obtain temperature data at specific intervals, as well as dimension data input circuitry for receiving measurements of machined portions. Additionally, it employs machine learning circuitry to correct displacements caused by temperature changes. Another significant patent is for a numerical controller that simulates mechanical structure deformation and estimates machining errors based on drive mechanism data. This innovation allows for precise corrections in machining processes.

Career Highlights

Throughout his career, Akira Iseki has worked with prominent companies such as Yamazaki Mazak Corporation and Mitsubishi Electric Corporation. His experience in these organizations has contributed to his expertise in developing advanced machine tools and control systems.

Collaborations

Iseki has collaborated with notable colleagues, including Toshiyuki Muraki and Tomonori Sato, who have also played important roles in the field of machine tool technology.

Conclusion

Akira Iseki's innovative work in machine tool technology and his impressive portfolio of patents highlight his significant impact on the industry. His contributions continue to influence advancements in precision machining and control systems.

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