Aichi, Japan

Takamitsu Kaneko



 

Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Takamitsu Kaneko

Introduction

Takamitsu Kaneko is a notable inventor based in Aichi, Japan, recognized for his innovative contributions to the field of muffler design and installation methods. With a single patent to his name, Kaneko's work exemplifies the intersection of engineering and practical application.

Latest Patents

Kaneko's patent, titled "Method for installing inlet pipe and method for supporting inlet pipe," presents a unique disposing method for an inlet pipe in a muffler comprising an outer shell, an inlet pipe, and a separating plate. The method outlines a systematic approach involving three key steps: first, inserting the inlet pipe into the outer shell through an opening at one end; second, maneuvering the inlet pipe within the outer shell orthogonally to the direction of its insertion; and finally, disposing of the separating plate by inserting it through the opening at the opposite end of the outer shell. This innovative design enhances efficiency in muffler assembly, showcasing Kaneko's inventive spirit.

Career Highlights

As part of Futaba Industrial Co., Ltd., Takamitsu Kaneko has made significant strides in automotive engineering. His contribution to the field, particularly through the aforementioned patent, reflects his commitment to improving manufacturing processes and product performance.

Collaborations

Throughout his career, Kaneko has collaborated with skilled professionals such as Toshikazu Namikiri and Katsuhiko Kainuma. These partnerships have fostered a collaborative environment that promotes innovation and enhances the quality of their engineering solutions.

Conclusion

Takamitsu Kaneko's inventive methods not only advance technology in muffler design but also highlight the importance of collaboration in driving innovation. His work at Futaba Industrial Co., Ltd. continues to inspire future advancements in engineering and manufacturing.

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