Denver, CO, United States of America

Rosalind K Takata

USPTO Granted Patents = 19 

 

 

Average Co-Inventor Count = 3.7

ph-index = 3

Forward Citations = 23(Granted Patents)


Company Filing History:


Years Active: 2016-2025

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19 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Rosalind K Takata, Pioneering Automated Techniques in Tubular Structures

Introduction:

Rosalind K Takata, a brilliant inventor based in Denver, CO (US), has made a significant impact in the realm of industrial applications with his innovative automated techniques. With an impressive portfolio boasting 15 patents, Takata's expertise lies in revolutionizing the fitting of flanges to tubular sections, propelling the efficiency, precision, and cost-effectiveness of large-scale structures used in various industries.

Latest Patents:

Takata's latest patents showcase his forward-thinking approach to enhancing the construction of tubular structures. His "Flange fitting for tubular structures" patent introduces automated techniques that not only accelerate the attachment of flanges but also ensure tighter dimensional tolerances. This innovation is invaluable for creating thinner-walled, lighter, and more economical tubular structures. Additionally, his "Spiral forming" patent illustrates his mastery in joining rolled material edges along a spiral joint to construct conical and cylindrical structures with meticulous geometric control.

Career Highlights:

As a key figure at Keystone Tower Systems, Inc., Takata has spearheaded groundbreaking advancements in industrial construction methods. His commitment to pushing the boundaries of automation and precision manufacturing has earned him widespread recognition within the industry. Takata's dedication to excellence is evident in the transformative technologies he continues to develop.

Collaborations:

Takata's collaborative efforts with esteemed colleagues, Eric D Smith and Loren Daniel Bridgers, have further enriched his innovative projects. Together, they have synergized their expertise to push the boundaries of what is achievable in tubular structure fabrication. The combined efforts of these visionaries have set new standards for efficiency and quality in the field.

Conclusion:

In conclusion, Rosalind K Takata stands as a true trailblazer in the realm of automated techniques for tubular structures. His relentless pursuit of excellence and passion for innovation have not only propelled the industry forward but have also set a new benchmark for precision and efficiency. Through his groundbreaking patents and collaborative efforts, Takata continues to shape the landscape of industrial applications, inspiring future generations of inventors and engineers.

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