Seattle, WA, United States of America

Jeff Devlin

USPTO Granted Patents = 5 


Average Co-Inventor Count = 4.2

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2020-2023

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5 patents (USPTO):Explore Patents

Title: Jeff Devlin: Innovator in Fastening Technologies

Introduction

Jeff Devlin is a prominent inventor based in Seattle, WA (US), known for his contributions to fastening technologies. With a total of 5 patents, he has made significant advancements in the field, particularly in the design and functionality of swage tools.

Latest Patents

Among his latest patents, the "Sensor based control of swage tools" introduces systems and methods for inspecting the installation of fasteners. This innovative method involves monitoring the hydraulic pressure of a tool during the installation process. It detects significant drops in hydraulic pressure, indicating potential issues such as a snapped pintail of the fastener, and subsequently reduces the hydraulic pressure to address the problem. Another notable patent is the "Offset collar delivery for swage tools," which outlines a method for fastening using a swage tool. This method includes selecting a hole in a part, aligning a lockbolt collar with the hole's center, and securely fastening the collar to the lockbolt.

Career Highlights

Jeff Devlin is currently employed at The Boeing Company, where he applies his expertise in fastening technologies. His work has contributed to the development of more efficient and reliable fastening systems, enhancing the overall safety and performance of aerospace components.

Collaborations

Throughout his career, Jeff has collaborated with talented individuals such as Kwok Tung Chan and Tanni Sisco, further enriching his innovative endeavors.

Conclusion

Jeff Devlin's contributions to fastening technologies through his patents and work at The Boeing Company highlight his role as a key innovator in the industry. His advancements continue to influence the field and improve the safety and efficiency of fastening systems.

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