Carmel, IN, United States of America

Justin D Seacat

USPTO Granted Patents = 7 

 

Average Co-Inventor Count = 3.6

ph-index = 2

Forward Citations = 18(Granted Patents)


Company Filing History:


Years Active: 2019-2025

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7 patents (USPTO):Explore Patents

Title: Justin D Seacat: Innovator in Lock Technology

Introduction

Justin D Seacat is a prominent inventor based in Carmel, IN (US), known for his contributions to the field of lock technology. With a total of 7 patents to his name, Seacat has made significant advancements in electronic deadbolt systems and locking mechanisms.

Latest Patents

One of his latest patents is a "Method and apparatus for deadbolt position sensing." This innovation involves an electronic deadbolt control system that allows for precise control of the deadbolt's position, enhancing security and user convenience. The system includes an output shaft connected to an electric motor, which transmits actuation force to the deadbolt. Additionally, it features magnets that help define the home position for both left and right-hand deadbolts. Another notable patent is the "Locking assembly for sliding doors," which outlines a method for creating an aligned locking assembly using adhesives and a releasable coupler. This design improves the efficiency and reliability of sliding door locks.

Career Highlights

Justin D Seacat is currently employed at Schlage Lock Company LLC, where he continues to innovate in the field of security technology. His work has been instrumental in developing advanced locking solutions that meet modern security needs.

Collaborations

Throughout his career, Seacat has collaborated with notable colleagues, including William B Ainley and David Mathew Baty. These partnerships have contributed to the successful development of his patented technologies.

Conclusion

Justin D Seacat's innovative work in lock technology has significantly impacted the industry, providing enhanced security solutions for consumers. His patents reflect a commitment to advancing the functionality and reliability of locking mechanisms.

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