Lafayette, IN, United States of America

Deanne Clements


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 15(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Deanne Clements: Innovator in Micromechanisms

Introduction

Deanne Clements is a distinguished inventor based in Lafayette, Indiana. She has made significant contributions to the field of micromechanisms with her innovative designs. Clements holds a patent for a unique device that showcases her expertise and creativity in engineering.

Latest Patents

Clements is credited with one patent titled "Dual Position Linear Displacement Micromechanism." This patented apparatus is capable of achieving two stable configurations, demonstrating a remarkable bistable mechanism. The device consists of a leg that is coupled on one end by a base member and on the other end by a shuttle. This leg is designed to store potential energy as it is deflected, presenting both a maximum potential energy position and a low potential energy position on either side of this maximum. Furthermore, her patent includes a novel latching mechanism that utilizes a grasping member, lock slider, and detent slider to facilitate locked and unlocked configurations through a single directional actuation.

Career Highlights

Clements is associated with Brigham Young University, where she continues to contribute to research and innovation. Her work focuses on developing advanced mechanisms that can find applications in various technological domains.

Collaborations

Throughout her career, Deanne has collaborated with notable colleagues, including Larry L. Howell and Scott Lyon, further enriching her research and development efforts. These collaborations highlight the importance of teamwork in fostering innovation and advancing technological progress.

Conclusion

In summary, Deanne Clements is a talented inventor whose patent in dual position linear displacement micromechanisms underscores her innovative spirit. Her affiliation with Brigham Young University and collaborations with esteemed colleagues position her as a significant contributor to the field of engineering. Clements' work exemplifies the intersection of creativity and technology, paving the way for future advancements.

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