Indialantic, FL, United States of America

Kelly Gatson Swartz


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2005

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1 patent (USPTO):Explore Patents

Title: Kelly Gatson Swartz: Innovator in Pneumatic Braking Systems

Introduction

Kelly Gatson Swartz is a notable inventor based in Indialantic, Florida. She has made significant contributions to the field of vehicle braking systems, particularly through her innovative patent. Her work focuses on enhancing the efficiency and reliability of pneumatic braking methods.

Latest Patents

Kelly Gatson Swartz holds a patent for "Methods and system for controlling latching exhaust valves." This invention provides a pneumatic braking method and system for vehicles. The system includes a brake cylinder, a reservoir, and a latching exhaust valve (LEV) that can move between open and closed positions. The LEV is fluidly connected between the reservoir and the brake cylinder. It features a first solenoid and a second solenoid, both fluidly connected to the reservoir. These solenoids are designed to be controlled electronically and pneumatically, allowing for selection based on vehicle operating requirements. The electronic controller includes a release on failure circuit, which ensures the LEV operates during power loss or electronic controller failure.

Career Highlights

Kelly is currently employed at GE Harris Railway Electronics, Inc., where she applies her expertise in developing advanced braking systems. Her innovative approach has positioned her as a key player in the field of railway electronics.

Collaborations

Throughout her career, Kelly has collaborated with notable colleagues, including Robert Moffitt and John P. Cooke. These partnerships have contributed to the advancement of technology in their respective fields.

Conclusion

Kelly Gatson Swartz is a pioneering inventor whose work in pneumatic braking systems has the potential to enhance vehicle safety and performance. Her contributions reflect her commitment to innovation and excellence in engineering.

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