West Allis, WI, United States of America

Dawn N Traynor


 

Average Co-Inventor Count = 8.0

ph-index = 2

Forward Citations = 12(Granted Patents)


Company Filing History:


Years Active: 2013-2014

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2 patents (USPTO):Explore Patents

Title: Dawn N. Traynor - Innovator in Engine Technology

Introduction

Dawn N. Traynor is a notable inventor based in West Allis, Wisconsin, known for her contributions to engine technology. With a total of two patents to her name, she has made significant strides in enhancing the efficiency and functionality of internal combustion engines.

Latest Patents

One of her latest patents focuses on an automatic choke for an engine. This innovation includes an internal combustion engine that features a muffler designed to reduce exhaust gas noise. The muffler is equipped with a housing that defines both an interior and an exterior space. It incorporates a choke valve that controls air flow in a carburetor, which works in conjunction with a thermally responsive element. This element is coupled with the choke valve and is designed to move the choke valve in response to temperature changes. The invention also includes a thermally conductive member that facilitates the transfer of heat from the exhaust gases within the muffler to the thermally responsive element, optimizing engine performance.

Career Highlights

Dawn N. Traynor has developed these innovative technologies while working at Briggs & Stratton Corporation, a leading manufacturer in the engine and outdoor power equipment sectors. Her work has been instrumental in advancing engine performance and reducing environmental impact through noise reduction.

Collaborations

Throughout her career, Dawn has collaborated with notable professionals such as Christopher Joseph Drew and David W. Branski. These collaborations have allowed her to refine her inventions and contribute to the field of engine technology significantly.

Conclusion

Dawn N. Traynor's contributions as an inventor have positioned her as a significant figure in the automotive engineering field. Through her innovative designs and collaborative efforts, she continues to make strides toward improving engine efficiency and functionality. Her work not only enhances the performance of engines but also contributes to sustainable practices in the industry.

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