Company Filing History:
Years Active: 2002-2011
Title: **Natalie G Payne: Innovator in Vane-Type Camshaft Phaser Technology**
Introduction
Natalie G Payne is a distinguished inventor based in Rochester, NY, known for her significant contributions to automotive engineering. With a total of six patents to her name, Natalie has dedicated her career to developing innovative solutions that improve engine performance and efficiency.
Latest Patents
Among her notable achievements, Natalie's latest patents include "Apparatus for Preventing Leakage Across Rotor Vanes in a Vane-Type Camshaft Phaser" and "Rotor and Stator Seals for a Vane-Type Camshaft Phaser." The first patent describes a design in which the rotor is split along an equatorial plane, allowing for a resilient seal that prevents leakage and enhances the effectiveness of the camshaft phaser. This unique approach integrates pressurized hydraulic fluid to assist in improving the sealing functionality. The second patent outlines a novel wiper seal element that ensures continuous sealing contact during the operation of the camshaft phaser, further illustrating Natalie's ingenuity in the field.
Career Highlights
Natalie has made a significant impact in the automotive industry through her work at Delphi Technologies, Inc., where she focuses on advancing camshaft phaser technology. Her inventions not only optimize engine performance but also align with modern automotive standards around efficiency and reliability.
Collaborations
Throughout her career, Natalie has collaborated with esteemed colleagues, including Dominic Borraccia and David M McCarthy. These partnerships have fostered a dynamic exchange of ideas and a shared commitment to driving innovation in automotive technology.
Conclusion
With six patents and a robust portfolio of innovative work, Natalie G Payne stands out as a prominent inventor in her field. Her contributions to vane-type camshaft phaser technology demonstrate her dedication to engineering excellence and her role in shaping the future of automotive advancements.