Wellington, New Zealand

Ashley James Gray


 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Ashley James Gray

Introduction

Ashley James Gray is a notable inventor based in Wellington, New Zealand. She has made significant contributions to the field of electrical engineering, particularly in the area of energy transfer systems. Her innovative approach has led to the development of a unique patent that addresses the efficient coupling of electrical energy to resonated inductive loads.

Latest Patents

Ashley holds a patent for a "Circuit and method for coupling electrical energy to a resonated inductive load." This invention involves a switching circuit that is repetitively configured to charge an energy transfer capacitance from an electrical supply. It then injects a discrete pulse of energy into a resonated load circuit by discharging the capacitance. The load circuit is formed by a resonating capacitance and an inductive load device, such as a motor or an induction heating device. The energy circulates in the load circuit at or near its natural resonant frequency, optimizing energy transfer efficiency.

Career Highlights

Ashley is currently employed at Restech Limited, where she continues to innovate and develop new technologies. Her work focuses on enhancing energy transfer methods, which are crucial for various applications in modern technology. With her expertise, she has positioned herself as a key player in the field of electrical engineering.

Collaborations

Ashley collaborates with her coworker, Neville Roy Samuel Illsley, to further advance their projects and share insights in their respective areas of expertise.

Conclusion

Ashley James Gray's contributions to the field of electrical engineering through her innovative patent demonstrate her commitment to advancing technology. Her work at Restech Limited and collaboration with fellow engineers highlight her role in shaping the future of energy transfer systems.

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