Kokomo, IN, United States of America

James A Kinley


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 14(Granted Patents)


Company Filing History:


Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: James A. Kinley: Innovator in Oxygen Sensor Technology

Introduction

James A. Kinley is a notable inventor based in Kokomo, IN (US). He has made significant contributions to the field of automotive technology, particularly in the development of oxygen sensor interface circuits. His innovative work has led to the creation of a patent that enhances the functionality and reliability of oxygen sensors used in vehicles.

Latest Patents

James A. Kinley holds a patent for a "Configurable interface circuit for exhaust gas oxygen sensors." This invention allows an oxygen sensor interface circuit to be configured on the fly by an electronic controller, such as an engine controller. The design supports various oxygen sensors with unique interface requirements, reliably identifies sensor faults, and enables rapid detection of a warmed-up sensor. The interface circuit is adaptable to work with multiple sensors and enhances fault detection reliability, including the measurement of leakage to ground or battery.

Career Highlights

James A. Kinley is associated with Delphi Technologies, Inc., where he has contributed to advancements in automotive technology. His work focuses on improving sensor technology, which is crucial for vehicle performance and emissions control. His innovative approach has positioned him as a key player in the industry.

Collaborations

James has collaborated with talented individuals such as Kevin M. Gertiser and Ashraf Kamal Kamel. These collaborations have fostered a creative environment that encourages innovation and the development of cutting-edge technologies.

Conclusion

James A. Kinley's contributions to oxygen sensor technology exemplify the impact of innovation in the automotive industry. His patent and collaborative efforts highlight the importance of adaptability and reliability in modern vehicle systems.

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