Company Filing History:
Years Active: 2015-2018
Title: Innovations and Contributions of Inventor Patrick Alan Lewis
Introduction: Patrick Alan Lewis, based in Howell, MI, is recognized for his impactful contributions to the field of automotive technology. With a total of two patents to his name, Lewis has made significant strides in enhancing vehicle transmission systems.
Latest Patents: Lewis's latest patents include the "System and method for torque converter clutch pressure circuit filling and capacity detection." This invention details a transmission mechanism that incorporates a torque converter, hydraulic clutch control circuit, and a controller designed for optimal pressure management during operational transitions. Additionally, he developed a "Vehicle transmission with tie-up monitoring logic," which enables a vehicle's transmission system to monitor for a threshold tie-up condition effectively. This innovation utilizes input signals and gearbox status to manage torque capacities, ensuring smooth operational efficiency within transmissions.
Career Highlights: Throughout his career, Patrick Alan Lewis has worked at GM Global Technology Operations LLC, where he played an integral role in the development of cutting-edge automotive technologies. His expertise in transmission systems has positioned him as a valuable asset in the automotive innovation landscape.
Collaborations: Lewis has collaborated with notable professionals in the industry, including Scott D Biggs and Ronald F Lochocki, Jr. These collaborations have likely contributed to the refinement and success of his patented technologies, amplifying their impact within automotive engineering.
Conclusion: Patrick Alan Lewis stands out as an important innovator whose work has led to advancements in vehicle transmission systems. His patents reflect a deep understanding of automotive mechanics and a commitment to improving vehicle performance. The contributions of inventors like Lewis are vital in driving the automotive industry forward, enhancing both functionality and efficiency in modern vehicles.