Location History:
- Granger, IN (US) (1980 - 2004)
- Galine, MI (US) (2006)
Company Filing History:
Years Active: 1980-2006
Title: The Innovative Contributions of Robert K. Wilson
Introduction
Robert K. Wilson is a notable inventor based in Granger, Indiana, recognized for his significant contributions to hydraulic systems. With a total of 15 patents to his name, Wilson has made a lasting impact in the field of automotive technology, particularly in brake systems.
Latest Patents
One of Wilson's latest inventions is a hydraulic brake booster designed to enhance the efficiency and effectiveness of brake systems. This innovative device features an actuator arrangement for a control valve that utilizes a ball located in a first sleeve within a stepped bore of a cylindrical member. The design includes a pin that engages the ball, allowing for precise control of fluid communication between the actuation chamber and a reservoir. The hydraulic brake booster operates by responding to input forces to initiate metered communication of pressurized fluid, thereby facilitating brake applications. This invention exemplifies Wilson's commitment to improving safety and performance in automotive braking systems.
Career Highlights
Throughout his career, Robert K. Wilson has worked with prominent companies such as AlliedSignal Inc. and Robert Bosch GmbH. His experience in these organizations has allowed him to develop and refine his innovative ideas, contributing to advancements in hydraulic technology.
Collaborations
Wilson has collaborated with notable individuals in the field, including Donald A. Crumb and William John Penninger. These partnerships have fostered a creative environment that has led to the development of groundbreaking inventions.
Conclusion
Robert K. Wilson's contributions to hydraulic systems and automotive technology are significant and impactful. His innovative designs and collaborative efforts continue to influence the industry, showcasing the importance of creativity and engineering in enhancing vehicle safety and performance.