Company Filing History:
Years Active: 2016-2025
Title: David Scott: Innovator in Internal Combustion Engine Technology
Introduction
David Scott is a notable inventor based in Clinton Township, MI (US). He has made significant contributions to the field of internal combustion engines, holding a total of 3 patents. His work focuses on innovative solutions that enhance engine performance and reduce emissions.
Latest Patents
One of David's latest patents is the "Dual-acting valve enabled catalyst bypass." This invention involves an internal combustion engine that features a cylinder head with an exhaust manifold designed to supply exhaust gas through a main exhaust outlet to a main exhaust aftertreatment system equipped with a main catalytic converter. The system includes a bypass passage in fluid communication with the exhaust manifold via a bypass port, along with a bypass catalytic converter located within the bypass passage. The dual-acting valve assembly is engineered to transition between a first position that seals the bypass port and a second position that seals the main exhaust outlet. This innovative design allows for the diversion of exhaust flow through the bypass passage and the bypass catalytic converter during cold starts, long idle periods, and low main catalytic converter temperature conditions, ultimately reducing emissions.
Career Highlights
David Scott is currently employed at FCA US LLC, where he continues to develop and refine technologies related to internal combustion engines. His expertise and innovative mindset have positioned him as a valuable asset within the company.
Collaborations
David collaborates with talented coworkers, including Jeremy S. Rolfs and Mark C. Trostle, who contribute to the advancement of automotive technologies.
Conclusion
David Scott's contributions to the field of internal combustion engines exemplify his commitment to innovation and environmental sustainability. His patents reflect a deep understanding of engineering principles and a dedication to improving automotive performance.
