Company Filing History:
Years Active: 2009-2010
Title: Joseph Charles Dailey: Innovator in Light Duty Motor Vehicle Technology
Introduction
Joseph Charles Dailey is a notable inventor based in Phoenix, AZ (US), recognized for his contributions to light duty motor vehicle technology. With a total of 2 patents, Dailey has made significant advancements in vehicle control systems, enhancing both functionality and safety.
Latest Patents
Dailey's latest patents include "Controlled access for light duty motor vehicle" and "Shunt for control network in light duty motor vehicle." The first patent describes a control module that operates a ramp in coordination with a powered sliding door. This control module connects to the OEM network and features a microprocessor that produces data sequences to maintain network activity, preventing other modules from entering a low power mode. Additionally, it includes a display for diagnosing ramp operations. The second patent involves a programmed microprocessor with a learning mode that stores data from a circuit connected to a vehicle's wiring harness. This innovation ensures that the removal of the circuit does not trigger an error, as the microprocessor supplies the necessary data instead.
Career Highlights
Joseph Charles Dailey is currently employed at Vantage Mobility International, LLC, where he continues to develop innovative solutions for the automotive industry. His work focuses on enhancing vehicle accessibility and control systems, contributing to the advancement of light duty motor vehicles.
Collaborations
One of Dailey's notable collaborators is Roger Edward Desmarais, Jr. Together, they have worked on various projects that aim to improve vehicle technology and user experience.
Conclusion
Joseph Charles Dailey's contributions to light duty motor vehicle technology through his patents and work at Vantage Mobility International, LLC, highlight his role as an influential inventor in the automotive field. His innovations continue to shape the future of vehicle accessibility and control systems.