Location History:
- St. Clair Shores, MI (US) (2003 - 2004)
- St. Clair Shoes, MI (US) (2004)
Company Filing History:
Years Active: 2003-2004
Title: The Innovative Contributions of Earl Ray Dover
Introduction
Earl Ray Dover is a notable inventor based in St. Clair Shores, MI (US). He has made significant contributions to the field of vehicle design, particularly through his innovative patents. With a total of 3 patents to his name, Dover has demonstrated a commitment to enhancing vehicle functionality and safety.
Latest Patents
Dover's latest patents include a vehicle bed assembly and a method for making a vehicle bed assembly. This innovative design features a floor pan, a front wall, and substantially identical side walls. The assembly includes a rear wall that is deployed upon a tailgate, which is selectively coupled to the floor pan. Additionally, the design incorporates a pair of top rail members that overlay and receive one of the side walls, along with a bracket that connects to the top rail member through end cap members. This structure provides a direct load path from any location on the side walls to the bracket, reducing the likelihood of damage to the assembly. Furthermore, the vehicle bed assembly allows for the construction of a raised platform and includes stake pockets for added versatility.
Career Highlights
Earl Ray Dover is currently associated with Ford Global Technologies, LLC, where he continues to innovate and contribute to vehicle design. His work focuses on creating solutions that enhance the durability and functionality of vehicle components.
Collaborations
Dover has collaborated with notable coworkers such as Peter Miskech and David Gary Dahlstrom, contributing to a dynamic team environment that fosters innovation.
Conclusion
Earl Ray Dover's inventive spirit and dedication to improving vehicle design are evident in his patents and career achievements. His contributions continue to influence the automotive industry, showcasing the importance of innovation in enhancing vehicle safety and functionality.