North Ridgeville, OH, United States of America

Thomas J Weed

USPTO Granted Patents = 10 

 

Average Co-Inventor Count = 4.6

ph-index = 2

Forward Citations = 9(Granted Patents)


Location History:

  • Norton, OH (US) (2005 - 2007)
  • North Ridgeville, OH (US) (2013 - 2023)

Company Filing History:


Years Active: 2005-2023

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10 patents (USPTO):Explore Patents

Title: Thomas J Weed: Innovator in Vehicle Parking Brake Technology

Introduction

Thomas J Weed is a notable inventor based in North Ridgeville, Ohio, with a remarkable portfolio of 10 patents. His work primarily focuses on advancements in vehicle parking brake systems, showcasing his commitment to enhancing vehicle safety and functionality.

Latest Patents

Among his latest innovations is a parking brake apparatus for a vehicle. This invention features a controller that receives signals indicative of vehicle factors and manages the parking brake based on these inputs. The control logic ensures that the vehicle can only be unparked when specific conditions are met, enhancing safety during vehicle operation. Another significant patent involves a parking brake apparatus and method for a vehicle power unit that can connect to a towed unit. This system monitors air pressure signals to determine the connection status of the towed unit and controls the application or release of air brake components accordingly.

Career Highlights

Throughout his career, Thomas has worked with reputable companies, including Bendix Commercial Vehicle Systems LLC. His contributions to the field of vehicle safety technology have been instrumental in developing more reliable and efficient parking brake systems.

Collaborations

Thomas has collaborated with talented individuals such as Daniel Peter Zula and Kirit A Thakkar, further enriching his innovative endeavors.

Conclusion

Thomas J Weed's contributions to vehicle parking brake technology reflect his dedication to innovation and safety in the automotive industry. His patents continue to influence the design and functionality of modern vehicle systems.

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