Lexington, KY, United States of America

Charles L DeCoste Jr


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 1989

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1 patent (USPTO):Explore Patents

Title: The Innovations of Charles L DeCoste Jr.

Introduction

Charles L DeCoste Jr. is a notable inventor based in Lexington, KY (US). He has made significant contributions to the field of print technology, particularly through his innovative patent related to printheads. His work exemplifies the intersection of engineering and creativity, leading to advancements in printing technology.

Latest Patents

One of Charles L DeCoste Jr.'s key patents is the "Method of making coinjection molded daisywheel printhead." This patent describes a process where unfilled nylon and mineral-filled nylon are injected to create a durable printhead. The unfilled nylon provides resistance to flexural fatigue, while the mineral-filled nylon enhances impact resistance. The method involves a two-step injection process, ensuring that the printhead is capable of greater deflection compared to those made solely from impact-resistant materials. This innovation has implications for the durability and efficiency of printing devices.

Career Highlights

Throughout his career, Charles has been associated with the International Business Machines Corporation (IBM), where he has contributed to various projects and innovations. His expertise in materials and engineering has played a crucial role in the development of advanced printing technologies.

Collaborations

Charles has worked alongside Larry Oral Aulick, collaborating on projects that leverage their combined expertise in engineering and technology. Their partnership has led to significant advancements in the field of print technology.

Conclusion

Charles L DeCoste Jr. is a distinguished inventor whose work has had a lasting impact on the printing industry. His innovative approach to printhead design demonstrates the importance of combining materials science with engineering principles. His contributions continue to influence the development of more efficient and durable printing technologies.

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