Company Filing History:
Years Active: 2006-2025
Title: Michael William Lawrence: Innovative Mind from Lexington, KY
Introduction
Michael William Lawrence is a prolific inventor based in Lexington, KY. He holds an impressive portfolio of 25 patents, showcasing his exceptional contributions to technology and innovation.
Latest Patents
Among his recent inventions, two noteworthy patents stand out. The first is the "Sheet Conveying Device and Sheet Conveying Method," which features a system that involves a first and second roller designed to efficiently convey sheets. The first roller rotates in a forward direction for sheet movement, while the second roller, located downstream, can operate both in a forward and reverse direction. This unique mechanism ensures smooth conveyance of sheets through a controlled process.
The second significant invention is the "Grit Roller Feeder Rollers for Sticky Media." This system is designed for advancing sticky media through printers. It employs grit rollers that contact the adhesive side of liner-less label stock, facilitating smooth feeding into the printer. This innovative solution effectively overcomes challenges associated with handling adhesive materials in printing processes.
Career Highlights
Throughout his career, Michael has contributed to renowned companies, including Lexmark International, Inc. and Toshiba Tec Kabushiki Kaisha. His work in these organizations has played a pivotal role in enhancing their technological capabilities and product offerings.
Collaborations
Michael has had the privilege of working alongside talented professionals, including Kevin Matthew Johnson and Bryan Christopher Scharf. These collaborations have not only enriched his experience but have also fostered a culture of innovation within their teams.
Conclusion
In conclusion, Michael William Lawrence exemplifies the spirit of innovation through his extensive patent portfolio and contributions to major companies. His work continues to impact the field, enabling advancements in technology and functionality across diverse applications.