Location History:
- Ellsworth, MN (US) (1991)
- Saint Paul, MN (US) (1991 - 1994)
- Ellsworth Township Pierce County, WI (US) (1996)
- Ellsworth, WI (US) (1988 - 2014)
- River Falls, WI (US) (2007 - 2016)
Company Filing History:
Years Active: 1988-2016
Title: The Innovative Journey of Gregory L. Zwadlo
Introduction
Gregory L. Zwadlo, an accomplished inventor based in Ellsworth, Wisconsin, holds an impressive portfolio of 30 patents. His contributions to the field of electrically conductive materials highlight his profound impact on innovation and technology.
Latest Patents
Among his notable patents, Zwadlo has developed methods for forming patterns of electrically conductive materials. This invention utilizes an elastomeric relief element that features an uppermost relief surface with a substantial relief image depth of at least 50 micrometers. A specialized printable material composition containing an electrically conductive print material is applied, ensuring the material retains conductivity after being transferred onto a receiver element. Furthermore, he has patented a system for printing lines as fine as 20 microns. This system employs a laser to create pixel features on a flexographic plate, allowing for high precision in printing applications.
Career Highlights
Throughout his career, Zwadlo has made significant contributions while employed at prominent companies such as Minnesota Mining and Manufacturing Company and Eastman Kodak Company. His work has led to advancements in printing technologies and materials engineering.
Collaborations
Zwadlo has collaborated with esteemed colleagues including Elsie Anderson Fohrenkamm and Kevin M. Kidnie. These partnerships have fostered innovation and driven forward the development of new technologies in the field.
Conclusion
Gregory L. Zwadlo's work exemplifies the spirit of innovation that propels industries forward. With a prolific collection of patents and collaborations with notable professionals, his contributions will undoubtedly continue to influence future inventions in electrically conductive materials and printing technology.