Location History:
- Rochester, NY (US) (2014 - 2020)
- Palo Alto, CA (US) (2022 - 2023)
Company Filing History:
Years Active: 2014-2023
Title: Innovations of Joanne L Lee
Introduction
Joanne L Lee is a prominent inventor based in Rochester, NY (US), known for her significant contributions to the field of additive manufacturing and imaging technologies. With a total of 13 patents to her name, she has made remarkable advancements that have influenced various industries.
Latest Patents
Among her latest patents is the "Pre-heat addressed vapor rejection for fountain solution image formation." This innovative method and system enable the creation of a patterned liquid by selectively heating an imaging blanket with a digitally controlled energy source. The process allows for vapor condensation on unheated areas and vapor rejection from heated areas, generating a fountain material image. Another notable patent is related to "Additive manufacturing systems and methods for the same." This patent describes an additive manufacturing device that includes a stage for supporting a substrate, a printhead above the stage, and a targeted heating system. The printhead heats a build material to a molten state, depositing it on the substrate in droplets to fabricate articles, while the targeted heating system controls the temperature of the droplets and the area around the substrate.
Career Highlights
Joanne has worked with renowned companies such as Xerox Corporation and the Palo Alto Research Center Inc. Her experience in these organizations has allowed her to develop and refine her innovative ideas, contributing to her success as an inventor.
Collaborations
Throughout her career, Joanne has collaborated with notable individuals, including Paul J McConville and Jason Mathew LeFevre. These collaborations have further enriched her work and expanded her impact in the field.
Conclusion
Joanne L Lee's contributions to innovation and technology are significant, with her patents reflecting her expertise and creativity. Her work continues to inspire advancements in additive manufacturing and imaging technologies.