This inventor holds 2 USPTO granted patents. Top assignee: Honeywell G.m.b.h.. Active years: 1986-1990.
Location History:
- Big Lake, MN (US) (1986)
- St. Michael, MN (US) (1990)
Company Filing History:
Years Active: 1986-1990
Title: Florence G. Benson: Innovator in Automated Lead Wire Tinning
Introduction
Florence G. Benson is a notable inventor based in St. Michael, MN (US). She has made significant contributions to the field of automated lead wire tinning, holding 2 patents that showcase her innovative spirit and technical expertise.
Latest Patents
Her latest patents include an "Automated lead wire tinning apparatus mechanical adjustments" and an "Apparatus for automatically tinning leads of components mounted on tapes to carry the components through solder wave stations." These inventions incorporate adjustments that allow for tinning components of various sizes. Additionally, her foam generators feature independent foam rate adjustments, enabling the adjustment of foam height for each component lead. The designs also include guards to select specific segments of each lead for fluxing, along with a vacuum port that ensures excess solder does not clog the collection system. Furthermore, her invention for automatic lead wire tinning of tape-packaged components utilizes a wave station that establishes a wave of liquid solder, effectively transporting electrical components through the solder wave while removing excess solder.
Career Highlights
Florence is currently employed at Honeywell GmbH, where she continues to innovate and develop new technologies. Her work has significantly impacted the efficiency and effectiveness of soldering processes in the electronics industry.
Collaborations
Florence has collaborated with Mark J. Shireman, contributing to the advancement of automated soldering technologies.
Conclusion
Florence G. Benson's contributions to the field of automated lead wire tinning demonstrate her commitment to innovation and excellence. Her patents reflect her ability to solve complex problems and improve manufacturing processes.