This inventor holds 5 USPTO granted patents. Top assignees: Raytheon Company, Other. Active years: 1997-2025.
Location History:
- Lakeland, TN (US) (1997)
- Trumansburg, NY (US) (2000)
- Tampa, FL (US) (2015)
- Germantown, TN (US) (2023)
Company Filing History:

Years Active: 1997-2025
Title: Gary W Gleason: Innovator in Bimetallic Pipe Thermometers
Introduction
Gary W Gleason is a notable inventor based in Lakeland, TN (US). He has made significant contributions to the field of temperature measurement technology, particularly through his innovative designs for bimetallic pipe thermometers. With a total of 5 patents to his name, Gleason's work has enhanced the functionality and reliability of these essential instruments.
Latest Patents
One of Gleason's latest patents is titled "Bridged slot on the insulating and seating cup of a bimetallic pipe surface temperature thermometer." This invention represents an improvement to bimetallic pipe thermometers that utilize insulating tubular seats. The present invention enhances the insulating tubular seat by closing off the tail slot along a proximal end with a bridge or stop. As a result, users of these thermometers no longer need to worry about the tail of the bimetallic coil sensor unintentionally slipping out of what is currently an opened-ended tail slot.
Career Highlights
Throughout his career, Gary W Gleason has worked with various companies, including Raytheon Company. His experience in the industry has allowed him to develop practical solutions that address common challenges faced by users of temperature measurement devices.
Collaborations
Gleason has collaborated with several professionals in his field, including Richard E Neese and Christopher R Eck. These partnerships have contributed to the advancement of his inventions and the overall improvement of bimetallic thermometer technology.
Conclusion
In summary, Gary W Gleason is a distinguished inventor whose work has significantly impacted the design and functionality of bimetallic pipe thermometers. His innovative approach continues to enhance the reliability of temperature measurement in various applications.