Location History:
- Euless, TX (US) (1985)
- Milford, TX (US) (1990)
Company Filing History:
Years Active: 1985-1990
Title: Innovations by James R. Howeth
Introduction
James R. Howeth is an accomplished inventor based in Milford, Texas. He has made significant contributions to the field of fluid measurement technology. With a total of 2 patents, Howeth has developed innovative solutions that enhance the accuracy and reliability of fluid level measurements.
Latest Patents
One of his latest patents is a gauge with a magnetically driven voltage divider. This gauge assembly incorporates a voltage divider circuit to provide reliable and accurate measurement of fluid levels within tanks or other environments. The design features a pointer assembly that pivots in response to a moving float, indicating the fluid level. The gauge utilizes a resistive element and contact arms to form a voltage divider circuit, ensuring precise readings.
Another notable patent is a fluid measurement gauge designed for large underground storage tanks, such as those used for gasoline at service stations. This innovative gauge includes a vertically positioned housing with a leadscrew driven by a stepper motor. A float encircles the housing and contains a magnet that interacts with a magnetic sensor mounted on a nut. This design allows for accurate fluid level measurements and can also detect the interface between two different fluids.
Career Highlights
James R. Howeth is currently associated with Rochester Gauges, Inc., where he continues to develop cutting-edge technologies in fluid measurement. His work has significantly impacted the industry, providing solutions that enhance safety and efficiency in fluid management.
Collaborations
Howeth collaborates with Nicholas M. Fekete, contributing to the advancement of fluid measurement technologies.
Conclusion
James R. Howeth's innovative patents and contributions to fluid measurement technology demonstrate his expertise and commitment to improving industry standards. His work continues to influence the field, making fluid measurement more accurate and reliable.