Location History:
- Doylestown, OH (US) (2015 - 2018)
- Akron, OH (US) (2018)
Company Filing History:
Years Active: 2015-2018
Title: The Innovations of Jeffrey David Lucas
Introduction
Jeffrey David Lucas is an accomplished inventor based in Akron, OH. He holds a total of 3 patents and has made significant contributions to the field of building control systems. His work focuses on enhancing the functionality and user interaction of building controllers.
Latest Patents
One of his latest patents is a "Building controller with operating system interaction through an integrated display." This invention allows for bidirectional communication between the building controller and various building control components. The controller is designed with a housing, a control unit, and a display unit that facilitates user monitoring and entry of operating system parameters.
Another notable patent is the "Analog/digital input architecture having programmable analog output mode." This apparatus includes a current source component, a pulse-width modulation control component, and several other features that enhance the input/output capabilities of the device. It is designed to protect against damage and filter out high-frequency noise, making it a robust solution for modern building control systems.
Career Highlights
Jeffrey David Lucas is currently employed at Honeywell International Inc., where he continues to innovate and develop advanced technologies. His work has been instrumental in improving building automation and control systems, making them more efficient and user-friendly.
Collaborations
Throughout his career, Jeffrey has collaborated with notable colleagues such as Joseph Majewski and Victor Allen Camp. These partnerships have contributed to the successful development of his patented technologies.
Conclusion
Jeffrey David Lucas is a prominent inventor whose work in building control systems has led to significant advancements in the field. His innovative patents reflect his commitment to enhancing technology for better user interaction and system efficiency.