Company Filing History:
Years Active: 1977-1994
Title: **The Innovative Journey of Damon H Duncan**
Introduction
Damon H Duncan, based in Phoenix, AZ, is a prominent inventor known for his contributions to the fields of vibration isolation and gyroscopic technology. With a total of six patents to his name, his work showcases the intersection of engineering principles and innovative design.
Latest Patents
Among Duncan's latest inventions is the **Three Parameter Viscous Damper and Isolator**. This device functions as a vibration isolation apparatus that incorporates a shaft with an axial bore and a piston. The design allows for effective damping through a system of bellows and extensions that work together to mitigate vibrations while providing necessary support.
Another significant invention is the **Two Axis Rate Gyro Apparatus**. This sophisticated device features a two-degree of freedom, open-loop system that uses a motor to rotate a shaft connected to a ring. By measuring the rate of rotation with variable reluctance pickoffs and an optical pickoff, Duncan's design enhances precision in applications that require accurate motion detection.
Career Highlights
Duncan's career has been marked by his tenure at reputable organizations such as Sperry Corporation and Honeywell GmbH. His time at these companies enabled him to hone his skills and contribute to technology that impacts various engineering sectors.
Collaborations
Throughout his career, Damon H Duncan has worked alongside notable colleagues, including Martin S Klemes and Lawrence P Davis. These collaborations have likely influenced his innovative output and provided a platform for shared knowledge and advancement in their respective fields.
Conclusion
Damon H Duncan's inventive spirit and commitment to innovation have established him as a noteworthy figure in the engineering community. With multiple patents that focus on crucial technologies, his contributions continue to shape the landscape of vibration and motion measurement, providing advancements that enhance both safety and efficiency in numerous applications.