Lake Forest, CA, United States of America

William Culpi


 

Average Co-Inventor Count = 1.8

ph-index = 3

Forward Citations = 21(Granted Patents)


Company Filing History:


Years Active: 2008-2024

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8 patents (USPTO):Explore Patents

Title: Innovations of William Culpi

Introduction

William Culpi is an accomplished inventor based in Lake Forest, California. He holds a total of eight patents, showcasing his expertise in the field of piezoelectric technology. His innovative contributions have significantly advanced the capabilities of motion control systems.

Latest Patents

Culpi's latest patents include the "Piezoelectric stick-slip-motor and method of controlling same." This invention relates to a piezoelectric stick-slip motor and its control method. The exemplary method enables speed variation of the motor with reduced noise generation by applying a cyclic sawtooth-waveform drive voltage signal. This signal operates the motor at a constant speed while allowing for gradual changes in speed by adjusting the gradient of the drive voltage. Another notable patent is the "Dual mode motion control system and method for piezo motor." This system includes an electronic controller and an analog driver for moving mechanical devices. It operates in both digital and analog circuit modes, allowing for precise control of the stick-slip piezo motor at varying speeds.

Career Highlights

Throughout his career, William Culpi has worked with notable companies such as Physik Instrumente (PI) GmbH & Co. KG and Newport Corporation. His experience in these organizations has contributed to his development as a leading inventor in the field of piezoelectric technology.

Collaborations

Culpi has collaborated with esteemed colleagues, including William E. Bryant and John M. Rickman. These partnerships have fostered innovation and the exchange of ideas, further enhancing his contributions to the industry.

Conclusion

William Culpi's work in piezoelectric technology exemplifies his commitment to innovation and excellence. His patents and career achievements reflect his significant impact on motion control systems. His contributions continue to influence advancements in this vital field.

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