Company Filing History:
Years Active: 1999
Title: Phong Vu Dao: Innovator in Noise Reduction Technology
Introduction
Phong Vu Dao is an accomplished inventor based in Pleasanton, CA (US). He has made significant contributions to the field of noise reduction technology, particularly in the context of sensor applications. His innovative approach addresses the challenges posed by resonance-induced noise, which can adversely affect sensor performance.
Latest Patents
Phong Vu Dao holds a patent for an invention titled "Adaptive removal of resonance-induced noise." This patent describes a method for removing noise from the digitized output of a sensor that is subject to undesired resonance. The invention is particularly notable for its ability to function effectively even when the resonant frequency is unknown or drifts. The technology employs a very narrow notch filter that is recursive (IIR), ensuring low phase delay, which is crucial for closed-loop control applications. The apparatus also includes a tunable FIR filter that tracks the resonance to be removed, allowing for precise tuning of the notch frequency.
Career Highlights
Throughout his career, Phong Vu Dao has demonstrated a commitment to advancing sensor technology. His work has led to the development of innovative solutions that enhance the reliability and accuracy of sensor systems. With a focus on practical applications, his inventions have the potential to impact various industries that rely on precise sensor data.
Collaborations
Phong Vu Dao has collaborated with notable colleagues, including Stanley A White and Jeffrey P Woodard. These partnerships have fostered a collaborative environment that encourages the exchange of ideas and expertise, further driving innovation in their respective fields.
Conclusion
In summary, Phong Vu Dao is a pioneering inventor whose work in noise reduction technology has made significant strides in sensor applications. His patent for adaptive noise removal showcases his innovative thinking and dedication to improving sensor performance.