Beavercreek, OH, United States of America

Keith Slinker


Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Keith Slinker

Introduction

Keith Slinker is an innovative inventor based in Beavercreek, Ohio, recognized for his significant contribution to the field of aerodynamics through his patented inventions. With a keen focus on developing advanced systems, Slinker has made strides in utilizing technology to enhance fluid flow data acquisition.

Latest Patents

Slinker holds a patent for a "System, Apparatus and Method for Predicting Aerodynamic Parameters Using Artificial Hair Sensor Array." This groundbreaking patent describes a system and associated methods for utilizing an artificial hair sensor to gather fluid flow data on a surface. The invention comprises artificial hair sensors strategically placed on the surface to acquire flow sensory data in real-time, capturing various dynamic flow parameters. By employing a mapping module, such as a neural network, the system processes the sensory data from the sensor array to generate a time-varying signal that reflects multiple dynamic parameters, thereby providing a real-time representation of the flow characteristics.

Career Highlights

Keith Slinker currently works for the United States of America as Represented by the Secretary of the Air Force. His role allows him to engage in cutting-edge research and contribute to advancements in aerodynamics, showcasing his commitment to innovation in his field.

Collaborations

In his career, Slinker has collaborated with talented professionals such as Gregory W. Reich and Kaman Thapa Magar. Working alongside these individuals, he has been able to enhance his projects further, leveraging their expertise to refine the technology behind his inventions.

Conclusion

Keith Slinker's ingenuity and dedication have resulted in a notable patent that pushes the boundaries of aerodynamics and sensor technology. His work exemplifies how innovative minds can contribute significantly to advancing understanding and capabilities in fluid dynamics, ultimately benefiting multiple industries and applications.

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