Kinoulton, United Kingdom

Richard D Ogilvy



Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: Richard D Ogilvy: Innovator in Resistivity Measurement

Introduction

Richard D Ogilvy is a notable inventor based in Kinoulton, GB. He has made significant contributions to the field of resistivity measurement, particularly in applications related to subsurface analysis. His innovative work has implications for both engineered and non-engineered surfaces.

Latest Patents

Richard D Ogilvy holds a patent for "Systems and methods for resistivity measurement." This patent discloses a measurement system designed to measure subsurface resistivity. The system is applicable to various surfaces, including engineered surfaces like roads and dams, as well as non-engineered surfaces such as greenfield sites. Additionally, the measurement system can be utilized on biological materials. The system features signal input electrodes that input an input signal into subsurface material through capacitive coupling. Pairs of signal detection electrodes are employed to detect a signal caused by the input signal in the subsurface material. A phase-sensitive meter, such as a lock-in amplifier, is included to measure the amplitude and phase of the detectable signal.

Career Highlights

Richard D Ogilvy is associated with the Natural Environment Research Council, where he applies his expertise in resistivity measurement. His work has contributed to advancements in understanding subsurface characteristics, which is crucial for various environmental and engineering applications.

Collaborations

Some of Richard's notable coworkers include Philip I Meldrum and Oliver Kuras. Their collaborative efforts have likely enhanced the research and development of innovative solutions in the field.

Conclusion

Richard D Ogilvy's contributions to resistivity measurement demonstrate his commitment to innovation and research. His patent reflects a significant advancement in the ability to analyze subsurface materials effectively.

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