Twickenham, United Kingdom

Christopher John Dunlop



Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: Christopher John Dunlop: Innovator in Marine Stabilization Technology

Introduction

Christopher John Dunlop is a notable inventor based in Twickenham, GB. He has made significant contributions to the field of marine technology, particularly in the area of vessel stabilization. His innovative approach has led to the development of a unique patent that addresses the challenges faced by floating vessels.

Latest Patents

Dunlop holds a patent for an "Apparatus and method for reducing motion of a floating vessel." This invention comprises a vessel equipped with a first and a second stabilizer assembly. Each stabilizer assembly includes at least one submergible, partially hollow body, along with suspending means for attaching the bodies to the vessel. The stabilizer assemblies are strategically positioned on opposite sides of the vessel, enhancing stability. Additionally, fins are incorporated into the stabilizer assembly to further improve performance. This patent showcases Dunlop's innovative thinking and technical expertise in marine engineering. He has 1 patent to his name.

Career Highlights

Dunlop is currently employed at Saipem UK Limited, where he continues to work on advancing marine technology. His role at the company allows him to apply his inventive skills to real-world challenges in the maritime industry.

Collaborations

Throughout his career, Dunlop has collaborated with various professionals, including Vincent George McCarthy and Vincent George Mccarthy. These collaborations have likely contributed to the development and refinement of his innovative ideas.

Conclusion

Christopher John Dunlop is a distinguished inventor whose work in marine stabilization technology has the potential to significantly impact the industry. His patent reflects a commitment to innovation and problem-solving in the field of vessel motion reduction.

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