Arlington, VA, United States of America

Martin Chamberlain


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 118(Granted Patents)


Company Filing History:


Years Active: 2000

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1 patent (USPTO):Explore Patents

Title: Martin Chamberlain - Innovator in Real-Time Monitoring Technology

Introduction

Martin Chamberlain is an accomplished inventor based in Arlington, Virginia, known for his innovative contributions to fluid monitoring technology. With a focus on real-time data analysis, his work has significant implications in various industries, including environmental monitoring and quality control.

Latest Patents

Martin holds a patent for a "Real Time Suspended Particle Monitor," which is designed to monitor particulates in a fluid in real-time. This invention features a method and apparatus that illuminates the fluid, forming an image of its interior. The subsequent detection and processing of this image allow for the precise determination of the size and shape of particulates, enhancing the understanding of fluid quality and safety.

Career Highlights

Chamberlain works for the United States of America, as represented by the Secretary of the Navy. His career is marked by his commitment to advancing technology that improves safety and efficiency in fluid monitoring processes. His innovative approach has placed him at the forefront of this critical technological field.

Collaborations

Throughout his career, Martin has collaborated with talented coworkers such as John F. Reintjes and Michael D. Duncan. These partnerships have fostered a dynamic environment for innovation, leading to the development of impactful technologies.

Conclusion

In summary, Martin Chamberlain's contributions to the field of real-time monitoring of particulates reflect his dedication to innovation and excellence. His work not only enhances fluid analysis but also sets a precedent for future advancements in the industry. As he continues to develop groundbreaking technologies, the impact of his inventions will likely be felt across multiple sectors.

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