This inventor holds 2 USPTO granted patents. Top assignee: Unisense Aps.. Active years: 2000-2001.
Company Filing History:
Years Active: 2000-2001
Title: Exploring the Innovations of Inventor Niels Peter Revsbech
Introduction
Niels Peter Revsbech, a talented inventor based in Aarhus N, Denmark, has made significant contributions to the field of measurement technologies. With a total of 2 patents to his name, his work has revolutionized the way we understand and analyze transport coefficients such as diffusivity and flow velocity.
Latest Patents
One of Revsbech's latest patents is a "Method for measurement of flow velocity or diffusivity, microsensor and application of such microsensor." This innovative method and microsensor design allow for the precise measurement of transport coefficients by utilizing a reservoir with a transducer and specialized tip. The transducer measures the partial pressure or concentration of gases or liquid-dissolved substances, enabling the determination of diffusivity or flow velocity gradients. Another patent of his focuses on the "Microsensor and use of such microsensor," further showcasing his expertise in this area.
Career Highlights
Niels Peter Revsbech is associated with the company Unisense Aps., a renowned player in the field of measurement technologies. His affiliation with Unisense Aps. underscores his commitment to driving innovation and pushing the boundaries of what is possible in the realm of sensor technology.
Collaborations
Throughout his career, Revsbech has had the privilege of collaborating with esteemed colleagues such as Lars Peter Nielsen and Ole Pedersen. These collaborations have not only enriched his own work but have also contributed to the advancement of measurement technologies on a broader scale.
Conclusion
Inventor Niels Peter Revsbech's pioneering work in the development of measurement technologies, as evidenced by his patents and collaborations, exemplifies his dedication to innovation. His contributions have undoubtedly left a lasting impact on the field and continue to inspire further advancements in the realm of transport coefficient measurement.