Dortmund, Germany

Christian Vesper

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2007

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1 patent (USPTO):Explore Patents

Title: Christian Vesper - Innovating Liquid Separation Technology

Introduction:

Christian Vesper is an innovative inventor based in Dortmund, Germany, who has made significant contributions to the field of liquid separation technology. With a keen eye for detail and a passion for developing cutting-edge solutions, Vesper's work has garnered attention for its practical applications and effectiveness.

Latest Patents:

Vesper holds a groundbreaking patent for a "Process and device for separating and exhausting gas bubbles from liquids." This innovative process involves the radial deflection of liquid, an annular deaeration chamber, gas separation material, and a discharge filter made of a hydrophilic material with pores or small channels. This technology is particularly beneficial for microfluidic systems and offers a unique approach to gas bubble removal in flowing liquids.

Career Highlights:

Christian Vesper is a valued member of the research and development team at Boehringer Ingelheim Microparts GmbH, a renowned company known for its advancements in the healthcare and pharmaceutical industries. His expertise in liquid separation technology has been instrumental in the company's success and commitment to innovation.

Collaborations:

In his pursuit of excellence, Vesper has collaborated closely with talented individuals such as Ying Yu and Ralf-Peter Peters. Together, they have combined their skills and knowledge to push the boundaries of traditional liquid separation methods and explore new possibilities within the industry.

Conclusion:

In conclusion, Christian Vesper stands as a visionary inventor who has revolutionized liquid separation technology with his patented process and device. His dedication to innovation and collaboration has set him apart as a leading expert in the field, and his work continues to inspire advancements in fluid dynamics and microfluidic systems.

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