Ulm, Germany

Michael Stucke


 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Michael Stucke: Innovator in High-Pressure Feedthrough Technology

Introduction

Michael Stucke is an accomplished inventor located in Ulm, Germany. He holds a patent that showcases his innovative contributions to engineering, specifically in the area of high-pressure technology. His work has significant implications for industries that rely on the precision and reliability of coaxial cable applications in high-pressure environments.

Latest Patents

Stucke's patent, titled "High-pressure feedthrough for feeding through a coaxial cable into a high-pressure zone," describes a unique design intended to improve the transfer of signals from low-pressure to high-pressure zones. The invention incorporates a support structure featuring an elongate bore that facilitates the continuous passage of the inner conductor of a coaxial cable. This design also includes components that act as an outer conductor and dielectric for the inner conductor, ensuring efficient and safe operation in demanding conditions.

Career Highlights

Michael Stucke is employed by Liebherr-Elektronik GmbH, where he has contributed his engineering expertise to advance the company's technological capabilities. His work at Liebherr has allowed him to focus on critical innovations that enhance the performance of high-pressure applications.

Collaborations

Throughout his career, Stucke has worked alongside talented colleagues such as Paolo Leutenegger and Tobias Zinner. Their collaborative efforts exemplify a team dynamic that fosters innovation and drives the development of cutting-edge technologies in their field.

Conclusion

Michael Stucke stands out as a prominent inventor in the specialized field of high-pressure feedthrough technology. His patent reflects not only his technical acumen but also his commitment to advancing engineering solutions. As industries continue to push the boundaries of high-pressure applications, Stucke's contributions will undoubtedly play a crucial role in shaping the future of this technology.

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