Otterfing, Germany

Gernot Steinlesberger


 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Gernot Steinlesberger: Innovating Electrical Circuits with Nanostructures

Introduction: Gernot Steinlesberger is a notable inventor based in Otterfing, Germany, recognized for his contributions to the field of electrical engineering. With his innovative approach, he has garnered attention for his patent that focuses on nanostructures and their applications in electrical circuits.

Latest Patents: Gernot holds a significant patent titled "Electrical circuit with a nanostructure and method for producing a contact connection of a nanostructure." This patent describes a circuit that incorporates at least one nanostructure and a carbon interconnect formed by a substantial carbon layer. The novel aspect of Gernot's design lies in the direct coupling between the nanostructure and the carbon interconnect, which enhances the efficiency and performance of electrical circuits.

Career Highlights: Gernot Steinlesberger is currently employed at Qimonda AG, where he contributes to research and development initiatives focusing on cutting-edge electrical technologies. His work integrates advanced materials and innovative designs, driving progress in the industry.

Collaborations: Throughout his career, Gernot has collaborated with notable colleagues, including Georg Duesberg and Franz Kreupl. These partnerships have fostered a dynamic environment for creativity and innovation, enabling the team to tackle complex challenges in the field of electrical engineering.

Conclusion: Gernot Steinlesberger stands out as an influential inventor in the realm of electrical circuits and nanotechnology. His dedicated work at Qimonda AG and his successful patent reflect his commitment to advancing technology and contributing to the scientific community. As innovations continue to evolve, Gernot's contributions are poised to have a lasting impact on the future of electrical engineering.

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