Freigericht, Germany

Gerhard Klose


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Gerhard Klose: Innovator in Electrochemical Technology

Introduction

Gerhard Klose is a notable inventor based in Freigericht, Germany. He has made significant contributions to the field of electrochemical technology, particularly through his innovative designs and patents. His work focuses on enhancing the efficiency and functionality of electrochemical cells.

Latest Patents

One of Gerhard Klose's key patents is for a power lead for electrodes in electrochemical cells. This invention features a core made of a material, such as copper, known for its excellent electrical conductivity. The core is encased in a tubular titanium body that provides large-area contact. The titanium body is designed with an opening that allows a titanium retaining pin to be introduced into a recess of the core. The rim of this opening is welded hermetically to the metal pin. This design is particularly beneficial for the construction or repair of anodes used in diaphragm cells. Gerhard Klose holds 1 patent for this innovative technology.

Career Highlights

Gerhard Klose is associated with Heraeus Electrochemie GmbH, where he has been instrumental in advancing electrochemical applications. His expertise and innovative mindset have contributed to the company's reputation as a leader in the field.

Collaborations

Throughout his career, Gerhard Klose has collaborated with notable colleagues, including Ferdinand Borner and Karlheinz Lofink. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas.

Conclusion

Gerhard Klose's contributions to electrochemical technology exemplify the impact of innovation in enhancing industrial processes. His patent for a power lead for electrodes showcases his commitment to advancing the field. His work continues to influence the development of efficient electrochemical systems.

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