Bamberg, Germany

Rilke Dix


 

 

Average Co-Inventor Count = 1.4

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2017-2019

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3 patents (USPTO):Explore Patents

Title: Rilke Dix: Innovator in Touch-Sensitive Technology

Introduction

Rilke Dix is a notable inventor based in Bamberg, Germany, recognized for her contributions to the field of touch-sensitive technology. With a total of three patents to her name, Dix has made significant advancements in the design and functionality of input devices.

Latest Patents

Dix's latest patents include an innovative input device for touch-sensitive, capacitive surfaces. This device features an application device with at least one application element and one contacting element. The application device is designed as a holder filled with a liquid, gel-like, or pasty application medium, ensuring that the holder is non-conductive in the gripping region. The application medium is electrically conductive, creating a connection between the contacting element and the application medium. Another patent focuses on an input device for capacitive, touch-sensitive displays, which is designed as a simple pen that can be sharpened. This pen can exist in various forms, including a core, a core with a coating, or a core with a casing, all of which are configured to be electrically conductive.

Career Highlights

Rilke Dix is currently employed at Staedtler Mars GmbH & Co. KG, where she continues to innovate in the realm of touch-sensitive devices. Her work has garnered attention for its practicality and effectiveness in enhancing user interaction with technology.

Collaborations

Dix collaborates with talented individuals such as Oliver Schwab and Peter Weiss, contributing to a dynamic work environment that fosters creativity and innovation.

Conclusion

Rilke Dix stands out as a pioneering inventor in touch-sensitive technology, with her patents reflecting a commitment to advancing user experience. Her contributions continue to shape the future of input devices, making her a significant figure in the field.

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