This inventor holds 2 USPTO granted patents. Top assignee: Wincor Nixdorf International Gmbh. Active years: 2014-2015.
Company Filing History:
Years Active: 2014-2015
Title: Daniela Sandschneider: Innovator in Self-Service Technology
Introduction
Daniela Sandschneider is a prominent inventor based in Paderborn, Germany. She has made significant contributions to the field of self-service technology, particularly in the area of component authentication and secure operation of self-service terminals. With a total of 2 patents, her work has been instrumental in enhancing the security and functionality of self-service machines.
Latest Patents
Sandschneider's latest patents include a "System and method for the authentication of components within a self-service machine." This invention focuses on evaluating the authenticity of peripheral devices in self-service machines, utilizing an operating system that provides a global mutex and software layers. Another notable patent is the "Method for starting a keyboard of a self-service terminal," which describes a process for commencing operation of an encrypted pin pad (EPP). This EPP includes a security module that encrypts confidential numeric codes and features a sensor to ensure proper installation within the terminal.
Career Highlights
Daniela Sandschneider is currently employed at Wincor Nixdorf International GmbH, a company known for its innovative solutions in the banking and retail sectors. Her work at Wincor Nixdorf has allowed her to develop cutting-edge technologies that improve the security and efficiency of self-service operations.
Collaborations
Throughout her career, Sandschneider has collaborated with notable colleagues, including Klaus-Detlef Nolzen and Michael Nolte. These partnerships have fostered a creative environment that encourages innovation and the development of advanced technologies.
Conclusion
In summary, Daniela Sandschneider is a key figure in the realm of self-service technology, with her patents reflecting her commitment to enhancing security and functionality in this field. Her contributions continue to shape the future of self-service machines.
