This inventor holds 2 USPTO granted patents. Top assignees: Alcatel, Alcatel N.v.. Active years: 1994-2004.
Location History:
- Gerlingen, DE (1994)
- Markgröningen, DE (2004)
Company Filing History:
Years Active: 1994-2004
Title: Wiltraud Wischmann: Innovator in Optical Technologies
Introduction
Wiltraud Wischmann is a notable inventor based in Markgröningen, Germany. She has made significant contributions to the field of optical technologies, holding 2 patents that showcase her innovative spirit and technical expertise.
Latest Patents
Her latest patents include a birefringence-free passive optical component and an optical switch. The birefringence-free passive optical component focuses on the production of optical waveguides on waveguide bases, which are formed from a structured buffer layer. This innovation reduces the birefringence caused by thermally induced stresses during the glass production process. By minimizing the concentration of dopants in the cladding layer, Wischmann's design allows for a stable optical component that is less sensitive to external influences. The optical switch features a substrate and a transparent material that records a three-dimensional diffraction pattern capable of diffracting light. This material possesses non-linear optical properties and includes electrodes that adjust the diffraction pattern based on applied voltages.
Career Highlights
Throughout her career, Wischmann has worked with prominent companies such as Alcatel N.V. and Alcatel. Her work in these organizations has contributed to advancements in optical technologies and has established her as a respected figure in her field.
Collaborations
Wischmann has collaborated with notable professionals, including Reimund Dorn and Peter Kersten. These partnerships have further enriched her work and expanded her impact in the optical technology sector.
Conclusion
Wiltraud Wischmann's contributions to optical technologies through her patents and collaborations highlight her innovative capabilities and dedication to advancing the field. Her work continues to influence the development of stable and efficient optical components.
