Mainz, Germany

Timo Luchs


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2022

Loading Chart...
1 patent (USPTO):Explore Patents

Title: Timo Luchs: Innovating Microstructuring Technologies in Mainz, Germany

Introduction

Timo Luchs is an accomplished inventor based in Mainz, Germany, known for his contributions to the field of microlithography. With a focus on processing microstructured components, Luchs has made significant strides in this specialized area of innovation. His patent showcases his deep understanding of advanced technologies and their applications.

Latest Patents

Luchs holds a patent for a "Device and Method for Processing a Microstructured Component." This invention relates specifically to a device designed for microlithography, incorporating an ion beam source that applies an ion beam to regions of a microstructured component. Notably, the ion energy of this beam is limited to no more than 5 keV. The device also includes a detector for identifying particles that are backscattered at the component, enhancing processing accuracy and efficiency.

Career Highlights

Currently, Timo Luchs is affiliated with Carl Zeiss SMT GmbH, a leading company in the field of optical and microstructuring technologies. His work at Carl Zeiss encompasses innovative approaches to improving the quality and precision of microfabrication processes, contributing to advancements in various technological sectors.

Collaborations

During his career, Luchs has collaborated with notable colleagues, including Nicole Auth and Joachim Welte. These collaborations reflect a robust team dynamic, fostering an environment of shared expertise in the pursuit of innovation and excellence in microstructuring.

Conclusion

Timo Luchs stands out as a key figure in the domain of microlithography, with his inventive methodologies marking significant progress in the processing of microstructured components. His work at Carl Zeiss SMT GmbH, alongside skilled colleagues, continues to push the boundaries of what is possible in microfabrication technologies.

This text is generated by artificial intelligence and may not be accurate.
Please report any incorrect information to support@idiyas.com
Loading…