Stalden, Switzerland

Christiane Leister


Average Co-Inventor Count = 2.0

ph-index = 2

Forward Citations = 23(Granted Patents)


Company Filing History:


Years Active: 2002-2003

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2 patents (USPTO):Explore Patents

Title: Christiane Leister: Innovator in Laser Technology

Introduction

Christiane Leister is a prominent inventor based in Stalden, Switzerland. She has made significant contributions to the field of laser technology, particularly in the areas of heating and joining materials. With a total of 2 patents, her work has advanced the capabilities of laser applications in various industries.

Latest Patents

Leister's latest patents include a device for heating at least two elements using high-energy density laser beams. This innovative process allows for the joining or separating of various workpieces, especially those made of plastic or a combination of plastic and other materials. The method involves the use of curtain-like laser beams, where a mask made of laser-impermeable material is positioned between the laser source and the workpieces. The relative movement of the laser beam and the mask enables the generation of high energy density in the joining area. Additionally, laser beams from at least two diode lasers are combined, and differing laser line lengths are produced through a zoom optics arrangement.

Career Highlights

Christiane Leister is associated with Leister Process Technologies, a company known for its innovative solutions in the field of plastic welding and heating technologies. Her expertise in laser applications has positioned her as a key figure in the development of advanced manufacturing processes.

Collaborations

Leister collaborates with Jie-Wei Chen, a talented woman in the field, contributing to the advancement of laser technology and its applications in various sectors.

Conclusion

Christiane Leister's work in laser technology exemplifies innovation and dedication to advancing manufacturing processes. Her patents reflect her commitment to improving the efficiency and effectiveness of material joining techniques.

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