This inventor holds 1 USPTO granted patent. Top assignee: Kent State University. Active years: 1991.
Company Filing History:
Years Active: 1991
Title: Samo Kopac: Innovator in Liquid Crystal Modulation
Introduction
Samo Kopac is a notable inventor based in Naklo, YU. He has made significant contributions to the field of liquid crystal technology, particularly in the development of modulators that enhance the quality of light transmission.
Latest Patents
Kopac holds a patent for a "Low loss liquid crystal modulator for coloring and shaping a light beam." This invention provides a low loss liquid crystal modulator that allows for continuous variation in color and intensity output through controlled scattering. The modulators consist of addressable sheets of light-wavelength size liquid crystal occlusions in a transparent matrix. They employ nematic liquid crystal exhibiting positive dielectric anisotropy, which is crucial for varying and coloring output beams. This technology is particularly useful for colored data or video transmission, enabling images that can change over time, as required for applications like color television. The modulator is also employed in color projectors for data and video projection, color printing, and colored stage illumination. The low loss transmission of these modulators ensures bright images that can be viewed under high ambient illumination.
Career Highlights
Samo Kopac is affiliated with Kent State University, where he continues to advance his research in liquid crystal technologies. His work has garnered attention for its innovative approach to light modulation.
Collaborations
Kopac has collaborated with esteemed colleagues such as Robert Blinc and Igor Musevic, contributing to the advancement of liquid crystal research.
Conclusion
Samo Kopac's contributions to liquid crystal modulation represent a significant advancement in the field, enhancing the capabilities of light transmission technologies. His innovative work continues to influence various applications in data and video projection.
