Haifa, Israel

Leonid M Buzik


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 20(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Leonid M Buzik

Introduction

Leonid M Buzik is a notable inventor based in Haifa, Israel. He has made significant contributions to the field of measurement technology, particularly in the analysis of fibrous materials. His innovative approach combines advanced microwave technology with computer algorithms to achieve high accuracy in real-time measurements.

Latest Patents

Leonid M Buzik holds a patent for a method and device designed for highly accurate, high-speed, real-time, continuous or stationary, in-line, non-invasive, three-dimensional, multi-slice measurements of homogeneous or non-homogeneous fibrous yarn, slivers, or pad material. This patent outlines a sophisticated method for measuring density and moisture content in fibrous materials using a cylindrical microwave resonator. The device includes various components such as cutoff waveguides, a teflon tube, and multiple sensors, all working together to provide precise measurements essential for quality control in production processes.

Career Highlights

Buzik's career is marked by his dedication to advancing measurement technologies. His work at Malcam Ltd. has allowed him to apply his innovative ideas in practical settings, contributing to the efficiency and accuracy of production processes. His patent reflects a deep understanding of both the theoretical and practical aspects of microwave technology and material science.

Collaborations

Leonid M Buzik has collaborated with notable colleagues, including Danny S Moshe and Alexander Greenwald. These partnerships have likely enriched his work and contributed to the development of his patented technology.

Conclusion

Leonid M Buzik's contributions to the field of measurement technology exemplify the impact of innovative thinking in industrial applications. His patented method and device represent a significant advancement in the accurate measurement of fibrous materials, showcasing his expertise and commitment to quality in production processes.

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