Company Filing History:
Years Active: 2014
Title: Innovations of S Ali Hosseini in Antenna Technology
Introduction
S Ali Hosseini is a notable inventor based in Irvine, CA, who has made significant contributions to the field of antenna technology. His work focuses on developing low-cost, high-gain antennas that are essential for millimeter-wave frequency applications. With a patent to his name, Hosseini's innovations are paving the way for advancements in communication systems.
Latest Patents
Hosseini holds a patent for a "Low-cost high-gain planar antenna using a metallic mesh cap for millimeter-wave frequency thereof." This invention describes an apparatus, system, and method for a single planar feeding structure or antenna that can be integrated with other system blocks. The antenna is designed to provide high radiation gain through a large number of radiating elements, represented by periodic openings or slots in a partially reflective surface (PRS). The feed network utilizes wave bouncing between a ground plane and the PRS, allowing for minimal loss as the feed operates primarily in air. The fabrication process is both simple and cost-effective, with one embodiment involving micromachining and design using the Fabry-Pérot Cavity (FPC) method.
Career Highlights
Hosseini is affiliated with the University of California, where he continues to engage in research and development in antenna technology. His innovative approach has garnered attention in the academic and engineering communities, contributing to the advancement of communication technologies.
Collaborations
Hosseini has collaborated with esteemed colleagues such as Franco De Flaviis and Filippo Capolino. Their combined expertise enhances the research and development efforts in the field of antenna technology.
Conclusion
S Ali Hosseini's contributions to antenna technology exemplify the importance of innovation in communication systems. His patent and ongoing research at the University of California highlight his commitment to advancing this critical field.