This inventor holds 1 USPTO granted patent. Top assignee: Case Western Reserve University. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: Alan E. Wilner: Innovator in Fiber-Optic Technology
Introduction
Alan E. Wilner is a prominent inventor based in Los Angeles, CA. He has made significant contributions to the field of fiber-optic technology, particularly in the area of dynamic power equalization for wavelength-division-multiplexed channels. His innovative work has led to the development of a patented technology that enhances the efficiency of optical networks.
Latest Patents
Wilner holds a patent for a dynamic power equalization module designed for optical networks. This module is capable of receiving an optical transmission that contains a combination of different channels, each with unique wavelengths and varying power levels. The power equalization device, which is polarization insensitive, is strategically connected between the module input and output. It utilizes RF acoustic signals to dynamically control the transmission of different channels, effectively equalizing power differentials among them. This technology is crucial for improving the performance of fiber-optic systems.
Career Highlights
Alan E. Wilner is affiliated with Case Western Reserve University, where he continues to advance research in optical communications. His work has garnered attention for its practical applications in enhancing data transmission capabilities. With a focus on innovation, Wilner has established himself as a key figure in the field of fiber optics.
Collaborations
Throughout his career, Wilner has collaborated with notable colleagues, including David Arthur Smith and Jin-Xin Cai. These partnerships have contributed to the development of cutting-edge technologies in optical networks.
Conclusion
Alan E. Wilner's contributions to fiber-optic technology exemplify the impact of innovative thinking in advancing communication systems. His patented work on dynamic power equalization continues to influence the field and improve optical network performance.
