This inventor holds 1 USPTO granted patent. Top assignee: National Sun Yat-Sen University of Kaohsiung. Active years: 2015.
Company Filing History:
Years Active: 2015
Title: Innovations of Lung-min Fu in Microfluidics
Introduction
Lung-min Fu is a notable inventor based in Kaohsiung, Taiwan. He has made significant contributions to the field of microfluidics, particularly with his innovative designs that enhance fluid management in various applications. His work is characterized by a focus on simplifying system structures while improving efficiency and sensitivity.
Latest Patents
Lung-min Fu holds a patent for a "Thread-based microfluidic guiding system." This invention includes a substrate with two fiber threads arranged in a cross manner. These threads serve as physical guiding pathways for sample and buffer fluids. The capillary action of the threads allows for the effective flow of fluids along their surfaces, which can be pre-treated by plasma. This system differs from traditional recessed microfluidic channel structures, offering advantages such as simplified design, reduced manufacturing costs, accelerated detection operations, and enhanced detection sensitivity.
Career Highlights
Lung-min Fu is affiliated with the National Sun Yat-Sen University of Kaohsiung, where he continues to advance research in microfluidics. His innovative approach has garnered attention in academic and industrial circles, contributing to the development of more efficient fluid management systems.
Collaborations
Lung-min Fu has collaborated with notable colleagues, including Yu-An Yang and Yi-chi Wei. Their joint efforts have furthered research and development in the field of microfluidics, leading to advancements that benefit various scientific and engineering applications.
Conclusion
Lung-min Fu's contributions to microfluidics exemplify the impact of innovative thinking in technology. His patent for a thread-based microfluidic guiding system showcases his ability to address complex challenges in fluid management. Through his work, he continues to influence the future of microfluidic applications.