Company Filing History:
Years Active: 2006-2013
Title: Innovations of Shun-Yu Nieh
Introduction
Shun-Yu Nieh is a prominent inventor based in San Jose, CA, known for his contributions to the field of system design on chip technology. With a total of 9 patents, he has made significant advancements in the development of hybrid analogic field programmable arrays and energy-efficient devices. His work emphasizes the importance of green technology and resource conservation.
Latest Patents
Nieh's latest patents include groundbreaking innovations such as the SDOC with FPHA and FPXC, which focuses on high-speed and high-frequency system design embedded in a single chip. This technology integrates various components like the field programmable hybrid array and frequency programmable xtaless clockchip, enhancing performance while reducing energy consumption. His inventions also feature advanced designs like the Capacitorless Low Drop Voltage Regulator and the Inductorless Switch Mode Power Supply, which aim to improve efficiency and sustainability in electronic devices.
Career Highlights
Throughout his career, Shun-Yu Nieh has worked with notable companies, including Tang System. His expertise in developing high-efficiency power management amplifiers and innovative clock generators has positioned him as a leader in the field of electronic design. His commitment to green technology is evident in his designs that aim to save energy and reduce reliance on traditional power sources.
Collaborations
Nieh has collaborated with talented individuals such as Min Ming Tarng and Eric Yu-Shiao Tarng, contributing to the advancement of technology in his field. Their combined efforts have led to the development of innovative solutions that address modern challenges in electronics.
Conclusion
Shun-Yu Nieh's contributions to the field of system design on chip technology and his commitment to green innovations make him a significant figure in the world of inventions. His work not only enhances technological capabilities but also promotes sustainability and energy efficiency.