This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Lansus Technologies Inc. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Yuting Zhao - Innovator in Differential Power Amplification
Introduction
Yuting Zhao is a prominent inventor based in Shenzhen, China. She has made significant contributions to the field of electrical engineering, particularly in the development of differential power amplifiers. Her innovative approach has led to the creation of a patent that enhances the performance and efficiency of amplification circuits.
Latest Patents
Yuting Zhao holds a patent for a differential power amplifier. This invention includes an input matching network, a first-stage amplification circuit, a first inter-stage matching network, a second-stage amplification circuit, a second inter-stage matching network, a third-stage amplification circuit, and an output matching network. The first-stage and second-stage amplification circuits are designed as single-ended input single-ended output circuits, while the third-stage amplification circuit operates as a dual input dual output circuit. The second inter-stage matching network comprises a first transformer, two capacitors, and two inductors. The output matching network utilizes a second transformer. This design reduces inter-stage matching difficulties, optimizes input return loss and gain, and improves output power. Yuting Zhao has 1 patent to her name.
Career Highlights
Yuting Zhao is currently employed at Lansus Technologies Inc., where she continues to innovate and develop advanced technologies. Her work focuses on enhancing the capabilities of power amplifiers, which are crucial in various electronic applications.
Collaborations
Yuting collaborates with talented individuals such as Zhiyuan Xie and Jiashuai Guo, contributing to a dynamic and innovative work environment.
Conclusion
Yuting Zhao's contributions to the field of differential power amplification demonstrate her expertise and commitment to innovation. Her patent reflects her ability to solve complex engineering challenges and improve electronic performance.