Location History:
- Beijing, CN (2014)
- Jiangsu, CN (2022 - 2023)
- Suzhou, CN (2022 - 2024)
Company Filing History:
Years Active: 2014-2024
Title: Weisen Li - A Visionary Inventor in the Field of Oscilloscope Technology
Introduction
Weisen Li is a renowned inventor based in Suzhou, China, celebrated for his innovative contributions to the field of oscilloscopes. With a total of seven patents to his name, his work has significantly advanced the technology used in signal analysis and synchronization systems.
Latest Patents
Among his latest patents, Weisen Li has developed an automatic trigger type identification method, device, and oscilloscope. This invention features a method that analyzes characteristic parameter data of a to-be-triggered signal, including bus protocol matching information and variation information. The goal is to achieve a trigger type that allows for stable triggering of the signal, simplifying user selection or enabling automatic trigger selection.
Another significant contribution is his multi-channel signal synchronization system, circuit, and method. This innovation incorporates a clock signal generation module and a synchronization signal generation module to generate and distribute clock signals among signal receiving modules. This design enhances the functionality and efficiency of multi-channel signal processing.
Career Highlights
Weisen Li has played a pivotal role in multiple organizations. Notably, he has worked with Rigol Technologies Co., Ltd. and Rigol Technologies, Inc., where he contributed to developments in oscilloscopic technology, enhancing both product capabilities and user experiences.
Collaborations
Throughout his career, Weisen has collaborated with esteemed coworkers, including Yue Wang and Tiejun Wang. Their combined expertise has propelled innovative projects, further establishing their impact in the technology sector.
Conclusion
Weisen Li's inventive spirit and dedication to advancing the field of oscilloscope technology are evident in his impressive portfolio of patents and collaborative efforts. As he continues to innovate, the implications of his work will likely shape the future of signal analysis and synchronization systems.