Location History:
- Sunnyvale, CA (US) (2019)
- Cupertino, CA (US) (2020 - 2023)
Company Filing History:
Years Active: 2019-2025
Title: Innovations of Thomas Shaofeng Sun
Introduction
Thomas Shaofeng Sun is an accomplished inventor based in Cupertino, CA, with a remarkable portfolio of 12 patents. His work primarily focuses on advancements in electric utility systems and electric vehicle charging technologies.
Latest Patents
Among his latest innovations is a patent for electric utility load distribution systems and methods. This invention includes establishing an interface with a controlling architecture of an electric power distribution system. The system communicates with a set of outlets of utility-facing devices, providing access to the electric power distribution system. It returns a demand assessment from a demand model that characterizes anticipated demand upon portions of the electric power distribution associated with the outlets. The invention aims to achieve carbon emission goals by incentivizing better use of limited energy resources. Another significant patent involves methods and systems for facilitating charging sessions for electric vehicles. This system improves user interface operation modes and includes receiving a reservation request, scheduling a reserved charging session, and managing load across groups of vehicles.
Career Highlights
Thomas has worked with notable companies such as Nad Grid Corp and Ampup, Inc. His contributions to these organizations have significantly advanced the field of electric utility management and electric vehicle infrastructure.
Collaborations
Throughout his career, Thomas has collaborated with talented individuals, including Timotej Gavrilovic and Thai Vinh Loc Nguyen. Their teamwork has fostered innovative solutions in the energy sector.
Conclusion
Thomas Shaofeng Sun's contributions to electric utility systems and electric vehicle technologies highlight his role as a leading inventor in the field. His patents not only advance technology but also promote sustainability in energy consumption.