This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: General Electric Company. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Thomas Jahns: Innovator in Power Conversion Technology
Introduction
Thomas Jahns is a notable inventor based in Madison, WI (US). He has made significant contributions to the field of electrical power systems, particularly through his innovative designs in power converters. His work is characterized by a focus on reducing electromagnetic interference, which is crucial for enhancing the efficiency and reliability of power systems.
Latest Patents
Thomas Jahns holds a patent for a "Power converter for an electrical power system." This invention features a power converter that includes a first inverter and a second inverter, which are electrically coupled with one another and with a power bus. The design incorporates first switches of the first inverter that are arranged symmetrically with second switches of the second inverter. This arrangement allows for the generation of common mode signals that are out of phase, thereby improving the performance of the power converter. Additionally, the power converter includes a buck stage with symmetrically arranged buck switches, which can be controlled to minimize common mode electromagnetic interference.
Career Highlights
Throughout his career, Thomas Jahns has been associated with General Electric Company, where he has applied his expertise in power conversion technology. His innovative approach has led to advancements that benefit various applications in electrical engineering.
Collaborations
Thomas has collaborated with esteemed colleagues such as Rajib Datta and Kum Kang Huh. Their combined efforts in research and development have contributed to the success of projects within the company.
Conclusion
In summary, Thomas Jahns is a distinguished inventor whose work in power conversion technology has made a significant impact on electrical power systems. His innovative designs and collaborations continue to influence the field positively.
