This inventor holds 1 USPTO granted patent. Top assignee: International Business Machines Corporation. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Jon Anton Veer: Innovator in AC Transfer Switch Technology
Introduction
Jon Anton Veer is a notable inventor based in Rochester, MN (US). He has made significant contributions to the field of electrical engineering, particularly with his innovative designs in AC transfer switch technology. His work has led to the development of a patent that enhances the efficiency and reliability of power systems.
Latest Patents
Jon Anton Veer holds a patent for an AC transfer switch using semiconductor devices. This invention provides a solution for switching a system load between at least two AC lines. The design includes a first bridge rectifier connected to a first AC line, which generates a full wave rectified AC waveform. Additionally, it features a pair of oppositely poled silicon controlled rectifiers (SCRs) that are coupled to the first bridge rectifier and the system load. A second bridge rectifier is also included for a second AC line, along with another pair of SCRs. The control logic in this invention is designed to apply either the first or second full wave rectified AC waveform to the system load, depending on the input conditions.
Career Highlights
Jon Anton Veer is currently employed at International Business Machines Corporation (IBM), where he continues to innovate and contribute to advancements in technology. His work at IBM has allowed him to collaborate with other talented engineers and inventors in the field.
Collaborations
Some of Jon's coworkers include Timothy Charles Daun-Lindberg and Charles J Pentek. Their collaborative efforts have likely contributed to the innovative environment at IBM, fostering the development of new technologies.
Conclusion
Jon Anton Veer is a distinguished inventor whose work in AC transfer switch technology exemplifies innovation in electrical engineering. His contributions have the potential to significantly impact power systems and enhance their efficiency.
