Company Filing History:
Years Active: 2019
Title: The Innovations of Timothy Galligos
Introduction
Timothy Galligos is an accomplished inventor based in Fort Wayne, Indiana. He has made significant contributions to the field of electrical engineering, particularly in the development of power conversion technologies. His innovative work has led to the creation of a patented device that enhances the efficiency of electrically commutated motors.
Latest Patents
Timothy Galligos holds a patent for a "Three-phase to single-phase converter module for electrically commutated motors." This converter module is designed to convert three-phase electrical power into single-phase electrical power. It features three-phase terminals that are electrically coupled to a three-phase power source, allowing for the provision of a three-phase power signal. Additionally, the module includes a full-wave bridge rectifier that rectifies the three-phase power signal into a direct current (DC) power signal. This innovation is crucial for improving the performance of various electrical systems.
Career Highlights
Timothy is currently employed at Regal Beloit America, Inc., where he continues to work on advancements in electrical engineering. His expertise and innovative mindset have made him a valuable asset to the company. With a focus on practical applications of his inventions, he has contributed to the development of technologies that benefit both consumers and industries.
Collaborations
Some of Timothy's coworkers include Kamron Mark Wright and Douglas Lynn Fetters. Their collaborative efforts in the workplace foster an environment of innovation and creativity, leading to the development of cutting-edge technologies.
Conclusion
Timothy Galligos exemplifies the spirit of innovation in the field of electrical engineering. His patented converter module showcases his ability to solve complex problems and improve existing technologies. Through his work at Regal Beloit America, Inc., he continues to make significant contributions to the industry.