Company Filing History:
Years Active: 2006-2019
Title: Innovations in Power Systems: The Contributions of Winston Madray
Introduction: Winston Madray, based in Winnipeg, Canada, is a notable inventor whose work has significantly advanced the field of power systems. With a total of three patents to his name, Madray has made substantial contributions to transformer technology, particularly in enhancing safety and efficiency.
Latest Patents: One of Madray's groundbreaking patents is the design of a fault-tolerant power transformer, which addresses the challenges posed by the sudden generation of gases within transformer tanks. This innovative transformer system includes a specially designed tank that houses the transformer coil and core assembly, along with a dielectric fluid that serves as an electrical insulator. Key components of this system include at least one heat exchanger equipped with hollow panels or radiators. As temperatures rise, the dielectric fluid is cooled by circulating through these heat exchangers, allowing the system to adapt to pressure changes and effectively manage energy containment.
Career Highlights: Winston Madray's career has been marked by his role at Carte International Inc., where he has played an integral part in developing state-of-the-art transformer technologies. His expertise in engineering design has led to advancements that not only improve functionality but also provide additional safety features for power systems.
Collaborations: Throughout his career, Madray has collaborated with industry professionals, including coworkers Brian Klaponski and Joseph H Groeger. These collaborations have resulted in a synergistic approach to problem-solving, driving innovations that have a lasting impact on the power industry.
Conclusion: As an accomplished inventor, Winston Madray continues to influence the field of power systems with his innovative designs and patents. His dedication to enhancing transformer technology showcases the importance of innovation in ensuring safety and efficiency in modern electrical infrastructure.