Kanata, Canada

John A McDade


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1985

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1 patent (USPTO):Explore Patents

Title: John A McDade: Innovator in Dielectric Insulation Technology

Introduction

John A McDade is a notable inventor based in Kanata, Canada. He has made significant contributions to the field of electrical engineering, particularly in the production of dielectric insulation layers upon electrical conductors. His innovative approach has led to advancements that enhance the performance and reliability of electrical components.

Latest Patents

John A McDade holds a patent for the "Production of dielectric insulation layers upon electrical conductors." This invention involves providing an electrical conductor with an insulation layer that includes a dielectric carrier with magnetically permeable particles dispersed within it. The process ensures homogeneity in a fluid mixture of the carrier and particles. The conductor is moved vertically through a die means to coat it with a fluid layer of the mixture. The fluid carrier is then dried, and the thickness of the dried insulation layer is controlled. This control is achieved by monitoring the thickness or diameter of the dried layer. If a variation exists between the monitored and required values, the rate of fluid flow through the die means is adjusted to align the monitored values with the required specifications.

Career Highlights

John A McDade is associated with Northern Telecom Limited, where he has applied his expertise in electrical engineering. His work has contributed to the development of advanced technologies in telecommunications and electrical systems.

Collaborations

One of his notable coworkers is Michael A Shannon, with whom he has collaborated on various projects within the company.

Conclusion

John A McDade's innovative work in dielectric insulation technology exemplifies the impact of engineering advancements on electrical systems. His contributions continue to influence the field and enhance the functionality of electrical conductors.

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