Chagrin Falls, OH, United States of America

Stephen Phillip DaVanzo


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 38(Granted Patents)


Company Filing History:


Years Active: 1997

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1 patent (USPTO):Explore Patents

Title: The Innovations of Stephen Phillip DaVanzo

Introduction

Stephen Phillip DaVanzo is an accomplished inventor based in Chagrin Falls, OH (US). He has made significant contributions to the field of materials science, particularly in the development of advanced thermal conductivity materials. His innovative work has led to the creation of a unique boron nitride composition that enhances the performance of various applications.

Latest Patents

Stephen holds a patent for an "Enhanced boron nitride composition and polymer based high thermal" invention. This patent describes a boron nitride composition that includes particles of boron nitride and a nonionic surfactant. The composition is designed for use as a filler, featuring a distribution of agglomerates with an average particle size ranging from 20 to 80 microns. The molding compound developed from this invention boasts a high thermal conductivity of at least 5 W/m·K. The formulation comprises a polymer base material, a filler, and a nonionic surfactant, with the boron nitride concentration being at least 60% by weight.

Career Highlights

Stephen is currently associated with Advanced Ceramics Corporation, where he applies his expertise in materials science to develop innovative solutions. His work at the company has been instrumental in advancing the capabilities of thermal materials used in various industries.

Collaborations

Stephen collaborates with Richard F. Hill, leveraging their combined expertise to push the boundaries of material innovation. Their partnership has resulted in significant advancements in the field.

Conclusion

Stephen Phillip DaVanzo's contributions to the field of materials science, particularly through his patented boron nitride composition, highlight his role as a leading inventor. His work continues to influence the development of high-performance materials in various applications.

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