Lake Orion, MI, United States of America

Jason Alan Waite


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Innovator in Advanced Materials: Jason Alan Waite

Introduction: Jason Alan Waite, an inventive mind from Lake Orion, MI, has made significant contributions in the field of compounding and extrusion technologies. With a focus on advancing manufacturing processes, his work paves the way for enhanced material applications.

Latest Patents: Jason holds a patent for an innovative "In-line compounding/extrusion deposition and molding apparatus and method of using the same." This apparatus provides a sophisticated solution for compounding and extruding materials through a streamlined, single-step process. The design features three distinct zones that work in concert: the first zone melts the inlet material, while the second zone prepares and cuts a reinforcing fiber bundle. The third zone facilitates uniform mixing and impregnation of this fiber bundle with the melted material, resulting in a composite that is both durable and efficient.

Career Highlights: Jason is currently employed at Delphi Technologies, Inc., where he leverages his expertise in material science and engineering. His innovative spirit and dedication to improving manufacturing processes distinguish him as a key contributor within the industry.

Collaborations: Jason collaborates with accomplished professionals in his field, notably Suresh Deepchand Shah. Through their partnership, they strive to push the boundaries of material technology and enhance practical applications in various industries.

Conclusion: Jason Alan Waite represents the forefront of innovation in compounding and extrusion techniques. His patent and ongoing efforts at Delphi Technologies, Inc. demonstrate his commitment to advancing the field and improving manufacturing capabilities. As technologies evolve, innovators like Jason are essential in shaping the future of material applications.

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