Cary, NC, United States of America

John Adam Edmond

Average Co-Inventor Count = 3.4

ph-index = 42

Forward Citations = 8,913(Granted Patents)

Forward Citations (Not Self Cited) = 8,026(Sep 21, 2024)

DiyaCoin DiyaCoin 21.42 

Inventors with similar research interests:


Location History:

  • Apex, NC (US) (1990 - 1999)
  • Cary, NC (US) (1996 - 2018)
  • Durham, NC (US) (2008 - 2024)


Years Active: 1990-2024

where 'Filed Patents' based on already Granted Patents

180 patents (USPTO):

Title: John Adam Edmond: Pioneering Innovator in LED Technology and Silicon Carbide Wafer Manufacturing

Introduction:

Throughout his career, John Adam Edmond has established himself as a visionary innovator, earning accolades for his groundbreaking work in LED technology and silicon carbide wafer manufacturing. His ability to identify market needs and translate them into tangible inventions has revolutionized their respective industries. This article explores his latest patents, career highlights, notable collaborations, and the impact of his innovative contributions.

Latest Patents:

1. High Density Pixelated LED and Devices and Methods Thereof:

Edmond's patent describes a novel LED array configuration supported by a substrate with a light extraction surface coated with lumiphoric material. The incorporation of light segregation elements addresses the issue of interaction and optical crosstalk between emissions of different LEDs and lumiphoric material regions, thereby preserving pixel-like resolution. These light segregation elements can be created through mechanical sawing, etching, or photolithographic patterning, and 3D printing techniques, enhancing the overall performance of LED displays.

2. Silicon Carbide Wafers with Relaxed Positive Bow and Related Methods:

Edmond's patent focuses on mitigating manufacturing issues associated with deformation, bowing, or sagging of silicon carbide (SiC) wafers. The intentional or imposed wafer shapes, such as a relaxed positive bow, reduce gravitational-induced deformations. The methods mentioned in the patent, including laser-assisted separation and unique wafer configurations, also minimize kerf losses, ensuring high-quality SiC wafers particularly suited for large-area applications.

Career Highlights:

Throughout his illustrious career, John Adam Edmond has achieved remarkable milestones. His numerous patents, totaling 175, highlight his dedication to innovation and problem-solving. Edmond's contributions have not only facilitated advancements in LED technology and silicon carbide wafer manufacturing but have also paved the way for future developments in the field.

Collaborations:

During his career, Edmond has worked with prominent companies, such as Cree GmbH and Cree Research Inc. Cree Research Inc., often recognized as simply "Cree," is a renowned leader in semiconductor technology, specializing in LED and energy-efficient solutions. Edmond's collaborations with Cree have synergized his expertise with the company's resources, fostering groundbreaking research and development in the industry.

Furthermore, Edmond has collaborated with notable individuals, including David Beardsley Slater, Jr and Matthew Donofrio, both well-regarded experts in their respective fields. These collaborations have contributed to the collective knowledge and innovation within the LED technology and silicon carbide wafer manufacturing domains.

Conclusion:

John Adam Edmond's innovative spirit and problem-solving approach have transformed the LED technology and silicon carbide wafer manufacturing industries. His latest patents, focusing on high-density pixelated LED displays and the creation of SiC wafers with relaxed positive bow, demonstrate his commitment to advancing these fields. Collaborations with industry leaders and experts have further amplified his impact, solidifying his status as a pioneering innovator. With a remarkable career record and numerous accolades to his name, Edmond continues to shape the future of innovative technologies in the realms of LED displays and semiconductor materials.

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