Rochester, NY, United States of America

Franklin D Ehrne

This inventor holds 8 USPTO granted patents. Top assignees: Eastman-Kodak Company, Moxtek, Inc.. Active years: 1994-2006.


% Patents Active = 62.5

Average Co-Inventor Count = 1.8

ph-index = 4

Forward Citations = 89(Granted Patents)


Company Filing History:


Years Active: 1994-2006

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8 patents (USPTO):Explore Patents

Title: Franklin D. Ehrne: Innovator in Optical Technologies

Introduction

Franklin D. Ehrne is a notable inventor based in Rochester, NY (US), recognized for his contributions to optical technologies. With a total of 8 patents, he has made significant advancements in the field, particularly in the design and functionality of optical components.

Latest Patents

Ehrne's latest patents include innovative designs such as a housing for mounting a beamsplitter and a spatial light modulator with an output optical path. This housing features a front plate with an opening for admitting incident illumination and a modulator mounting plate for aligning the spatial light modulator in the optical output path. Additionally, he has developed a housing for a spatial light modulator that includes a first frame for supporting the modulator in the path of an incident illumination beam, along with a second frame that provides a support element for an optical component.

Career Highlights

Throughout his career, Franklin D. Ehrne has worked with prominent companies, including Eastman Kodak Company and Moxtek, Inc. His work has focused on enhancing optical systems and improving the efficiency of light modulation technologies.

Collaborations

Ehrne has collaborated with notable individuals in the field, including Eric P. Hochreiter and Barry David Silverstein. These collaborations have contributed to the advancement of optical technologies and the development of innovative solutions.

Conclusion

Franklin D. Ehrne's contributions to optical technologies through his patents and collaborations highlight his role as a significant inventor in the field. His work continues to influence advancements in optical systems and light modulation.

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