Corning, NY, United States of America

Jason Sanger Frackenpohl


Average Co-Inventor Count = 5.0

ph-index = 2

Forward Citations = 18(Granted Patents)


Years Active: 2017-2024

where 'Filed Patents' based on already Granted Patents

5 patents (USPTO):
1 patent (EPO):

Title: Jason Sanger Frackenpohl: Innovator in Glass Technology

Introduction

Jason Sanger Frackenpohl is a notable inventor based in Corning, NY (US), recognized for his contributions to glass technology. He holds a total of five patents, showcasing his innovative spirit and expertise in the field.

Latest Patents

Frackenpohl's latest patents include the development of aluminoborosilicate glass that is substantially free of alkali oxides. This innovative glass incorporates alkaline earth oxides and is designed to be fusion formable, making it suitable for use as a substrate in consumer and commercial electronic devices. Another significant patent involves alkali-doped and alkali-free boroaluminosilicate glass. This glass features network formers such as SiO, BO, and AlO, and is characterized by a Young's modulus of less than about 65 GPa and a coefficient of thermal expansion of less than about 40×10/ C. It is intended for applications such as cover glass for electronic devices, color filter substrates, thin film transistor substrates, and outer clad layers for glass laminates.

Career Highlights

Frackenpohl is currently employed at Corning Incorporated, a leading company in glass and ceramics technology. His work has significantly advanced the capabilities and applications of glass materials in various industries.

Collaborations

Throughout his career, Frackenpohl has collaborated with esteemed colleagues, including Adam James Ellison and John Christopher Mauro. These partnerships have contributed to the innovative projects and patents he has developed.

Conclusion

Jason Sanger Frackenpohl is a prominent figure in the field of glass technology, with a strong portfolio of patents that reflect his innovative contributions. His work continues to influence the development of advanced glass materials for electronic applications.

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