N. Olmsted, OH, United States of America

Michael G Gedwill


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Michael G Gedwill: Innovator in High-Temperature Thermocouples

Introduction

Michael G Gedwill is an accomplished inventor based in N. Olmsted, OH (US). He is known for his innovative contributions to the field of thermocouples, particularly in high-temperature applications. His work has significant implications for accurate temperature measurement in various environments.

Latest Patents

Gedwill holds a patent for a high-temperature, oxidation-resistant noble metal-Al alloy thermocouple. This thermocouple features an electropositive leg made from a noble metal-Al alloy and an electronegative leg that is electrically joined at their respective ends to form a thermocouple junction. The design allows for precise and reproducible temperature measurements ranging from 600°C to 1300°C in inert, oxidizing, or reducing environments, gases, or vacuum. Notably, this invention eliminates the need for costly precious metals like rhodium, while also preventing selective oxidation of rhodium.

Career Highlights

Throughout his career, Gedwill has demonstrated a commitment to advancing thermocouple technology. His innovative approach has led to the development of solutions that enhance measurement accuracy and reduce material costs. His work is recognized for its practical applications in various industrial settings.

Collaborations

Gedwill has collaborated with James L Smialek, contributing to the advancement of thermocouple technology. Their partnership has fostered innovation and improved the reliability of temperature measurement devices.

Conclusion

Michael G Gedwill's contributions to the field of thermocouples exemplify the impact of innovation on technology. His patent for a high-temperature thermocouple showcases his ability to address industry challenges effectively. His work continues to influence the field and improve measurement techniques.

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