Chicago, IL, United States of America

Joshua C Sautner


 

Average Co-Inventor Count = 2.4

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2019-2020

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2 patents (USPTO):Explore Patents

Title: Innovations by Joshua C. Sautner

Introduction

Joshua C. Sautner is an accomplished inventor based in Chicago, IL. He has made significant contributions to the field of load and torque sensing devices. With a total of 2 patents to his name, Sautner's work showcases his expertise and innovative spirit.

Latest Patents

One of Sautner's latest patents is focused on magnetizing ferromagnetic elements used in load and torque sensing devices. This patent describes a system and method for magnetizing a ferromagnetic element by positioning electrodes on opposite surfaces and applying a current. This process results in the formation of a magnetically conditioned region, which can be monitored by magnetic field sensors to indicate load or torque applied to the element.

Another notable patent involves systems and methods for reducing rotation noise in a magnetoelastic device. This invention allows for the creation of magnetically conditioned regions on a rotatable shaft or disk-shaped torque sensing element. The innovation effectively negates rotation noise caused by magnetic field variations, enabling accurate measurements of torque, speed, and orientation.

Career Highlights

Joshua C. Sautner is currently employed at Methode Electronics, Incorporated, where he continues to develop cutting-edge technologies. His work has positioned him as a key player in the advancement of sensing devices.

Collaborations

Sautner collaborates with talented individuals such as Frank Ursetta and Christopher Liston, contributing to a dynamic and innovative work environment.

Conclusion

Joshua C. Sautner's contributions to the field of load and torque sensing devices highlight his innovative capabilities and dedication to advancing technology. His patents reflect a commitment to improving the functionality and accuracy of sensing devices.

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