Cudahy, WI, United States of America

Douglas L St Onge


Average Co-Inventor Count = 1.6

ph-index = 3

Forward Citations = 53(Granted Patents)


Location History:

  • Milwaukee, WI (US) (1998 - 2000)
  • Cudahy, WI (US) (2002)

Company Filing History:


Years Active: 1998-2002

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4 patents (USPTO):Explore Patents

Title: Innovations by Douglas L St Onge

Introduction

Douglas L St Onge is an accomplished inventor based in Cudahy, Wisconsin, with a notable portfolio of four patents. His work primarily focuses on advancements in robotic technology, particularly in the development of end effectors for industrial robots.

Latest Patents

One of his latest inventions is the "Compliant End Effector," which is designed to secure tools such as spindles to robotic arms. This innovative end effector features an internal passageway for the spindle and includes a mounting assembly, gripping assembly, compliant assembly, and biasing assembly. The design allows for 360-degree pivoting of the spindle, ensuring that tools can engage workpieces without causing damage. Another significant invention is the "Multi-Purpose End Effector for a Robotic Arm," which is particularly useful in gear manufacturing operations. This end effector is lightweight and compact, providing secure gripping during multi-directional movements while ensuring a soft loading mechanism to prevent binding when engaging with rotating tools.

Career Highlights

Douglas L St Onge is currently employed at Abb Flexible Automation, Inc., where he continues to contribute to the field of automation and robotics. His inventions have significantly enhanced the efficiency and precision of robotic operations in manufacturing settings.

Collaborations

He has collaborated with notable coworkers, including James A Hoffmann and Jesse Edward Schrimpf, who have also contributed to advancements in robotic technologies.

Conclusion

Douglas L St Onge's innovative contributions to robotic technology demonstrate his commitment to enhancing automation in manufacturing. His patents reflect a deep understanding of the complexities involved in robotic operations and the importance of precision in industrial applications.

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