This inventor holds 1 USPTO granted patent. Top assignee: Vermillion Corporation. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Scott R Stone: Innovator in Retention Mechanisms
Introduction
Scott R Stone is an accomplished inventor based in Somerset, Wisconsin. He has made significant contributions to the field of mechanical engineering, particularly in the development of innovative retention mechanisms. His work is characterized by a focus on compliance and repeatability, which are crucial for various applications.
Latest Patents
Scott R Stone holds a patent for a "Highly compliant and highly repeatable retention mechanism for attaching and quickly releasing components." This invention features a base and a snap ring that are mounted to two components. The snap ring includes a hole for attaching a first component, while a conical element with a rounded knob protrudes from it. The cylindrical base has a cap with a rounded face and a conical opening that tapers to a cylindrical hole. Both the knob and the base are slit for enhanced compliance. This design allows for significant axial and angular misalignment, making it a versatile solution for various engineering challenges. The snap ring and base can be easily disengaged by pulling the snap ring away from the base.
Career Highlights
Scott R Stone is associated with Vermillion Corporation, where he applies his expertise in mechanical design and innovation. His work has led to advancements in retention mechanisms that are essential for ensuring the reliability and efficiency of various systems.
Collaborations
Scott has collaborated with notable colleagues, including Stephen Andrew Stickel and Walter Wilcox Cardwell, III. These partnerships have contributed to the development of innovative solutions in their respective fields.
Conclusion
Scott R Stone is a notable inventor whose work in retention mechanisms exemplifies innovation and practicality. His contributions continue to influence the engineering landscape, showcasing the importance of compliance and repeatability in design.
