Company Filing History:
Years Active: 2003-2006
Title: The Innovative Contributions of Stacey A. Murphy
Introduction
Stacey A. Murphy is a notable inventor based in DeKalb, Illinois. She has made significant contributions to the field of wire stripping technology, holding a total of 4 patents. Her innovative designs have improved the efficiency and effectiveness of wire stripping tools, making them more user-friendly and precise.
Latest Patents
One of her latest inventions is the Precision Hand-Held Wire Stripper. This tool features a blade handle, a gripper handle, a blade jaw, and a gripper jaw, all pivotally connected at a main pivot pin. The design includes movable and floating cutting blades that are self-aligning, ensuring that the blades engage the wire insulation accurately during use. Additionally, the jaws are angled to align with the user's line of sight, enhancing usability. Another significant patent is the Blade Assembly, which is designed for cutting the insulation of wires. This assembly consists of a stationary member and a movable member that work together to support and cut the insulation effectively. The design incorporates grooves of varying sizes to accommodate different wire dimensions, ensuring versatility in application.
Career Highlights
Stacey A. Murphy is currently employed at Ideal Industries, Inc., where she continues to innovate and develop new tools for the electrical industry. Her work has garnered attention for its practicality and effectiveness, contributing to advancements in wire stripping technology.
Collaborations
Throughout her career, Stacey has collaborated with talented individuals such as Robert D. Giese and Daniel J. De Lay. These partnerships have fostered a creative environment that encourages innovation and the development of cutting-edge tools.
Conclusion
Stacey A. Murphy's contributions to the field of wire stripping technology exemplify her dedication to innovation and improvement. Her patents reflect a commitment to enhancing user experience and efficiency in electrical work.