This inventor holds 1 USPTO granted patent. Top assignee: Northrop Grumman Innovation Systems, Inc.. Active years: 2020.
Company Filing History:
Years Active: 2020
Title: John Thomas Doyle: Innovator in Explosive Separation Technology
Introduction
John Thomas Doyle is a notable inventor based in Lovettsville, Virginia. He has made significant contributions to the field of explosive separation technology. His innovative approach has led to the development of a unique patent that enhances safety and efficiency in explosive applications.
Latest Patents
Doyle holds a patent for an "Explosive Separating Joint." This system features an expandable tube containing a mild detonating fuse (MDF) within separable portions of the joint. The MDF extends into a detonation manifold at a first port, with a booster bonded to one end. An external initiating ordnance transfer line enters the manifold at an initiating ordnance (IO) port, providing a detonation impulse train. Each detonating component is axially aligned within a passageway with the next component. In some embodiments, certain components of the detonation train are fixed in place while others are movable. This design ensures that each component not in direct contact with a preceding one has direct linear access.
Career Highlights
Doyle is currently employed at Northrop Grumman Innovation Systems, Inc., where he continues to work on advanced technologies. His expertise in explosive systems has positioned him as a key player in the industry. With a focus on innovation, he has contributed to various projects that enhance safety and operational effectiveness.
Collaborations
Doyle has collaborated with notable colleagues, including David Bruce Cohen and Richard Mark Haynie. Their combined expertise has fostered a productive environment for innovation and development in their field.
Conclusion
John Thomas Doyle's contributions to explosive separation technology exemplify the spirit of innovation. His patent for the explosive separating joint showcases his commitment to enhancing safety and efficiency in explosive applications. Doyle's work continues to influence the industry positively.
