This inventor holds 1 USPTO granted patent. Top assignee: Aai Corporation. Active years: 1993.
Company Filing History:
Years Active: 1993
Title: Nelson O Conner: Innovator in Supersonic Trajectory Determination
Introduction
Nelson O Conner is a notable inventor based in Mason Neck, VA (US). He has made significant contributions to the field of projectile trajectory determination, particularly in supersonic applications. His innovative work has led to the development of a unique patent that addresses the challenges associated with tracking supersonic projectiles.
Latest Patents
Nelson O Conner holds a patent for "Methods and apparatus for determining the trajectory of a supersonic projectile." This invention involves an apparatus and method for determining the trajectory of a supersonic projectile of unknown velocity and direction. The system utilizes at least three spaced-apart sensors that can encounter a shock wave generated by a supersonic projectile. These sensors generate signals in response to the shock wave, which are related to the azimuth and elevation angle of a unit sighting vector from each sensor to the origin of the shock wave. The invention includes means for calculating the azimuth and elevation angle of the local trajectory of the projectile based on the signals received.
Career Highlights
Nelson O Conner is associated with AAI Corporation, where he has applied his expertise in developing advanced technologies. His work has been instrumental in enhancing the capabilities of systems designed for tracking high-speed projectiles. With a focus on innovation, he continues to contribute to the field through his research and development efforts.
Collaborations
Nelson has collaborated with Niall B McNelis, working together to advance their projects and share insights in their respective areas of expertise.
Conclusion
Nelson O Conner's contributions to the field of supersonic trajectory determination highlight his innovative spirit and dedication to advancing technology. His patent reflects a significant step forward in understanding and tracking high-speed projectiles.
