Location History:
- Gahanna, OH (US) (2017)
- New Albany, OH (US) (2018 - 2020)
Company Filing History:
Years Active: 2017-2020
Title: Innovations by Darren P Krasny
Introduction
Darren P Krasny is an accomplished inventor based in Gahanna, OH (US). He has made significant contributions to the field of robotics, holding a total of 3 patents. His work focuses on enhancing the functionality and safety of robotic systems, making them more efficient and user-friendly.
Latest Patents
Darren's latest patents include the "Teach mode collision avoidance system and method for industrial robotic manipulators." This innovative system integrates a robot, a teach pendant with an operator interface, and a robot controller equipped with a computer and software. The system is designed to avoid collisions by moving a manipulator arm along a defined path while considering the surrounding environment. Operator input is crucial, allowing for direct control of the robot's motion. The system also records the robot's recent movements and predicts its future path, performing real-time collision checks to ensure safety.
Another notable patent is the "Semi-autonomous multi-use robot system and method of operation." This system facilitates remote operation of a robot within various environments, utilizing scanning and data manipulation to enhance control and efficiency.
Career Highlights
Darren P Krasny is associated with Battelle Memorial Institute, where he continues to develop innovative robotic solutions. His work has significantly impacted the field, particularly in improving the safety and operational capabilities of robotic systems.
Collaborations
Darren has collaborated with notable colleagues, including Richard Lawrence Shoaf and Jeffrey D Keip. Their combined expertise has contributed to the advancement of robotic technologies and methodologies.
Conclusion
Darren P Krasny's contributions to robotics through his patents and collaborative efforts highlight his commitment to innovation in the field. His work continues to pave the way for safer and more efficient robotic systems.