This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Rockwell Collins, Inc.. Active years: 2022.
Company Filing History:
Years Active: 2022
Title: Christopher Kistler: Innovator in Avionics Time Synchronization
Introduction
Christopher Kistler is a notable inventor based in Cedar Rapids, Iowa. He has made significant contributions to the field of avionics, particularly in time synchronization systems. His innovative work has led to the development of a patented technology that enhances the reliability and precision of timing in aircraft systems.
Latest Patents
Kistler holds a patent for a system titled "Time synchronization over redundant and deterministic switch-based avionics networks." This invention discloses a method for achieving precise UTC timing information through a master or source clock that receives satellite signals. The system generates time marks based on this timing information and produces network-compatible timing messages. These messages are forwarded to network switches, which modify the timing information to account for switch-based delays. Ultimately, this allows destination clocks in aircraft end systems to synchronize accurately with the source clock.
Career Highlights
Christopher Kistler is currently employed at Rockwell Collins, Inc., a leading company in the aerospace and defense industry. His work at Rockwell Collins has positioned him as a key player in advancing avionics technology. Kistler's innovative approach to time synchronization has the potential to improve the safety and efficiency of aviation systems.
Collaborations
Kistler has collaborated with several talented individuals in his field, including Andrea P Gonzalez and Jason R Owen. These collaborations have likely contributed to the successful development and implementation of his patented technology.
Conclusion
Christopher Kistler's contributions to avionics through his innovative patent demonstrate his expertise and commitment to enhancing aircraft systems. His work continues to influence the industry and improve the reliability of time synchronization in aviation.
