This inventor holds 2 USPTO granted patents and 1 EPO patent. Top assignee: Rosemount Aerospace Limited. Active years: 2002-2005.
Company Filing History:
Years Active: 2002-2005
Title: Dana A. Kromer: Innovator in Aircraft Sensing Technology
Introduction
Dana A. Kromer is a notable inventor based in Minnetonka, MN (US). She has made significant contributions to the field of aircraft sensing technology, holding 2 patents that enhance the functionality and accuracy of air data sensing systems.
Latest Patents
Her latest patents include a multi-function air data sensing probe featuring an angle of attack vane. This innovative probe is designed to be mounted on an aircraft, extending laterally from the aircraft skin. It incorporates a strut supported on a base plate, with a pitot pressure sensing tube at the outer end, facing upstream. The design also includes a passageway for a total air temperature sensor, which features a forwardly facing inlet scoop leading to a chamber that is laterally offset. This unique configuration allows for effective flow direction changes and includes bleed holes to manage boundary layer air. Additionally, Kromer has developed an integrated total temperature probe system that utilizes a heated total air temperature sensor. This system intelligently cycles the heater based on temperature readings, allowing for accurate calculations of outside air temperature.
Career Highlights
Dana Kromer is currently employed at Rosemount Aerospace Limited, where she continues to innovate in the aerospace sector. Her work focuses on improving aircraft sensing technologies, contributing to enhanced safety and performance in aviation.
Collaborations
Throughout her career, Kromer has collaborated with esteemed colleagues such as Greg Allen Seidel and John H. Mette, furthering advancements in her field.
Conclusion
Dana A. Kromer stands out as a pioneering inventor in aircraft sensing technology, with her patents reflecting her commitment to innovation and excellence in aerospace engineering. Her contributions are vital to the ongoing development of safer and more efficient aircraft systems.